Assoc Prof Dr. Haibo Feng – Geological environment investigation and evaluation – Best Researcher Award

Assoc Prof Dr. Haibo Feng - Geological environment investigation and evaluation - Best Researcher Award

China University of Geosciences, Wuhan, China -  China

AUTHOR PROFILE

SCOPUS

EARLY ACADEMIC PURSUITS:

Haibo Feng's academic journey commenced with a focus on Environmental Engineering, culminating in a Ph.D. in Hydrogeology from China University of Geosciences. His educational background equipped him with a strong foundation in environmental science and engineering principles.

PROFESSIONAL ENDEAVORS

Transitioning into the professional realm, Feng assumed the role of a lecturer at China University of Geosciences, where he continues to contribute to the field of environmental research. His professional journey underscores a commitment to advancing knowledge and addressing environmental challenges.

CONTRIBUTIONS AND RESEARCH FOCUS

Feng's research primarily revolves around ecological restoration and geological environment investigation in mining areas. He has led various projects investigating the stability of alpine grassland ecosystems, the transformation processes of surface water, groundwater, and soil water, Geological environment investigation and evaluation and the assessment of ecological improvement in mining areas.

IMPACT AND INFLUENCE

Haibo Feng's research has made a notable impact on the field of environmental science, particularly in understanding the complex interactions between mining activities and ecological systems. His work has contributed valuable insights into ecosystem dynamics and informed strategies for Geological environment investigation and evaluation sustainable resource management.

ACADEMIC CITATIONS

Feng's publications have garnered significant attention within the scientific community, evident from his substantial citation index. His research on topics such as groundwater level decline, grassland degradation, and groundwater environmental risk assessment has been widely cited, reflecting the relevance and influence of his work.

LEGACY AND FUTURE CONTRIBUTIONS

Haibo Feng's legacy lies in his dedication to addressing environmental challenges in mining areas and fragile ecosystems. Moving forward, his research is poised to continue shaping environmental policy and practice, with a focus on promoting ecological restoration and sustainable resource management.

GEOLOGICAL ENVIRONMENT INVESTIGATION AND EVALUATION

Feng's research encompasses comprehensive investigations into the geological environment of mining areas. By studying the interactions between geology, hydrology, and ecology, he seeks to understand the complex dynamics shaping these environments and develop effective strategies for their management and restoration.

NOTABLE PUBLICATIONS

Co-evolution mechanism of grassland degradation and its belowground habitat under the influence of coal mining activities   2024

Effects of Groundwater Level Decline on Soil-Vegetation System in Semi-Arid Grassland Influenced by Coal Mining  2024

Prof Dr. Jianwei Zhou – Ecological restoration of mining areas – Best Researcher Award

Prof Dr. Jianwei Zhou - Ecological restoration of mining areas - Best Researcher Award

China University of Geosciences, Wuhan, China - China

AUTHOR PROFILE

SCOPUS

ORCID

EARLY ACADEMIC PURSUITS

Jianwei Zhou's academic journey began with a multidisciplinary approach, earning degrees in Hydrogeology and Engineering Geology, as well as Journalism. This diverse background laid the foundation for his later contributions to environmental engineering and hydrology.

PROFESSIONAL ENDEAVORS

Zhou's professional path led him through roles in both engineering and academia, from his early years as an assistant engineer in construction to his current position as a Professor at China University of Geosciences. His transition to academia provided a platform for him to delve into research aimed at addressing environmental challenges.

CONTRIBUTIONS AND RESEARCH FOCUS ON ECOLOGICAL RESTORATION OF MINING AREAS

Zhou's research focuses on environmental protection and ecological restoration in mining areas, with a particular emphasis on groundwater pollution prevention and control. His work spans various projects investigating the migration and transformation mechanisms of heavy metals like antimony, Ecological restoration of mining areas as well as the ecological impacts of coal mining activities.

IMPACT AND INFLUENCE

Jianwei Zhou's research has made a significant impact on the field of environmental engineering and hydrology, as evidenced by his numerous publications in high-impact journals and his involvement in key research projects funded by prestigious organizations. His contributions have provided valuable insights into the management of groundwater pollution and the restoration of ecosystems affected by mining activities.

ACADEMIC CITATIONS

Zhou's research has garnered considerable attention within the scientific community, with a substantial citation index reflecting the impact of his work. His publications on topics such as antimony pollution control and ecological restoration techniques have been cited extensively, Ecological restoration of mining areas demonstrating the relevance and significance of his research.

LEGACY AND FUTURE CONTRIBUTIONS

Jianwei Zhou's legacy lies in his pioneering research in environmental protection and ecological restoration, which has laid the groundwork for future advancements in the field. Moving forward, his work is poised to continue shaping environmental policy and practice, with a focus on sustainable solutions for mitigating the impact of mining activities on the environment.

NOTABLE PUBLICATIONS

Co-evolution mechanism of grassland degradation and its belowground habitat under the influence of coal mining activities  2025

Effects of groundwater level decline on soil-vegetation system in semiarid grassland influenced by coal mining    2024

Antimony mobility in soil near historical waste rock at the world's largest Sb mine, Central China  2024

Enrichment of arsenic in the Yarlung Tsangpo basin, Southern Tibetan Plateau: Provenance, process,  2024

Distribution and transformation characteristics of water vapor field in the fissured rock mass and its ecological significance    2024