Van-Trung Ha | Renewable Energy | Young Scientist Award

Mr. Van-Trung Ha | Renewable Energy | Young Scientist Award

Lecturer | Wuhan University | China

Mr. Van-Trung Ha, currently a Lecturer and Ph.D. researcher in Regional Economics at Wuhan University, China, has demonstrated a robust interdisciplinary research trajectory combining tourism studies, rural development, and environmental economics. His work emphasizes the nexus between agritourism, sustainability, and economic growth in Southeast Asia. With 5 citations from 5 documents and an h-index of 1, his scholarly influence is steadily expanding through high-impact international publications and conference contributions. He has authored and co-authored several peer-reviewed articles in SCOPUS- and SCI-indexed journals, including Journal of Environmental Management (Q1, SCIE), Heliyon (Q1, SCIE), Humanities and Social Sciences Communications (Q1, SSCI), Frontiers in Public Health (Q1, SCIE), and Advances in Hospitality and Tourism Research (Q3). His research covers diverse themes such as tourism-led growth models, green innovation for environmental sustainability, FDI and renewable energy impacts on economic development, and the socio-economic resilience of tourism amid crises such as COVID-19. Mr. Van-Trung Ha’s research contributions also extend to rural and cultural tourism development, particularly agritourism in Vietnam, with studies published in Journal of Gastronomy and Tourism and Journal of Tourism History (Q1). His works on preserving agricultural lifestyles as a sustainable tourism strategy have received international recognition. He has served as Editorial Board Member for the Asian Development Policy Review (SCOPUS Q4) and as an Advisory Board Member of the World Conference on Learning and Education Research (WCLER-23). As a peer reviewer, he has contributed to respected journals such as Tourism and Hospitality Research, Case Studies in the Environment (Q3), and Sage Open. Mr. Van-Trung Ha’s academic pursuits align with advancing sustainable tourism policies and integrating environmental and economic frameworks in tourism management. His ongoing research at Wuhan University focuses on the dynamic interrelations between tourism, globalization, renewable energy, and sustainable regional development across ASEAN economies.

Profiles: Scopus | ORCID | Google Scholar | ResearchGate | Web of Science | Scholar GPS | Loop | Academia

Featured Publications

  1. Ha, V. T., Lichang, L., & Thuan, D. T. Q. (2024). Sustainable development in Southeast Asia: The nexus of tourism, finance, and environment. Heliyon, 10(24), e40829.

  2. Ha, V. T., & Mohanty, P. P. (2021). Exploring the level of tourist satisfaction in agritourism: A reflection of Tra Que village, Vietnam. Gastronomy and Tourism, 5(2), 107–116.

  3. Ha, V. T., & Mohanty, P. P. (2023). Activities of agricultural way of life – a key to attract tourists in agritourism: A study from Tra Que traditional village (Hoi An, Quang Nam, Viet Nam). Journal of Tourism History, 15(1), 65–83.

  4. Ha, V. T., & Dao, D. Q. (2024). Weaving the tastes of tradition: Uncovering the threads of India’s culinary identity amid globalisation. Research in Hospitality Management, 14(2), 150–158.

  5. Ha, V. T. (2025). Tourism, FDI, renewable energy, and growth: An analysis of ASEAN countries. Revista Turismo & Desenvolvimento (RT&D) / Journal of Tourism & Development, 48, 599–623.

 

Musavir Anwar | Environmental Economics | Best Researcher Award

Mr. Musavir Anwar | Environmental Economics | Best Researcher Award

Lecturer, Sindh Agriculture University, Pakistan.

Mr. Musavir Anwar is an emerging scholar in Agricultural Economics and Environmental Economics, with a particular focus on sustainable development, low-carbon pathways, and the adoption of agricultural technologies. His research explores the intersection of economic development, environmental sustainability, and policy-driven incentives, emphasizing the role of electricity, agriculture, and financial systems in shaping environmental outcomes. A significant aspect of his work involves analyzing consumer behavior and adoption patterns in agricultural and environmental contexts. He has examined the diffusion of production and protection technologies in crops such as sugarcane, providing empirical insights into the factors influencing technology uptake in Sindh, Pakistan. His studies also address behavioral incentives for reducing environmental degradation, exemplified by his investigation into consumer responses to policies aimed at minimizing plastic bag usage. Methodologically, Mr. Musavir Anwar employs a diverse set of quantitative and statistical tools, including econometric modeling, survey-based data analysis, and environmental impact assessment. His proficiency with software such as SPSS, STATA, R-Studio, Python, and Eviews supports rigorous data-driven research, while his familiarity with multimedia and graphical design enhances the visualization and dissemination of complex findings. Mr. Musavir Anwar’s research contributions include publications in high-impact journals, notably the Journal of Environmental Management (SCI-Q1), where he analyzed Kazakhstan’s transition to a low-carbon future, highlighting the roles of energy, agriculture, and financial development on emissions. He has also contributed to international conferences on sustainable development and agricultural sciences, presenting empirical studies on crop management and environmental economics. Through his work, Mr. Musavir Anwar demonstrates a commitment to advancing knowledge on sustainable agricultural practices, environmental policy, and economic mechanisms that promote low-carbon and resource-efficient development. His scholarly impact is reflected in his publications, conference presentations, and research collaborations, establishing him as a promising contributor to the fields of agricultural and environmental economics.

Profile: Scopus | ORCID | Google Scholar | ResearchGate | Sci Profiles

Featured Publications

  • Anwar, M., Jamali, R., Hyder, H., & Wang, J. (2025). Kazakhstan’s path to a low-carbon future: Investigating the impact of electricity, agriculture, and financial development on emissions. Journal of Environmental Management, 394, 127627.

  • Unar, A. U., Rustamani, M. A., Pahore, W. A., Chachar, I. B., & Amber, A. (2018, July 5). Effects of different salinity levels on wheat varieties at seedling stage. In Proceedings of the 1st International Conference on Global Sustainable Development: Challenges and Solutions (ICGSDCS–2018).

  • Jogi, N., Shar, I., Chachar, I. B., Rustamani, M. A., & Gadani, S. A. (2018, July 5). Study of diffusion and adoption of production and protection technologies of sugarcane crop in Taluka Ubauro, District Ghotki of Sindh Province. In Proceedings of the 1st International Conference on Global Sustainable Development: Challenges and Solutions (ICGSDCS–2018).

 

Zhong Zhang | Environmental Sciences | Best Researcher Award

Prof. Zhong Zhang | Environmental Sciences | Best Researcher Award

Vice President, Shandong Second Medical University, China

Prof. Zhong Zhang is the Vice President of Shandong Second Medical University, where he also serves as a senior academic leader in the fields of pathogen biology, parasitology, microbiology and environmental sciences. He holds a Ph.D. in Pathogen Biology, obtained from a leading Chinese university, with specialization in microbial ecology and host–pathogen interactions. His research primarily focuses on the ecological and molecular interactions between pathogenic microorganisms, insects, and environmental factors, particularly exploring how intestinal commensal bacteria and bacteriophages influence the gut microbiota and developmental biology of insects. Prof. Zhong Zhang’s recent work has introduced novel phage-based precision regulation strategies to modify the gut microbiome of housefly larvae, revealing key mechanisms that link microbial balance to host growth and health. He has also pioneered investigations into the effects of graphene on bacterium–phage interactions in aquatic ecosystems and used multi-omics biological approaches to uncover how antibiotics reshape microbial and transcriptomic landscapes during larval development. Throughout his career, Prof. Zhong Zhang has held influential academic and research roles, including Principal Expert for the Shandong Province “12th Five-Year Plan” Key Discipline in Pathogen Biology, where he led several national and provincial-level research projects advancing environmental microbiology and vector-borne disease control. His scholarly impact includes 64 peer-reviewed publications, 722 citations, and an h-index of 16 (Scopus), reflecting sustained contributions to his field. Recognized for his excellence, he received the First Prize of the Shandong Higher Education Institutions Outstanding Research Achievement Award and the title of “Shandong Provincial Young and Middle-aged Expert with Outstanding Contributions.” He actively contributes to the scientific community as Vice President of the Shandong Entomological Society, Vice Chair of the Urban Entomology Committee and Medical Parasitology Branch, and Chair of the Medical Entomology Committee under the Entomological Society of China. Prof. Zhong Zhang’s interdisciplinary research bridges microbiology, entomology, and environmental science, offering innovative insights into sustainable pest management, microbial ecology, and environmental health. His vision is to advance global bioscience innovation by integrating microbiome research and ecological restoration to support sustainable ecosystems and public health resilience.

Profile: Scopus | ORCID | Sci Profiles

Featured Publications

1. Kong, X., Wang, S., Li, J., Li, Y., Zhang, R., & Zhang, Z. (2025). Kasugamycin and validamycin differentially inhibit housefly larval growth through gut microbiota regulation. Ecotoxicology and Environmental Safety, 279, 119098.

2. ang, L., Liu, X., Lin, S., Wang, L., Liang, J., & Zhang, Z. (2025). Parasitic plant Cistanche tubulosa shapes the bacterial community structure and functional composition of the salt-tolerant host Tamarix chinensis across different parasitic statuses. Environmental Microbiome, 20, 746.

3. Han, Y.-N., Dong, L., Sun, L.-L., Zhang, Z., & Han, H.-H. (2025). Excited-state-altering ratiometric fluorescent probes for the response of β-galactosidase in senescent cells. Molecules, 30(6), 1221.

4. Yin, Y., Wang, S., Li, Y., Kong, X., Zhang, R., & Zhang, Z. (2024). Antagonistic effect of the beneficial bacterium Enterobacter hormaechei against the heavy metal Cu²⁺ in housefly larvae. Ecotoxicology and Environmental Safety, 270, 116077.

5. Zhang, K., Wang, S., Li, Y., Yao, D., Zhang, R., & Zhang, Z. (2024). Application of bacteria and bacteriophage cocktails for biological control of houseflies. Parasites & Vectors, 17, 82.

 

Jiajia Cai | Environmental Engineering | Best Researcher Award

Dr. Jiajia Cai | Environmental Engineering | Best Researcher Award

Lecture, Anhui University of Technology, China

Dr. Jiajia Cai is a Lecturer at the School of Energy and Environmental Engineering, Anhui University of Technology, China, where she leads research on photoelectrochemical corrosion protection, renewable energy conversion, and AI-driven materials discovery. She earned her Ph.D. in Materials Science from Northeastern University in 2016, following an M.Sc. in Analytical Chemistry (2011) and a B.Sc. in Applied Chemistry (2009), all from Northeastern University, China. Her research focuses on developing advanced photoelectrochemical materials for sustainable energy applications, including photoelectrocathodic protection (PCP) for metals, green hydrogen production via water splitting, and AI-assisted design of novel semiconductor photoanodes. Professionally, Dr. Jiajia Cai has served as a Lecturer at Anhui University of Technology since 2016, a Postdoctoral Researcher at the National University of Singapore (2019–2020) focusing on optimization of photoanode materials, and a Visiting Scholar at Tsinghua University (2024–2025) emphasizing AI applications in materials science. Her key contributions include the design and fabrication of highly efficient photoanodes using morphology engineering, heterojunction construction and cocatalyst loading strategies, bridging fundamental photoelectrochemistry with practical corrosion prevention technologies and publishing over 50 SCI-indexed papers (58 documents, 877 citations, h-index 17), along with 4 patents under publication or review. She has led multiple national and provincial research projects, including funding from the National Natural Science Foundation of China and Anhui Provincial Natural Science Foundation, as well as support from the Key Lab for Anisotropy and Texture of Materials (ATM), Ministry of Education. Dr. Jiajia Cai is an active member of the Chinese Chemical Society and collaborates with leading institutions such as Tsinghua University, National University of Singapore, and Northeastern University. Her work significantly advances sustainable energy solutions, corrosion protection, and AI-driven materials discovery, contributing to environmental engineering, industrial innovation, and global scientific knowledge. Dr. Jiajia Cai’s research excellence, leadership, and vision position her to continue making transformative contributions to renewable energy and advanced material technologies worldwide.

Profile: Scopus | ORCID | Google Scholar | ResearchGate | Sci Profiles | Scilit

Featured Publications

1. Cai, J., Zhang, Z., Zu, S., Cui, A., Li, X., Xie, Q., Mao, K., & Chen, J. (2025). Built-in electric field in BiVO₄-SnO₂ heterostructure for enhanced photoelectrochemical H₂O₂ production. Fuel, 405, 136762.

2. Zhu, S., Cai, Z., Wang, Y., Wang, J., Cai, J., Xie, Q., & Huang, Z. (2025). Enhanced photoelectrochemical cathodic protection on steel in marine environment by cascade heterojunctions. Construction and Building Materials, 493, 143255.

3. Zhu, S., Xu, F., Wang, Y., Cai, J., Xie, Q., Yang, Y., & Huang, Z. (2025). Experimental study on heat transfer characteristics of a moving single-nozzle jet impingement. ISIJ International, 65(9), 1348–1358.

4. Xie, Q., Cai, Z., Wang, Y., Cai, J., Wang, J., & Sun, S. (2025). Efficient Z-scheme of 2D ZnIn₂S₄/3D TiO₂ for enhanced photoelectrochemical cathodic protection. Journal of Environmental Chemical Engineering, 13(5), 118305.

5. Chen, Q., Zhu, S., Xin, Z., Wang, D., Cai, J., Li, H., & Ding, S. (2024). Surfactant-assisted synthesis of NiCo alloy with specific nanopore architecture as a bifunctional electrocatalyst for rechargeable zinc-air batteries. Functional Materials Letters, 17(04), 451021.

 

Dhekra Ben Amara | Environmental Science | Best Researcher Award

Dr. Dhekra Ben Amara | Environmental Science | Best Researcher Award

Associate professor, Qingdao Hengxing University of Science and Technology, China

Dr. Dhekra Ben Amara is an agricultural economist and sustainability researcher specializing in environmental science, eco-innovation, climate change and circular economy, with a strong focus on sustainable development and green growth. She earned her Engineering degree in Agricultural and Agri-Food Economics and Management from the National Agronomic Institute of Tunisia in 2010, followed by an M.Sc. in Economy of Agriculture, Agri-Food and Environment in 2013 and completed her Ph.D. in Agricultural Economics and Management at Northeast Forestry University, Harbin, China, in 2021. Her professional experience includes serving as Administrative Officer in the Internship and International Cooperation Department at ESPRIT: Private High School of Engineering and Technologies in Tunisia (2021–2022), where she promoted student engagement and international partnerships, followed by her postdoctoral fellowship at Henan University, China (2022–2025), where she focused on eco-innovation, carbon emissions, foreign investment and Africa-China cooperation in green growth and food security. In 2025, she was appointed Associate Professor at the School of Industry and City, Qingdao Hengxing University of Science and Technology, China. Her research interests center on sustainability, eco-innovation, climate change, circular economy, food security and resource and environmental management and she has actively contributed to international projects such as the China–Tunisia biomass valorization initiative promoting bio-circular green economies. Skilled in research tools such as IBM SPSS, SPSS AMOS, SmartPLS3, STATA, GeoDA and ArcMap, she demonstrates strong technical and analytical expertise. She has authored 12 Scopus-indexed publications with 245 citations and an h-index of 8, with articles published in leading journals including Journal of Cleaner Production and Environmental Science and Pollution Research. Her achievements have been recognized with the NEFU Outstanding Graduate Award (2021), a Second Prize at the NEFU International Students’ Academic Forum and an Excellence Award in the “My Story in NEFU” contest. With her international academic background, growing research impact and leadership in eco-innovation, Dr. Dhekra Ben Amara is well-positioned to advance environmental sustainability research and contribute to global solutions addressing climate change and sustainable development.

Profile: Scopus | ORCID | Google Scholar | ResearchGate | Sci Profiles | Web of Science | ACM Digital Library | LinkedIn  

Featured Publications

1. Ben Amara, D., & Chen, H. (2020). A mediation-moderation model of environmental and eco-innovation orientation for sustainable business growth. Environmental Science and Pollution Research, 27(14), 16916–16928.

2. Ben Amara, D., & Chen, H. (2022). Driving factors for eco-innovation orientation: Meeting sustainable growth in Tunisian agribusiness. International Entrepreneurship and Management Journal, 18(2), 713–732.

3. Ben Amara, D., & Qiao, J. (2023). From economic growth to inclusive green growth: How do carbon emissions, eco-innovation and international collaboration develop economic growth and tackle climate change? Journal of Cleaner Production, 425, 138986.

4. Ben Amara, D., & Chen, H. (2020). Investigating the effect of multidimensional network capability and eco-innovation orientation for sustainable performance. Clean Technologies and Environmental Policy, 22(6), 1297–1309.

5. Ben Amara, D., & Chen, H. (2021). The impact of participative decision-making on eco-innovation capability: The mediating role of motivational eco-innovation factors. Environment, Development and Sustainability, 23(5), 6966–6986.

 

Jun Liu | Climate Change | Best Researcher Award

Mrs. Jun Liu | Climate Change | Best Researcher Award

Director, Taiyuan University of Technology, China

Mrs. Jun Liu is an Associate Professor at the College of Geological and Surveying Engineering, Taiyuan University of Technology, specializing in remote sensing applications with a strong focus on climate change, carbon estimation, and drought monitoring. She earned her Ph.D. in Remote Sensing of Environment from Nanjing University, China (2012), following a Master’s degree in Remote Sensing of Geological Disaster (2006) and a Bachelor’s degree in Surveying Engineering (2003), both from Taiyuan University of Technology. Her professional experience includes serving as a lecturer at Shanxi Engineering Vocational College (2006–2013), an associate professor since 2013 and a visiting fellow at the Australian National University (2017–2018). Mrs. Jun Liu’s research interests revolve around applying advanced satellite and geospatial technologies to monitor environmental changes and develop sustainable solutions. Her research skills include geospatial data analysis, environmental monitoring, carbon accounting and interdisciplinary project collaboration. She has published extensively in leading international journals and conferences, with 124 documents, 3,189 citations and an h-index of 31, reflecting her academic influence. Recognized for her scholarly contributions, she has earned respect as a dedicated educator and researcher. In conclusion, Mrs. Jun Liu’s impactful research, global collaborations and commitment to addressing climate challenges position her as a deserving candidate for prestigious academic recognition.

Profile: Scopus

Featured Publications

1. Sun, Y., Liu, L., Jiang, L., Chen, Y., Zhang, H., Xu, X., & Liu, Y.* (2023). Unimolecular chiral stepping inversion machine. Journal of the American Chemical Society, 145(28), 16711.

2. Liu, J., Tian, Q., Huang, Y., Du, L., & Wang, L. (2011, June 24–26). Extraction of the corn planting area based on multi-temporal HJ-1 satellite data. The 19th International Conference on Geoinformatics, Shanghai, China. (Accession No. 20113614308210).

3. Liu, J., Tian, Q., Huang, Y., & Du, L. (2012). Dynamic monitoring of summer maize planting information for spatial and temporal variations in Huanghuaihai plain during 2000–2010. Spectroscopy and Spectral Analysis, 32(9), 2534–2539.

4. Liu, J., Tian, Q., Huang, Y., & Du, L. (2013). Monitoring phenology of summer maize in Huanghuaihai using remote sensing technology. Remote Sensing Information, 28(3), 85–90.

5. Liu, J., Tian, Q., Huang, Y., & Du, L. (2012, August 11–13). Extraction of summer maize using MODIS EVI time series in the Huanghuaihai plain. International Conference on Computer Science and Service System, Nanjing, China. (Accession No. 20130615981764).

Abubakar Ali | Renewable Energy | Best Research Article Award

Dr. Abubakar Ali | Renewable Energy | Best Research Article Award

Chief Lecturer at Department of Chemical Engineering | Kaduna Polytechnic | Nigeria

Dr. Abubakar Ali is a distinguished academic and researcher in the field of Chemical and Environmental Engineering, currently serving as Chief Lecturer in the Department of Chemical Engineering at Kaduna Polytechnic, Nigeria. With a career spanning decades in teaching, research and administration, he has demonstrated exceptional dedication to advancing technical education and fostering innovation in sustainable engineering practices. His academic journey reflects a strong foundation in engineering sciences, further strengthened by advanced studies in environmental engineering and educational technology. He has contributed significantly to student mentorship, curriculum development, laboratory supervision, and project guidance, shaping the next generation of engineers. Beyond teaching, Dr. Abubakar Ali is committed to administrative leadership, having successfully held key positions such as Head of Department and departmental officer roles that enhanced academic and organizational efficiency. He is an active member of several professional bodies, including COREN, the Nigerian Society of Chemical Engineers, and renewable energy associations, underscoring his commitment to professional development and collaboration. With expertise in renewable energy, environmental sustainability and chemical process design, Dr. Abubakar Ali’s career embodies a blend of academic excellence, practical application and visionary leadership that continues to leave a lasting impact on engineering education and research in Nigeria.

Publication Profile

Scopus | Orcid | Google Scholar

Education

Dr. Abubakar Ali’s educational foundation is deeply rooted in engineering and technical sciences, which prepared him for a distinguished career in teaching, research and leadership. His academic journey began with strong primary and secondary schooling, followed by advanced preparatory studies that paved the way for higher education in engineering. He earned his Bachelor’s degree in Chemical Engineering, laying the groundwork for his expertise in process design, chemical operations, and industrial systems. This was complemented by postgraduate studies in Chemical Engineering at the Master’s level, further strengthening his ability to address complex challenges in reaction engineering, thermodynamics and process optimization. His pursuit of knowledge extended into Environmental Engineering at the doctoral level, where his focus on sustainability, waste management and eco-friendly technologies broadened his research capacity to address global environmental issues. Recognizing the importance of pedagogy in technical education, he also obtained advanced qualifications in education to enhance his teaching effectiveness. These achievements reflect not only a commitment to academic excellence but also to lifelong learning, blending engineering knowledge with educational skills. His educational background continues to serve as the foundation for his professional achievements, research innovation and contributions to both the academic community and the wider society.

Professional Experience

Dr. Abubakar Ali has cultivated an extensive career in academia marked by progressive leadership, scholarly engagement, and significant contributions to technical education. His professional path began with early teaching roles where he laid the foundation for practical and theoretical engineering instruction. Over time, he rose steadily through the academic ranks, serving as Lecturer, Senior Lecturer, Principal Lecturer and ultimately achieving the position of Chief Lecturer. In these roles, he has been responsible for teaching core chemical engineering courses, supervising student research projects, guiding industrial training programs, and overseeing laboratory practices. His administrative expertise is equally notable, as he has served as Head of Department, coordinating academic planning, supervising faculty members and managing departmental operations. He has also contributed as a departmental officer responsible for student admissions, industrial work experience coordination, and timetable organization, ensuring academic efficiency and smooth departmental activities. Beyond his teaching and administrative duties, he has actively engaged in research dissemination, professional service and scholarly reviews for leading international journals. His blend of teaching, research and leadership demonstrates a holistic commitment to academic excellence and institutional development, positioning him as a vital contributor to the advancement of engineering education and professional practice in Nigeria.

Research Interest

Dr. Abubakar Ali’s research interests span across diverse yet interconnected fields within chemical and environmental engineering, with a strong focus on sustainability and renewable technologies. His doctoral training in environmental engineering has influenced his commitment to advancing research that mitigates the adverse impacts of industrialization and promotes eco-friendly solutions. He is particularly interested in renewable energy development, including solar energy applications and sustainable energy systems that address the growing global demand for clean power. Another area of focus is hazardous material management and environmental pollution control, where his work aligns with developing innovative strategies for waste minimization and safer industrial practices. In addition, he is keenly interested in process design, reaction engineering and optimization techniques that improve efficiency in chemical production while reducing environmental footprints. His research approach combines theoretical modeling with practical laboratory experimentation, bridging the gap between academic innovation and real-world application. By integrating renewable energy, environmental sustainability and chemical process engineering, his work contributes to addressing pressing global challenges such as climate change, resource depletion and industrial safety. Through mentorship and collaboration, he continues to inspire students and colleagues to explore research that benefits both the scientific community and society at large.

Research Skills

Dr. Abubakar Ali possesses a robust set of research skills that reflect his deep training in chemical and environmental engineering as well as his practical experience in applied research. He is skilled in laboratory experimentation, where he designs, supervises and evaluates experimental procedures related to process optimization, waste treatment and renewable energy systems. His expertise extends to computational modeling and simulation, enabling him to analyze chemical processes, assess system performance and develop strategies for sustainable engineering practices. He demonstrates strong competence in hazardous material analysis, risk assessment and environmental impact evaluation, which are crucial in ensuring industrial safety and compliance with environmental standards. Additionally, his experience in supervising student projects has honed his ability to design and guide research methodologies, from data collection to interpretation and reporting. His editorial contributions as a reviewer for reputable international journals highlight his critical thinking, analytical precision, and commitment to advancing scientific knowledge. Equally important are his organizational and collaborative skills, which allow him to lead multidisciplinary research teams, secure research grants, and foster partnerships that extend the reach of his work. These research capabilities underline his role as both an innovator and mentor in the advancement of engineering research and practice.

Awards and Honors

Dr. Abubakar Ali’s career is distinguished by numerous recognitions that reflect his scholarly excellence, professional service and contributions to engineering education and research. His appointment as a reviewer for the highly regarded Elsevier Journal of Hazardous Materials stands as a testament to his expertise and global recognition within the scientific community. He has earned memberships in prestigious professional organizations such as the Council for the Regulation of Engineering in Nigeria, the Nigerian Society of Chemical Engineers and the Teachers Registration Council of Nigeria, highlighting both his technical proficiency and pedagogical commitment. His engagement with the Solar Renewable Energy Society of Nigeria underscores his forward-looking orientation toward renewable energy solutions. In his academic environment, he has been consistently entrusted with leadership roles, including Head of Department and officer positions that directly impacted student training, curriculum management and institutional governance. These appointments reflect the confidence his peers and institution place in his leadership and vision. Each recognition and professional milestone demonstrates not only his dedication to continuous growth but also his determination to advance engineering education, research excellence and sustainable solutions that address national and global challenges in energy and the environment.

Author Metrics

  • Total Citations: 142

  • h-index: 5

  • i10-index: 5

Publications Top Notes

1. Characterization of petroleum sludge from refinery industry biological wastewater treatment unit
Citations: 29 | Year: 2017

2. Characteristics of the effluent wastewater in sewage treatment plants of Malaysian urban areas
Citations: 28 | Year: 2018

3. Analysis of solid residue and flue gas from thermal plasma treatment of petroleum sludge
Citations: 27 | Year: 2019

4. Thermal plasma: A technology for efficient treatment of industrial and wastewater sludge
Citations: 26 | Year: 2016

5. Thermal plasma treatment of municipal solid waste incineration residue: A review
Citations: 12 | Year: 2016

Conclusion

Dr. Abubakar Ali’s professional journey exemplifies a career dedicated to advancing knowledge, fostering innovation and nurturing future leaders in chemical and environmental engineering. His educational achievements, from foundational studies to advanced qualifications, provided him with the expertise and vision to contribute meaningfully to academia and society. His professional experience as a lecturer, researcher and administrator demonstrates a balance between teaching excellence, research innovation, and leadership. With research interests that address sustainability, renewable energy and industrial safety, he aligns his work with pressing global challenges, offering solutions that benefit both industry and the environment. His recognized research skills and editorial contributions reflect his ability to uphold scientific rigor and mentor students and colleagues toward impactful research outcomes. The awards and honors he has received further affirm his standing as a respected academic and professional within Nigeria and beyond. Guided by a vision of institutional growth, academic excellence and community development, Dr. Abubakar Ali continues to shape the future of engineering education and research. His career represents a legacy of scholarship, leadership and service that will continue to inspire generations of students and professionals in the years to come.

Chengguo Liu | Renewable Energy | Best Researcher Award

Dr. Chengguo Liu | Renewable Energy | Best Researcher Award

Lecturer | Changzhou University | China

Dr. Chengguo Liu is a dedicated academic and researcher specializing in underground energy storage, geomechanics, and the sustainable utilization of subsurface formations. Currently serving as a Lecturer at the School of Petroleum and Natural Gas Engineering, Changzhou University, he has established himself as an emerging leader in the field of large-scale energy storage. His research focuses on innovative applications of salt cavern technology, exploring its potential for storing hydrogen, compressed air, natural gas, and advanced flow battery systems. By combining fundamental scientific research with practical industrial approaches, Dr. Chengguo Liu contributes solutions that directly address global challenges such as renewable energy intermittency, carbon reduction, and sustainable energy security. His collaborative work with leading universities, research institutes, and industry partners has strengthened cross-disciplinary advancements and fostered the translation of theoretical knowledge into real-world applications. Through his roles as a reviewer for multiple high-impact journals and his membership in national professional societies, Dr. Chengguo Liu continues to play an active part in shaping research directions and evaluating cutting-edge work in energy and mineral engineering. His academic contributions reflect both depth and diversity, aligning with the growing global demand for cleaner, more secure, and more efficient energy technologies.

Publication Profile

Scopus

Orcid

Google Scholar

Education

Dr. Chengguo Liu’s educational foundation is firmly rooted in mining, energy, and geotechnical sciences, which shaped his pathway toward expertise in underground energy systems. He earned his doctoral degree from the China University of Mining and Technology, one of the leading institutions in energy and resource engineering. His doctoral training provided him with in-depth knowledge of subsurface mechanics, mineral processing, and clean energy technologies, equipping him with the ability to address both theoretical challenges and applied engineering problems. During his academic journey, Dr. Chengguo Liu engaged in advanced studies on geomechanics, the design of underground structures, and the environmental impact of large-scale industrial systems. These experiences not only honed his technical expertise but also nurtured a strong interest in the interdisciplinary applications of energy storage. His education emphasized problem-solving, critical analysis, and innovation, qualities that continue to guide his teaching and research. By combining his strong academic foundation with a focus on practical outcomes, Dr. Chengguo Liu emerged as a scholar well-prepared to contribute meaningfully to both academia and industry. His educational background serves as the cornerstone of his professional success, providing the analytical skills and engineering knowledge that underpin his ongoing contributions to sustainable energy technologies.

Professional Experience

Dr. Chengguo Liu’s professional career reflects a combination of academic excellence, research innovation, and collaborative engagement with industry. As a Lecturer at the School of Petroleum and Natural Gas Engineering, Changzhou University, he is actively involved in teaching, mentoring, and guiding the next generation of engineers and researchers in the energy sector. His role also extends to participating in provincial engineering research centers where he contributes to projects focusing on low-carbon oil and gas development and the valorization of waste biomass. Beyond academia, Dr. Chengguo Liu collaborates with industry partners, including major research and development enterprises, ensuring that his work aligns with practical demands and addresses pressing global energy challenges. He has established strong professional connections with institutions such as China University of Mining and Technology and Western University in Canada, enabling international collaboration and knowledge exchange. His contributions to scholarly publishing extend to his work as a peer reviewer for high-impact journals, where he critically evaluates research on mineral processing, fuels, and energy systems. Dr. Chengguo Liu’s professional experience is marked by a balance of teaching, applied research, and service to the academic community, positioning him as both an educator and a contributor to advancing sustainable energy technologies worldwide.

Research Interest

Dr. Chengguo Liu’s primary research interests revolve around the development and application of underground energy storage systems, with a special emphasis on large-scale salt cavern technologies. He explores the utilization of salt formations for storing hydrogen, compressed air, natural gas, and other emerging energy carriers, addressing the global challenge of integrating renewable energy into power systems. In addition to energy storage, he investigates mineral processing techniques aimed at enhancing clean energy utilization, reducing carbon emissions, and promoting more sustainable industrial practices. His research also extends to coal slime flotation and agglomeration, contributing solutions for efficient resource recovery and environmental sustainability. Driven by the urgent need for global energy transition, Dr. Chengguo Liu’s research seeks to bridge fundamental geomechanical principles with practical engineering applications. His interdisciplinary focus combines aspects of material science, techno-economic analysis, and applied energy systems, ensuring that his work has both scientific significance and industrial value. By addressing the intermittency of renewable energy, his research contributes directly to the development of resilient energy infrastructures. These interests not only reflect his academic expertise but also highlight his commitment to advancing technologies that will play a critical role in achieving long-term energy security and sustainability worldwide.

Research Skills

Dr. Chengguo Liu possesses a diverse set of research skills that allow him to approach energy-related challenges from multiple scientific and engineering perspectives. He is proficient in advanced geomechanical modeling, enabling him to analyze the behavior of subsurface formations under complex storage conditions. His expertise in mineral processing equips him with the ability to optimize resource utilization while reducing environmental impacts. In addition, he is skilled in developing experimental designs and conducting techno-economic evaluations, which are crucial for assessing the feasibility of large-scale energy storage systems. His ability to integrate fundamental science with engineering practice allows him to translate laboratory findings into real-world industrial applications. Dr. Chengguo Liu also brings strong analytical skills in coal slime flotation and agglomeration, contributing to improved efficiency in coal utilization and waste management. His collaborative projects with universities and industry partners highlight his capability to work across disciplines and adapt his methodologies to various contexts. Beyond technical skills, Dr. Chengguo Liu is also experienced in academic publishing and peer review, providing constructive evaluations of research manuscripts in high-impact journals. These combined skills establish him as a versatile and innovative researcher whose work advances both theoretical understanding and practical solutions in sustainable energy technologies.

Awards and Honors

Dr. Chengguo Liu’s growing reputation as a promising researcher has been recognized through various appointments and professional roles that highlight his academic influence and contributions. His selection as a reviewer for leading international journals such as Separation and Purification Technology, Powder Technology, Fuel, and Energy & Fuels reflects the recognition of his expertise by the broader scientific community. These editorial responsibilities signify his role as a trusted evaluator of high-quality research in the fields of energy storage, mineral processing, and sustainable engineering. His membership in professional organizations such as the China Society of Particles and the China Coal Society further demonstrates his standing within the academic and industrial research networks. These affiliations provide him with opportunities to contribute to collective advancements in energy and resource technologies. His co-authorship of a comprehensive review article in the Journal of Energy Storage also represents a milestone in his career, bringing global attention to his expertise in salt cavern technologies and their potential role in the energy transition. Collectively, these appointments and recognitions underscore his growing influence and impact in the field, marking him as a researcher committed to advancing sustainable energy solutions.

Author Metrics

  • Total Citations: 287

  • h-index: 11

  • i10-index: 11

Dr. Chengguo Liu’s author metrics reflect his growing research influence in the fields of underground energy storage, mineral processing, and sustainable energy technologies. With 287 citations, his publications are gaining increasing recognition within the global scientific community. An h-index of 11 demonstrates that at least 11 of his research papers have been cited 11 or more times, indicating both productivity and sustained impact. Similarly, his i10-index of 11 highlights that 11 of his publications have achieved 10 or more citations, underscoring consistent academic contributions. These metrics illustrate Dr. Chengguo Liu’s role as an emerging researcher whose work is both relevant and impactful in advancing energy science and engineering.

Publications Top Notes

1. Flotation intensification of the coal slime using a new compound collector and the interaction mechanism between the reagent and coal surface
Citations: 58 | Year: 2018

2. Optimization of the oil agglomeration for high-ash content coal slime based on design and analysis of response surface methodology (RSM)
Citations: 38 | Year: 2019

3. Mineralogical characterization of the typical coarse iron ore particles and the potential to discharge waste gangue using a Energy Storage density-based gravity separation
Citations: 30 | Year: 2019

4. Combined inhibitors of Fe³⁺, Cu²⁺ or Al³⁺ and sodium silicate on the flotation of fluorite and quartz
Citations: 29 | Year: 2022

5. Beneficiation of coarse particulate iron ore by using a dry density-based fluidized bed separator
Citations: 28 | Year: 2017

Conclusion

Dr. Chengguo Liu is an emerging scholar whose work reflects a clear commitment to advancing sustainable energy technologies and addressing critical global challenges in resource utilization. Through his research on underground energy storage, particularly salt cavern-based technologies, he contributes practical solutions that bridge scientific innovation and industrial application. His academic background, combined with his professional experience in teaching, mentoring, and collaboration, positions him as a valuable asset to both academia and industry. His research addresses pressing issues such as renewable energy intermittency, carbon reduction and energy security, making his contributions both timely and globally relevant. His role as a peer reviewer for leading journals and his membership in professional societies further emphasize his engagement with the international research community. By integrating geomechanics, mineral processing, and clean energy utilization into his work, Dr. Chengguo Liu demonstrates the versatility and depth required to advance energy storage technologies at scale. Looking ahead, his research trajectory suggests continued impact in shaping future directions of energy storage and sustainable resource management. His achievements and contributions collectively make him an outstanding candidate for recognition under the Best Researcher Award category.

Bao Xie | Renewable Energy | Best Researcher Award

Dr. Bao Xie | Renewable Energy | Best Researcher Award

Hefei University of Technology | China

Dr. Bao Xie is a Lecturer and Supervisor of Master’s candidates at Hefei University of Technology. He obtained his doctoral degree in Electrical Engineering from Chongqing University and has developed a strong academic and research foundation in renewable energy systems. His primary expertise lies in the control and stability of renewable energy grid-connected power generation, an area of increasing global importance due to the shift toward sustainable energy solutions. Over the years, Dr. Bao Xie has led significant projects, including those supported by the Anhui Provincial Natural Science Foundation, and has made valuable contributions as a core researcher in the National Key Research and Development Programs. His research outputs include more than 20 papers published in SCI and EI-indexed journals and conferences, reflecting his commitment to advancing scientific knowledge and innovative solutions in power and energy systems. Dr. Bao Xie continues to inspire students and collaborate in multidisciplinary research.

Publication Profile

Scopus

Education

Dr. Bao Xie completed both his undergraduate and doctoral studies at Chongqing University, one of China’s leading institutions for engineering and technology. His academic training has provided him with a comprehensive understanding of electrical engineering principles, as well as specialized expertise in the field of renewable energy. During his doctoral program, he conducted extensive research on control and stability mechanisms for grid-connected power generation systems, developing both theoretical frameworks and practical solutions. His education not only equipped him with a solid foundation in mathematics, physics and engineering analysis but also encouraged independent problem-solving, experimental design, and advanced computational modeling. These formative years played a vital role in shaping his approach to research, emphasizing innovation, precision, and the integration of emerging technologies into power systems. His academic journey has strongly positioned him to contribute effectively to the development of cleaner, smarter, and more stable energy systems worldwide.

Professional Experience

Dr. Bao Xie has established a professional career that integrates teaching, research, and project leadership. As a Lecturer at Hefei University of Technology, he actively engages in educating and mentoring students, particularly master’s candidates, guiding them through advanced topics in renewable energy and power engineering. His role extends beyond classroom instruction, as he supports students in developing research skills and innovative problem-solving capabilities. In addition to his academic duties, Dr. Bao Xie has successfully led funded projects that focus on renewable energy integration, contributing to both regional and national scientific initiatives. His participation in the National Key Research and Development Programs highlights his role as a valuable contributor to large-scale interdisciplinary research. By combining academic excellence with practical research application, Dr. Bao Xie has built a reputation as a dedicated scholar committed to advancing both scientific understanding and real-world energy transition goals.

Research Interest

Dr. Bao Xie’s research interests focus on the intersection of renewable energy technologies and modern power systems, with particular emphasis on control and stability in grid-connected environments. His work addresses critical challenges in integrating renewable energy sources, such as wind and solar power, into existing grids while maintaining reliability, efficiency, and security. He is deeply interested in advanced control strategies, dynamic stability analysis, and adaptive methods that enhance the performance of distributed generation systems. Furthermore, his research explores innovative techniques for managing fluctuations and uncertainties in renewable energy output, aiming to develop scalable solutions for future smart grids. Dr. Bao Xie also investigates the role of power electronics and intelligent optimization in renewable integration, seeking to bridge the gap between theoretical research and practical deployment. Through these diverse interests, he contributes to ensuring that renewable energy can be adopted widely while supporting sustainable development and global decarbonization efforts.

Research Skills

Dr. Bao Xie possesses a broad range of research skills that enable him to address complex issues in renewable energy integration and control systems. He is proficient in advanced modeling and simulation of grid-connected power systems, employing modern software tools and computational platforms to analyze performance and stability. His expertise includes designing control algorithms, conducting dynamic system analysis, and applying optimization techniques to enhance system efficiency. He is also experienced in experimental validation, translating theoretical models into practical implementations for renewable energy systems. Beyond technical competencies, Dr. Bao Xie demonstrates strong project management skills, having successfully led funded research initiatives and collaborated with multidisciplinary teams. His ability to integrate theoretical frameworks with applied research reflects a balanced skillset that ensures impactful outcomes. He is committed to continuous skill enhancement, keeping pace with emerging technologies such as artificial intelligence and smart grid applications to further strengthen his research contributions.

Awards and Honors

Throughout his academic and professional career, Dr. Bao Xie has been recognized for his contributions to research and education in renewable energy systems. His leadership in projects supported by the Anhui Provincial Natural Science Foundation highlights his ability to secure competitive funding and deliver innovative solutions to pressing energy challenges. As a contributing researcher in the National Key Research and Development Programs, he has been part of high-impact initiatives that advance China’s renewable energy integration and smart grid development. His scholarly publications in SCI and EI-indexed journals and conferences have earned him recognition in the academic community, establishing him as a respected researcher in his field. Additionally, his role as a supervisor of master’s candidates reflects both his academic credibility and his commitment to cultivating future researchers. These honors and achievements collectively underscore his standing as a dedicated scholar advancing both scientific discovery and societal progress.

Author Metrics

  • Total Citations: 619

  • Citing Documents: 582

  • Total Publications (Documents): 61

  • h-index: 15

Publications Top Notes

1. Analysis and improved design of phase compensated proportional resonant controllers for grid-connected inverters in weak grid
Citations: 60 | Year: 2020

2. Systematic design of linear quadratic regulator for digitally controlled grid‐connected inverters
Citations: 13 | Year: 2020

3. Analysis of resonance and harmonic amplification for grid‐connected inverters
Citations: 16 | Year: 2019

4. Stability and resonance analysis and improved design of N-paralleled grid-connected PV inverters coupled due to grid impedance
Citations: 17 | Year: 2018

5. Harmonic resonance analysis and stability improvement for grid-connected inverters
Citations: 9 | Year: 2020

Conclusion

Dr. Bao Xie exemplifies the qualities of a modern researcher committed to addressing global challenges in renewable energy and sustainable power systems. With a strong academic foundation, significant professional experience, and a portfolio of impactful projects, he has demonstrated the ability to combine theoretical research with practical applications. His focus on the control and stability of renewable energy grid-connected systems reflects a vision aligned with international goals of clean energy transition and carbon reduction. As a lecturer and supervisor, he not only contributes to scientific advancements but also plays a key role in mentoring future engineers and researchers. His research skills, combined with recognized achievements and honors, highlight his potential for continued excellence in academic and industrial collaborations. Looking ahead, Dr. Bao Xie is well-positioned to further strengthen his contributions to renewable energy innovation, shaping resilient, intelligent and sustainable power systems for future generations.

Lili Wang | Environmental Conservation | Best Researcher Award

Assoc. Prof. Dr. Lili Wang | Environmental Conservation | Best Researcher Award

Associate Professor | Zhejiang Sci-tech University | China

Assoc. Prof. Dr. Lili Wang is a highly accomplished scholar and researcher specializing in textile chemistry, dyeing, and finishing engineering. Serving as an Associate Professor at Zhejiang Sci-Tech University, she has established herself as a leading figure in the development of sustainable textile technologies. Her primary research focuses on ecological dyeing methods and the functionalization of natural polymers, with an emphasis on reducing environmental impact while enhancing textile performance. Assoc. Prof. Dr. Lili Wang has successfully led and contributed to multiple nationally and provincially funded research projects, particularly in the field of digital spray dyeing technology for polyester fabrics, which is recognized for its potential in energy conservation and carbon reduction. She has further demonstrated her innovative capacity by securing numerous invention patents, reflecting her ability to translate scientific research into practical applications. Her academic training, combined with postdoctoral experience in industry, enables her to integrate theoretical research with real-world textile solutions. Beyond her technical expertise, Assoc. Prof. Dr. Lili Wang is dedicated to advancing the global textile industry toward greener, more efficient practices. Her contributions highlight the importance of bridging academia and industry, making her an influential voice in shaping the future of sustainable textile science and engineering.

Publication Profile

Scopus

Orcid

Google Scholar

Education

Assoc. Prof. Dr. Lili Wang has built a strong academic foundation through a comprehensive educational journey across some of China’s leading institutions in textiles, chemistry, and materials science. She began her studies in materials science and engineering at the undergraduate level, where she gained fundamental knowledge in textile materials, fiber science, and engineering principles. This early academic training sparked her interest in exploring the chemistry of textiles and their applications in innovative and sustainable processes. Motivated to advance her expertise, she pursued graduate studies in chemistry, chemical engineering and biotechnology, where she deepened her understanding of advanced chemical reactions, polymer science, and their relevance to textile dyeing and finishing. Her doctoral training focused on the intersection of chemistry and textile applications, equipping her with the ability to conduct independent research and develop novel approaches to textile processing. To further strengthen her research profile, Assoc. Prof. Dr. Lili Wang undertook postdoctoral research in collaboration with industry, where she explored practical solutions for ecological dyeing and finishing technologies. This unique combination of academic rigor and industrial research experience has provided her with both theoretical depth and applied skills, enabling her to contribute meaningfully to advancing sustainable textile science and engineering.

Professional Experience

Assoc. Prof. Dr. Lili Wang has cultivated a career that bridges academic research, industrial application, and innovation in textile chemistry and ecological dyeing. At Zhejiang Sci-Tech University, she serves as an Associate Professor in the College of Textiles Science and Engineering, where she is actively engaged in teaching, research, and student mentorship. Her academic role involves guiding research in textile chemistry and dyeing, supervising projects focused on sustainable textile technologies, and fostering interdisciplinary collaboration. In addition to her university work, she has gained valuable industrial experience through postdoctoral research at Saintyear Holding Group Co., Ltd., where she applied her scientific expertise to real-world challenges in ecological dyeing and finishing. This dual experience has allowed her to integrate theoretical knowledge with practical solutions, ensuring that her research directly contributes to industrial innovation. Assoc. Prof. Dr. Lili Wang has successfully led and participated in major research projects funded by national and provincial foundations, focusing on energy-saving and eco-friendly textile processes. Her achievements include an impressive record of granted invention patents, reflecting her ability to transform scientific ideas into applied technologies. Through her professional journey, she has consistently demonstrated leadership, innovation, and a strong commitment to advancing sustainable practices in the textile industry.

Research Interest

Assoc. Prof. Dr. Lili Wang’s research interests are centered on advancing sustainable technologies in textile chemistry, dyeing, and finishing. She is particularly focused on developing new ecological dyeing methods that reduce water consumption, minimize energy use, and lower the carbon footprint of textile processing. One of her major areas of interest lies in digital spray dyeing for polyester fabrics, a cutting-edge approach recognized for its efficiency and environmental benefits. In addition, she explores the functionalization of natural polymers, aiming to create textiles with enhanced properties such as durability, antibacterial performance, and eco-compatibility. By integrating renewable resources with modern textile finishing techniques, her work contributes to the development of high-value and sustainable textile products. Assoc. Prof. Dr. Lili Wang also investigates interdisciplinary applications of polymer science, chemical engineering, and environmental chemistry to address industry challenges. Her research reflects a balance between innovation and responsibility, ensuring that technological advancements align with global sustainability goals. Through her projects, she seeks to create practical solutions that can be widely applied in the textile industry, ultimately promoting greener production models and contributing to the transformation of the global textile sector toward more sustainable and environmentally friendly practices.

Research Skills

Assoc. Prof. Dr. Lili Wang has developed a comprehensive set of research skills that combine advanced chemical knowledge, materials engineering expertise, and applied textile innovation. She is highly skilled in the design and optimization of textile dyeing processes with a focus on energy efficiency, water conservation, and environmental protection. Her technical expertise includes digital spray dyeing, ecological finishing methods, and the modification of polymers to enhance textile functionality. She is proficient in applying advanced analytical methods to evaluate dyeing performance, textile durability, and eco-friendly properties of treated fabrics. Assoc. Prof. Dr. Lili Wang also has strong project management skills, having successfully led and coordinated multiple national and provincial research projects funded by prestigious scientific foundations. Her ability to translate laboratory results into scalable industrial applications is evident in her portfolio of granted patents. In addition, she demonstrates expertise in interdisciplinary collaboration, bringing together principles of chemistry, chemical engineering, and textile science to create innovative solutions. Her research skills extend to experimental design, data analysis, and innovation development, ensuring that her work not only advances theoretical knowledge but also contributes practical technologies for the textile industry. This unique combination positions her as a versatile and impactful researcher in sustainable textile science.

Awards and Honors

Assoc. Prof. Dr. Lili Wang has received recognition for her outstanding contributions to the advancement of sustainable textile technologies. Her research achievements have been supported by major national and provincial funding bodies, reflecting the scientific significance and societal value of her work. She has secured competitive grants from the National Natural Science Foundation of China, the China Postdoctoral Science Foundation, and the Zhejiang Provincial Natural Science Foundation, demonstrating her strong research leadership and innovation capacity. Beyond funding recognition, her creativity and applied research outcomes are further highlighted by her impressive record of granted invention patents. These patents stand as a testament to her ability to translate theoretical knowledge into impactful technologies that address industrial needs. Her recognition is not limited to academic circles but extends to industrial collaborations, where her research outcomes contribute directly to advancing ecological dyeing and functional finishing practices. Assoc. Prof. Dr. Lili Wang’s honors reflect her commitment to developing environmentally responsible textile processes and her vision of promoting green innovation within the industry. These achievements underscore her role as a respected researcher, innovator, and academic leader, dedicated to shaping the future of textile engineering with sustainability and scientific excellence at the forefront.

Author Metrics

  • Total Documents Published: 60+

  • Total Citations: 2,740+

  • h-index: 30

  • i10-index: 60

These metrics reflect the significant academic impact and influence of Assoc. Prof. Dr. Lili Wang’s research in textile chemistry, ecological dyeing technologies, and polymer functionalization. Her work is widely cited in international journals, demonstrating both the quality and relevance of her scientific contributions to the global research community.

Publications Top Notes

1. Urea-free reactive printing of viscose fabric with high color performance for cleaner production
Year: 2021
Citations: 15

2. A novel quaternary ammonium triethanolamine modified polyester polyether for rapid wetting and penetration pretreatment for digital inkjet dyeing of polyester fabric
Year: 2025
Citations: 6

3. Organofluorosilicon modified polyacrylate with the unidirectional migration promotion of disperse dyes toward polyester fabric for wash-Free digital inkjet dyeing
Year: 2024
Citations: 6

4. Ecofriendly and durable flame-retardant cotton fabric based on alkyl/N/B/P modified meglumine with high efficiency
Year: 2023
Citations: 12

5. Ecofriendly dual-function cotton fabric with antibacterial and anti-adhesion properties based on modified natural materials
Year: 2024
Citations: 3

Conclusion

Assoc. Prof. Dr. Lili Wang has established herself as a dynamic academic and researcher whose career reflects the integration of scientific excellence, practical innovation, and environmental responsibility. With her strong foundation in chemistry, biotechnology, and materials science, she has advanced into a leading role in textile chemistry and sustainable dyeing technologies. Her focus on ecological dyeing and functionalization of natural polymers demonstrates her commitment to addressing pressing global challenges in textile production, such as energy consumption, water conservation, and pollution reduction. Through her leadership in nationally and provincially funded projects, she has contributed innovative solutions that align academic research with industrial applications, reinforcing the importance of sustainability in modern textiles. Her impressive portfolio of invention patents further illustrates her ability to translate research outcomes into practical technologies that benefit both the industry and society. Beyond technical contributions, Assoc. Prof. Dr. Lili Wang plays a vital role as an educator and mentor, inspiring the next generation of researchers in textile science. Her career path exemplifies how academic rigor, interdisciplinary collaboration, and a vision for sustainability can converge to shape the future of textile engineering. With her expertise and dedication, Assoc. Prof. Dr. Lili Wang continues to make meaningful contributions toward building a greener and more innovative textile industry.