Lei Zhang | Waste Treatment | Best Researcher Award

Prof. Lei Zhang | Waste Treatment | Best Researcher Award

Professor at Wuhan Polytechnic University, China.

Prof. Lei Zhang is an esteemed academic at Wuhan Polytechnic University, specializing in metallurgical and agricultural waste treatment, electro-Fenton technology, and biochar materials. 🌍 His career highlights include serving as Chief Researcher for Environmental Protection at Baowu Steel Group, the world’s largest steel company. During his tenure, he led groundbreaking projects that revolutionized industrial waste management by developing co-processing technologies for high-temperature steel furnaces. 🏭 With over 60 published papers and 20+ patents to his credit, Prof. Zhang has significantly influenced sustainable industrial practices. His innovative approaches have garnered recognition in both academic and industrial sectors, making him a leader in the field of environmental engineering. 🌱

 

Professional ProfilesπŸ“–

Education πŸŽ“

Prof. Lei Zhang’s academic journey is marked by excellence and innovation. He earned his Ph.D. in Environmental Engineering from Wuhan University, focusing on metallurgical waste treatment and resource utilization. πŸ“š His M.Sc. from Shanghai Jiao Tong University emphasized chemical engineering, with a thesis on electro-Fenton degradation of industrial wastewater. πŸ’§ Prof. Zhang completed his B.Sc. in Materials Engineering at Tsinghua University, specializing in green material synthesis. 🌿 These academic pursuits provided him with a strong foundation for his groundbreaking research in waste recycling and sustainable technologies.

Professional ExperienceπŸ’Ό

Prof. Zhang brings over two decades of experience in academia and industry. As a professor at Wuhan Polytechnic University, he leads cutting-edge research on sustainable metallurgical processes. 🌟 Previously, he served as Chief Researcher for Environmental Protection at Baowu Steel Group, where he developed innovative solutions for co-processing metallurgical waste. His collaboration with the China Metallurgical Group Corporation advanced Electro-Fenton technology, enabling effective coking wastewater treatment. πŸ”¬ His combined academic expertise and industrial application have earned him a reputation as a pioneer in sustainable waste management.

Research Focus πŸ”

Prof. Zhang’s research centers on transforming metallurgical waste into valuable resources. ♻️ His work in co-processing technologies leverages high-temperature steel furnaces to recycle diverse solid and hazardous materials safely. 🌍 His expertise in electro-Fenton technology has led to advanced wastewater treatment solutions, addressing some of the most pressing environmental challenges. Additionally, his innovations in biochar functional materials are paving the way for sustainable agricultural and industrial applications. 🌱 Through his research, Prof. Zhang aims to create a cleaner, greener future for the planet.

Awards and Honors

Prof. Zhang’s contributions have been widely recognized. He received the Best Innovation Award from the China Metallurgical Society in 2022 for his groundbreaking work in metallurgical waste management. πŸŽ–οΈ In 2020, he was awarded the National Technology Advancement Medal by the Ministry of Science and Technology. Additionally, he was named one of the Top 100 Innovators in Metallurgy by the Global Materials Forum in 2019. 🌟 These accolades underscore his commitment to advancing sustainable practices in industrial and environmental engineering.

Conclusion βœ…

Prof. Lei Zhang’s extensive contributions to metallurgical waste treatment, resource utilization, and environmental protection make him a strong candidate for the Best Researcher Award. His work combines academic rigor, innovative thinking, and industrial applicability, aligning perfectly with the award’s objectives. Strengthening international visibility and diversifying project scope could further solidify his standing as a global leader in sustainable materials research.

Publications to NotedπŸ“š

BPPO-based anion exchange membranes for acid recovery via diffusion dialysis

Authors: Yong Chen, Shengxuan Fan, Chao Peng, Bingyue Song, Mengting Qin, Yi Wang, Yanjun Huang, Shefeng Li, Lei Zhang

Year: 2025

Novel EDTA-chitosan/alginate porous composite beads for the removal of Pb(II) and methylene blue from aqueous solutions

Authors: Xueling Liu, Wenjie Ren, Weilin Song, Wanqiang Zhang, Yuhan Wang, Yi Wang, Guozhi Fan, Lei Zhang, Yanjun Huang

Year: 2025

Preparation of anisotropic polyimide aerogels for thermal protection with outstanding flexible resilience using the freeze-drying method

Authors: Bing Xu, Hongtan Liang, Jie Hu, Jing Shu, Lei Zhang, Guozhi Fan, Zhipeng Zhang, Zhen Wang, Dehua Pan

Year: 2024

An Evaluation of the Corrosion Inhibition Performance of Chitosan Modified by Quaternary Ammonium Salt for Carbon Steel in Stone Processing Wastewater

Authors: Jingjing Xiang, Chaofan Mo, Chao Peng, Lin Yang, Tingtao Wan, Yuntian Song, Xuanhui Lei, Pu Liu, Bo Gao, Dajun Ren

Year: 2024

A High-Performance Mn/TiO2 Catalyst with a High Solid Content for Selective Catalytic Reduction of NO at Low-Temperatures

Authors: Lei Yang, Zhen Wang, Bing Xu, Jie Hu, Dehua Pan, Guozhi Fan, Lei Zhang, Ziyang Zhou

Year: 2024

Mn–Co–Ce/biochar based particles electrodes for removal of COD from coking wastewater by 3D/HEFL system: Characteristics, optimization, and mechanism

Authors: Qiaoyun Zhu, Xueling Liu, Xiaorong Xu, Xiaoyu Dong, Jingjing Xiang, Benquan Fu, Yanjun Huang, Yi Wang, Guozhi Fan, Lei Zhang

Year: 2024

Preparation of magnetic DTPA-modified chitosan composite microspheres for enhanced adsorption of Pb(II) from aqueous solution

Authors: Xueling Liu, Yajing Wang, Xiaofen Wu, Yi Wang, Guozhi Fan, Yanjun Huang, Lei Zhang

Year: 2024

Study on the corrosion inhibition performance of composite inhibitor on carbon steel in stone processing wastewater

Authors: Jingjing Xiang, Zhen Lu, Qiaoyun Zhu, Likun Li, Yanjun Huang, Yi Wang, Guangsen Song, Lei Zhang

Year: 2024

Dy-Modified Mn/TiO2 Catalyst Used for the Selective Catalytic Reduction of NO in Ammonia at Low Temperatures

Authors: Bing Xu, Zhen Wang, Jie Hu, Lei Zhang, Zhipeng Zhang, Hongtan Liang, Yong Zhang, Guozhi Fan

Year: 2024