Tianpeng Hu | Soil Remediation | Research Excellence Award

Dr. Tianpeng Hu | Soil Remediation | Research Excellence Award

Hubei Polytechnic University | China

Dr. Tianpeng Hu’s Research Excellence Award recognizes outstanding contributions to environmental and soil-related research, particularly in the study of persistent organic pollutants (POPs) and their interactions within soil, water, and atmospheric systems. His research focuses on understanding the distribution, sources, transformation, and ecological risks of contaminants such as polycyclic aromatic hydrocarbons (PAHs) and heavy metals across diverse environmental gradients. By integrating advanced analytical techniques, field investigations, and high-resolution sedimentary records, his work provides critical insights into pollutant transport, air–soil exchange, and long-range atmospheric deposition. Significant emphasis has been placed on assessing environmental and human health risks, as well as the impact of industrialization and climate change on pollutant dynamics. His contributions also extend to soil remediation and ecological restoration strategies, promoting sustainable environmental management. With 57 scholarly documents, 1,388 citations across 1,234 citing documents, and an h-index of 22, his research demonstrates strong academic influence and global relevance. The work not only advances scientific understanding of environmental contamination processes but also supports the development of evidence-based policies and innovative solutions for protecting ecosystems and public health.

Citation Metrics (Scopus)

1500
1000
500
100
0

Citations
1388

Documents
57

h-index
22

Citations

Documents

h-index

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Featured Publications


Distribution of polycyclic aromatic hydrocarbons (PAHs) along altitude gradient in the soil from the roof ridge mountains in mid-latitude regions of Central China

– Journal of Environmental Sciences, 2026


Variations in the characteristics and sources of PM2.5 during the COVID-19 lockdown in Xiangyang, Hubei Province, central China

– Atmospheric Pollution Research, 2025


Understanding the source-sink dynamics of PAHs at the sediment-water interface of a typical karst wetland, southwest China

– Environmental Pollution, 2025


Effects of nonextractable residual formation on the study of historical PAH pollution and source contribution in a lake sediment core

– Environmental Pollution Journal of Environmental Sciences, 2025


How does the coupled action of freeze-thaw and acidification affect the release of toxic elements from indigenous Zn smelting slags?

– Journal of Environmental Sciences, 2025

Rakhwe Kama | Soil Remediation | Research Excellence Award

Dr. Rakhwe Kama | Soil Remediation | Research Excellence Award

South China Agricultural University | China

Rakhwe Kama is a researcher in Agricultural Water–Soil Engineering with strong expertise in agroecology, soil pollution and remediation, and environmental management for agriculture, focusing on sustainable solutions for contaminated agroecosystems. His research integrates water–soil–plant interactions, heavy metal migration and stabilization, ecological restoration, and food and water security, with particular emphasis on trace elements such as As, Cd, Pb, and Fe, as well as soil carbon and nitrogen cycling under different cropping and management systems. He has led and contributed to studies addressing the safe agricultural use of co-contaminated mining lands, the impacts of wastewater irrigation on metal mobility, and the role of planting patterns in regulating soil–plant associations and ecosystem diversity. His scholarly output demonstrates consistent impact, with 31 peer-reviewed publications that have received 330 citations across 292 citing documents, resulting in an h-index of 11. These publications appear in reputable international journals spanning environmental science, agroecology, and soil research, reflecting both fundamental and applied contributions. In addition to research productivity, his work supports sustainable agriculture, ecological resilience, and environmentally responsible land management, advancing practical strategies for soil remediation, pollution mitigation, and long-term agricultural sustainability in complex and contaminated environments.

Citation Metrics (Scopus)

350
260
170
85
0

Citations
330

Documents
31

h-index
11

Citations

Documents

h-index

View Scopus ProfileView ORCID Profile


Straw Incorporation Combined with Cd/As-Resistant Microbial Inoculation Reduces Arsenic and Cadmium Bioavailability in Water Spinach


– Environmental Technology & Innovation


Optimizing Nitrogen Application in a Pennisetum hydridum–Sesbania cannabina Intercropping System to Enhance Soil Carbon Sequestration


– Land Degradation & Development


Structure-Based Functions of Humic Acid in Plant Abiotic Stress Alleviation: A Review


– Plants


Optimizing Nitrogen Management to Improve Growth Performance and Reduce Pollution Risk in Pennisetum hydridum


– Agronomy


Enhancing Cd-Contaminated Soil Restoration and Reducing Rice Cadmium Uptake through Hyperaccumulator Diversity


– ACS Omega

Jianling Xu | Soil | Excellence in Soil Research

Prof. Jianling Xu | Soil | Excellence in Soil Research

Prof. Jianling Xu, Northeast Normal University, China

Prof. Jianling Xu is a distinguished environmental scientist and Professor at Northeast Normal University, China. With deep expertise in soil environmental health, pollution remediation, and sustainable resource utilization, she has led numerous national research initiatives and contributed over 30 SCI-indexed publications and 40 patents. Her work focuses on land-sea pollution control and ecological risk assessment. A recipient of prestigious awards such as the MOE Second Prize for Technological Invention and Hainan’s “Sifang Talent,” Prof. Xu also serves as Vice Chair of the Wetland Committee of CSES and an expert for the Basel Convention Asia-Pacific Think Tank.

Profile

Scopus

Orcid

Summary:

Prof. Jianling Xu exemplifies the ideal profile for the Research for Excellence in Soil Research Award. Her multifaceted work in soil health, pollution remediation, and ecological risk management is backed by strong publications, innovative solutions, and meaningful impact on both science and society. She bridges the gap between academic rigor and practical application, influencing policy, education, and environmental practices.

🎓 Education

Prof. Jianling Xu serves as a Professor and Ph.D. Supervisor in Environmental Science and Engineering. She is affiliated with Yazhou Bay Innovation Institute, the College of Ecology and Environment at Hainan Tropical Ocean University, and the Northeast Institute of Geography and Agroecology under the Chinese Academy of Sciences. Her academic background supports her specialization in soil and environmental systems, emphasizing an interdisciplinary approach to ecological challenges.

💼Experience

Prof. Xu has led and contributed to numerous national and institutional research initiatives. She is actively involved in high-impact projects funded by the National Natural Science Foundation of China (NSFC) and the Chinese Academy of Sciences (CAS). Her leadership extends to consultancy work, editorial responsibilities as a reviewer for SCI-indexed journals, and international environmental governance through the Basel Convention Asia-Pacific Think Tank. Additionally, she holds the role of Vice Chair of the Wetland Committee of the Chinese Society for Environmental Sciences (CSES).

🔬Research Focus

Her primary research areas lie in environmental science and engineering with a focus on soil environmental health, pollution remediation, and sustainable resource management. She has conducted in-depth studies on heavy metal contamination in agricultural black soils, quantified pollutant sources such as coal combustion and mining, and developed mitigation strategies for mercury and cadmium risks. Her work significantly contributes to sustainable soil conservation and public health policy development.

🛠️Skills

Prof. Xu brings expertise in land-sea pollution control, ecological remediation, environmental risk assessment, pollution source tracing using PMF modeling, and waste resource utilization. She is also proficient in environmental planning and management and demonstrates exceptional skills in coordinating complex research programs, innovating soil remediation strategies, and applying risk management in heavy metal pollution.

🏆Awards

She has received multiple prestigious recognitions, including the Second Prize for Technological Invention from the Ministry of Education (MOE) and the “Sifang Talent” award from Hainan Province. Prof. Xu has been honored as a “Provincial Top Innovative Talent” and is a distinguished contributor to national education through her development of two National First-Class Courses.

📚 Publications

  • Title: Quantification of an integrated approach to heavy metal source apportionment and probabilistic health risk assessment in the black soil region of central Jilin Province, China
    Year: 2025
    Journal: Ecotoxicology and Environmental Safety

  • Title: Study of the Relationship Between Nitrogen, Phosphorus Content, and Microbial Community Changes in Deer Manure Compost with Different Conditioners
    Year: 2025
    Journal: Fermentation

  • Title: Study on the Effect of Conditioners on the Degradation of Tetracycline Antibiotics in Deer Manure Composting
    Year: 2024
    Journal: Fermentation

  • Title: Removal of sulfonamide antibiotics by constructed wetland substrate with NaOH-modified corn straw biochar under different operating conditions
    Year: 2024
    Journal: Bioresource Technology

  • Title: The efficiency of enhanced nitrogen and phosphorus removal in a vertical flow constructed wetland using alkaline modified corn cobs as a carbon source
    Year: 2024
    Journal: Environmental Technology and Innovation

Conclusion:

Prof. Jianling Xu is an excellent candidate for this award. Her work not only advances scientific understanding but also contributes to sustainable soil management practices essential for agriculture, ecosystem services, and human health. With a few enhancements in global collaboration and outreach, she stands out as a thought leader with lasting impact in the field of soil science.