Dr. Hengpeng Li  – Environmental Science – Best Researcher Award

Dr. Hengpeng Li  - Environmental Science - Best Researcher Award

Nanjing Institute of Geography & Limnology, Chinese Academy of Sciences - China 

Author Profile 

SCOPUS 

🎓 Early academic pursuits

Dr. Li Hengpeng began his academic journey with a deep interest in environmental science and engineering. his foundational education laid the groundwork for his future contributions in integrated watershed management and land-environment interactions. committed to interdisciplinary excellence, he refined his focus on hydrology, water quality, and sustainable ecological strategies early in his academic career. during this period, his curiosity extended to emerging fields such as power electronics, where he explored its intersection with environmental monitoring systems and automation of ecological observations.

🏛️ Professional endeavors

Currently serving as a research professor, dr. li hengpeng holds dual directorial roles: at the watershed resources and eco-environment research laboratory within the nanjing institute of geography and limnology, chinese academy of sciences (cas), and at the tianmu lake basin ecological observation and research station. under his leadership, these institutes have made substantial contributions to the development of watershed ecological security mechanisms. with extensive field experience, he has seamlessly integrated innovative technologies, including power electronics systems for real-time environmental data collection and analysis, into the operational frameworks of these research stations.

🔬 Contributions and research focus

Dr. Li’s primary research domains include land-cover change and environmental impacts, hydrological and water quality modeling, and watershed planning and management. he has published over 100 academic papers in prestigious journals, cementing his reputation as a leader in watershed science. one of his most groundbreaking efforts is the market-based trading Environmental Science trial for water environmental capacity, framing it as an ecosystem service product. this novel concept not only innovates environmental governance but also utilizes concepts from power electronics in smart monitoring systems to regulate and quantify ecological service exchanges in real-time.

🌍 Impact and influence

The societal relevance and environmental impact of dr. li’s work are significant. his models and strategies have influenced the legislative protection of lake and reservoir environments across china. selected as a leading talent under the jiangsu provincial "333 high-level talent cultivation project", he has shaped national policy through science-backed recommendations. his projects were highlighted as model cases in two key national initiatives: the ndrс’s “value realization mechanism of ecological products” and the mee’s “green development in Environmental Science ecological civilization demonstration projects.” his efforts have led to improved watershed governance, demonstrating a strong intersection between science, policy, and environmental ethics.

📚 Academic cites

With over 100 academic papers published, dr. li hengpeng has built an influential academic presence in the fields of environmental science, hydrology, and sustainability planning. his work is frequently cited in international journals addressing ecosystem service valuation, hydrological dynamics, and land-use planning. many of his publications serve as reference points for Environmental Science interdisciplinary studies combining geographical information systems (gis), remote sensing, and environmental modeling—enhanced further by his integration of power electronics in eco-sensing and adaptive environmental control frameworks.

🌱 Legacy and future contributions

Dr. Li's innovative approach to ecosystem service commercialization and watershed management has established a new paradigm in eco-environmental governance. awarded the 2024 jiangsu may 1st labor medal, his legacy continues to inspire young researchers in china and beyond. moving forward, his focus remains on refining integrated ecological models and enhancing data-driven environmental decision-making systems. future projects aim to elevate smart watershed governance by embedding ai-driven tools and expanding the use of automation through intelligent systems and power electronics for precision monitoring and resource optimization.

Notable Publications 

  • Title: Variability in N₂O emission controls among different ponds within a hilly watershed
    Author(s): Shuyi Xie, Tianyu Xia, Hengpeng Li, Yongjuan Chen, Wangshou Zhang
    Journal: Water Research

  • Title: Breaking the Boundary between Permanent Capital Farmland and Arable Land in China: Understanding State and Drivers of Permanent Capital Farmland Non-Grain Production in a Rapid Urbanizing County
    Author(s): Yunjie Shi, Hengpeng Li, Jianwei Geng, Wangshou Zhang, Yuyang Shao
    Journal: Land

  • Title: Historical development, impact mechanism and future trends of nitrogen footprint in Wuxi City, China
    Author(s): Chuanhe Xiong, Hengpeng Li, Hongxiang Fan, Akida Askar
    Journal: Science of the Total Environment

  • Title: Wetland Destruction in a Headwater River Leads to Disturbing Decline of In-stream Nitrogen Removal
    Author(s): Wangshou Zhang, Hengpeng Li, Dawei Xu, Tianyu Xia
    Journal: Environmental Science and Technology

  • Title: Review of Researches on Nitrogen Removal Effects of Denitrifying Woodchip Bioreactor from Agricultural Non-point Source Wastewater
    Author(s): Jiaping Pang, Hengpeng Li, Jun Li, Shuai Zang
    Journal: Journal of Ecology and Rural Environment

Dr. Juan Zhang – Soil pollution and remeidation – Best Researcher Award

Dr. Juan Zhang - Soil pollution and remeidation - Best Researcher Award

University of Science and Technology Beijing - China

Professional Profile

SCOPUS

ORCID

Early Academic Pursuits

Dr. Juan Zhang embarked on her academic journey in 2003 at the Harbin Institute of Technology, where she earned a Bachelor's degree in Biological Engineering in 2007. Her undergraduate thesis focused on the "Change of Marine Microbe Community in Activated Sludge," marking the beginning of her exploration into environmental sciences. She continued her studies at Shandong University, where she completed her PhD in Environmental Science in 2012. Her doctoral research was centered on the "Distribution, Source, and Migration of Petroleum Hydrocarbons in Soil, Air, and Water in the Wastewater-Irrigated Area," laying a strong foundation for her future research in environmental contamination and remediation.

Professional Endeavors

Following her PhD, Dr. Zhang pursued a post-doctoral fellowship at the State Key Laboratory of Environmental Criteria and Risk Assessment, part of the Chinese Research Academy of Environmental Sciences. Here, she honed her expertise in environmental risk assessment and criteria development. In January 2015, she joined the University of Science and Technology Beijing as an Associate Professor in the School of Metallurgical and Ecological Engineering. Her professional journey also includes significant international experience, having served as a visiting scholar at the University of California, Davis, and as an Associate Professor at the University of Tokyo's School of Agricultural and Life Sciences.

Contributions and Research Focus

Dr. Zhang's research is primarily concerned with the migration, transformation, and control of contaminants across various media, including solids, water, and air. She has made substantial contributions to pollution source analysis, ecological and human health risk evaluation of contaminated sites, and environmental remediation. Her work includes environmental monitoring and analysis of organic contaminants and heavy metals, Soil pollution and remeidation and she is proficient in using advanced statistical models and software such as ArcGIS, SPSS, STATISTICA, and Canoco Software. Additionally, she has conducted research on bacterial isolation, culture, and the study of bacterial phospholipids and extracellular polymeric substances.

Accolades and Recognition

Dr. Zhang's contributions to environmental science have been recognized through her roles in prominent institutions. She has worked in the general affairs department of the Chinese Research Academy of Environmental Sciences and the National Natural Science Foundation of China. Her research and professional skills Soil pollution and remeidation have earned her a position as a part-time researcher at the Shaanxi Key Laboratory of Ecological Restoration and a part-time employee in the Department of Chemical Sciences at the National Natural Science Foundation of China.

Impact and Influence

Dr. Zhang's work has significantly influenced the field of environmental science, particularly in the areas of contaminant migration, ecological risk assessment, and environmental remediation. Her research has provided valuable insights into the environmental impacts of pollutants and the efficacy of various remediation Soil pollution and remeidation strategies. Her strong analytical, negotiating, communication, and advocacy skills have enabled her to contribute effectively to policy and decision-making processes in environmental science and technology.

Legacy and Future Contributions

Dr. Zhang's legacy in the field of environmental science is marked by her extensive research, international collaborations, and contributions to environmental policy and remediation strategies. As she continues her work at the University of Tokyo and other prestigious institutions, her future contributions are expected to further advance our understanding of environmental contaminants and the development of effective remediation techniques. Her ongoing research and professional endeavors will undoubtedly continue to shape the field and inspire future generations of environmental scientists.

NOTABLE PUBLICATIONS

A review of functions and mechanisms of clay soil conditioners and catalysts in thermal remediation  2025(1)

Contamination and human health risk assessment of heavy metal(loid)s in topsoil and groundwater around  2023(3)

Reductive roasting of arsenic-contaminated red mud for Fe resources recovery driven by johnbaumite-based arsenic  2023(5)

“Soil for Soil Remediation” Strategy Driven on Converting Natural Soils into Fe2O3-CAN-Type Zeolite Composites   2023(1)

Detoxification pathways of multiple metals from intensive copper production by indigenous ureolytic microbes coupled  2023(1)