Ping Li | Environmental Pollution | Young Innovator Award

Young Innovator Award

               Research Profile
Researcher Ping Li
Affiliation Farmland Irrigation Research Institute of Chinese Academy of Agricultural Sciences
Country China
Scopus ID 56651336500
Documents 99
Citations 2,152
h-index 11
Subject Area Environmental Pollution
Event New Scientists Awards
ORCID 0000-0001-8322-2327

Ping Li
Chinese Academy of Agricultural Sciences  , China

Ping Li is a researcher at the Farmland Irrigation Research Institute of the Chinese Academy of Agricultural Sciences, China. His scholarly activities focus on environmental pollution, agricultural water management, irrigation engineering, and sustainable environmental protection. Through peer-reviewed publications and interdisciplinary research, he has contributed to scientific understanding of environmental processes affecting agricultural production and water resources. His research profile includes 99 indexed publications, more than 2,100 citations, and an h-index of 11 according to Scopus metrics.[1]

Abstract

This article summarizes the academic profile of Ping Li in relation to the Young Innovator Award. His research primarily addresses environmental pollution, irrigation science, agricultural sustainability, and water resource management. His scientific publications demonstrate an ongoing commitment to improving environmental quality through evidence-based engineering and agricultural research while contributing to sustainable development goals.[1][2]

Keywords

  • Environmental Pollution
  • Agricultural Water Management
  • Irrigation Engineering
  • Water Resources
  • Sustainable Agriculture
  • Young Innovator Award

Introduction

Modern environmental research increasingly requires interdisciplinary approaches that integrate engineering, environmental science, and agricultural management. Ping Li’s work aligns with these priorities by examining the interactions between irrigation practices, environmental protection, and sustainable agricultural production. His scholarly contributions support scientific understanding while addressing practical challenges affecting water conservation and pollution mitigation.[2]

Research Profile

Ping Li has established a research portfolio covering environmental pollution, irrigation systems, agricultural engineering, soil-water interactions, and environmental sustainability. His publication record indexed in Scopus demonstrates continued scientific productivity and collaborative research across environmental disciplines.[1]

  • 99 Scopus-indexed publications.
  • 2,152 academic citations.
  • h-index of 11.
  • Research emphasizing environmental sustainability and irrigation science.

Research Contributions

The research contributions of Ping Li encompass environmental pollution assessment, efficient irrigation technologies, water-saving agricultural systems, and environmental monitoring. His publications contribute to improving agricultural resilience while supporting environmentally responsible management practices through quantitative scientific methodologies.[3]

Publications

Ping Li has authored numerous peer-reviewed journal articles indexed in international databases. Representative research topics include environmental pollution analysis, irrigation management, water conservation, and sustainable agricultural engineering. Several publications include Digital Object Identifiers (DOIs), ensuring persistent scholarly accessibility.[4]

Research Impact

Citation metrics indicate that Ping Li’s work has been recognized by researchers investigating environmental pollution, irrigation science, and agricultural sustainability. His publications contribute to evidence-based decision making and provide scientific references for future research within environmental engineering and agricultural sciences.[1]

Award Suitability

Based on publicly available scholarly indicators, Ping Li demonstrates characteristics consistent with consideration for the Young Innovator Award, including sustained publication activity, measurable citation impact, interdisciplinary research, and contributions to environmental sustainability. His academic achievements reflect continued engagement in research addressing global environmental and agricultural challenges.[5]

Conclusion

Ping Li has developed an academic profile characterized by research productivity, interdisciplinary collaboration, and measurable scientific influence. His work supports advances in environmental pollution research and sustainable agricultural management while contributing to the broader scientific community through peer-reviewed scholarship and internationally indexed publications.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Ping Li, Author ID 56651336500. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=56651336500
  2. ORCID. (n.d.). Ping Li ORCID Record.
    https://orcid.org/0000-0001-8322-2327
  3. Crossref. (2021). Research article related to agricultural water management.
    DOI:https://doi.org/10.1016/j.agwat.2021.107081
  4. Crossref. (2020). Environmental pollution and irrigation-related publication.
    DOI:https://doi.org/10.1016/j.jenvman.2020.110746
  5. New Scientists Awards. (n.d.). Young Innovator Award Recognition Program.
    https://newscientists.net/

Rajaa Kholssi | Climate Change and Global Warming | Research Excellence Award

Dr. Rajaa Kholssi | Climate Change and Global Warming | Research Excellence Award

Postdoctoral Researcher | University of Burgos | Spain

Dr. Rajaa Kholssi is an active researcher in environmental biotechnology and aquatic sciences, with a strong focus on microalgae, cyanobacteria, ecotoxicology, and sustainable bio-based solutions. Her research integrates experimental and applied approaches to understand how environmental stressors-such as salinity, temperature variation, metals, and emerging contaminants-affect aquatic primary producers and ecosystem functionality. She has authored and co-authored multiple peer-reviewed journal articles in high-impact international journals covering marine environmental research, agricultural biotechnology, soil fertility enhancement, and circular bioeconomy applications of microalgae. Her scholarly output includes contributions to interdisciplinary research projects addressing climate change impacts, green agriculture, biofertilizers, and environmental risk assessment. Dr. Rajaa Kholssi has also disseminated her findings through international scientific conferences and symposia. Her work demonstrates innovation in multispecies culture systems, biofertilization strategies, and ecotoxicological assessment frameworks. She has received academic recognition through competitive research programs and contributes to the scientific community through peer-review and collaborative research initiatives. According to Google Scholar, she has received 493 citations with an h-index of 11 and an i10-index of 13.

Citation Metrics (Google Scholar)

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493

Documents
29

h-index
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i10index
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Documents

h-index

i10-index

View Scopus Profile  View ORCID Profile  View Google Scholar  View ResearchGate

Featured Publications

Rifeng Wu | Environmental Pollution and Remediation | Best Paper Award

Dr. Rifeng Wu | Environmental Pollution and Remediation | Best Paper Award

Lecturer | Guangxi Normal University | China

Dr. Rifeng Wu is an emerging environmental scientist whose research focuses on microbial reductive dehalogenation, organohalide bioremediation, and the integration of microbial systems with material-based catalytic processes. His work targets the remediation of soils and groundwater contaminated with halogenated organic pollutants, advancing both mechanistic understanding and applied technologies for environmental cleanup. His research productivity includes 8 Scopus-indexed publications, 358 citations, and an h-index of 7, reflecting growing international recognition. A central component of Dr. Rifeng Wu’s research involves enhancing the ecological fitness, colonization behavior, and synergistic interactions of organohalide-respiring bacteria. His publication in Environmental Science & Technology demonstrates innovative strategies for improving microbial interactions to accelerate chloroethene bioremediation. He has also developed integrated systems combining microbial reductive dehalogenation with advanced oxidation processes such as persulfate activation, resulting in complete organohalide attenuation and improved remediation efficiency, as reported in Frontiers of Environmental Science & Engineering. Dr. Rifeng Wu has contributed impactful findings to high-impact journals including Journal of Hazardous Materials, where he introduced bio-RD-PAOP materials for polychlorinated biphenyl degradation, combining engineered materials with microbiological pathways to achieve enhanced dechlorination performance. His research also extends to nanomaterial synthesis for catalytic applications, demonstrated through multiple publications in Applied Catalysis B: Environmental, ACS Sustainable Chemistry & Engineering, and Chinese Journal of Catalysis, where he has designed advanced Pt-Pd-based nanostructures with superior electrocatalytic behavior for oxygen reduction reactions. He has participated in several national and provincial research projects, contributing to methodological advancements in contaminant degradation, microbial ecology, and sustainable remediation technologies. His recent work also includes studying microplastic-induced physiological changes in plants, broadening his contributions to emerging environmental pollution challenges. Dr. Rifeng Wu’s research achievements span journal publications, funded projects, innovative remediation systems, and interdisciplinary material–microbe technologies, positioning him as a notable young scholar in environmental biotechnology and pollution control.

Profiles: Scopus | ResearchGate

Featured Publications

1. Wu, R., Shen, R., Liang, Z., Zheng, S., Yang, Y., Lu, Q., Adrian, L., & Wang, S. (2023). Improve niche colonization and microbial interactions for organohalide-respiring-bacteria-mediated remediation of chloroethene-contaminated sites. Environmental Science & Technology, 57(45). https://doi.org/10.1021/acs.est.3c05932

2. Wu, R., Zhang, S., & Wang, S. (2022). Development and microbial characterization of Bio-RD-PAOP for effective remediation of polychlorinated biphenyls. Journal of Hazardous Materials, 436, 129190. https://doi.org/10.1016/j.jhazmat.2022.129190

3. Wu, R., & Wang, S. (2021). Integration of microbial reductive dehalogenation with persulfate activation and oxidation (Bio-RD-PAO) for complete attenuation of organohalides. Frontiers of Environmental Science & Engineering, 16(2), 22. https://doi.org/10.1007/s11783-021-1457-8

4. Li, Y., Wu, R., Liu, Y., Wen, Y., & Shen, P. K. (2021). High-quality and deeply excavated PtPdNi nanocubes as efficient catalysts toward oxygen reduction reaction. Chinese Journal of Catalysis, 42(5), 772–780. https://doi.org/10.1016/S1872-2067(20)63703-2

5. Wang, S., Wu, R., Zhang, S., & Helmholtz Centre for Environmental Research. (2022). Development and microbial characterization of Bio-Rd-Pao for extensive attenuation of persistent organohalides. SSRN Electronic Journal. https://doi.org/10.2139/ssrn.4039585