Yanhe Han | Environmental Chemistry | Editorial Board Member

Prof. Yanhe Han | Environmental Chemistry | Editorial Board Member

Dean | Beijing Institute of Petrochemical Technology | China

Han Yanhe is a highly cited researcher known for influential contributions in environmental engineering, catalytic materials development, advanced oxidation processes, and innovative wastewater treatment technologies. With a substantial record of 68 peer-reviewed publications, over 1,602 citations, and an h-index of 20, Han has established a strong global research presence characterized by consistent scientific impact and extensive multidisciplinary engagement. His work spans the design of integrated nitrogen and sulfur removal systems, including synergistic approaches combining sulfate reduction, sulfur-autotrophic denitrification, and micro-electrolytic pathways to achieve efficient treatment of complex and sulfate-rich wastewaters. Han has advanced understanding of the mechanistic interplay between sulfur-based electron donors and iron–carbon micro-electrolysis, contributing engineering strategies that enhance pollutant degradation and support scalable, sustainable water-treatment solutions. In the field of catalysis, he has contributed to the development of high-performance materials such as CeO₂/GO-co-doped MoS₂ composites, improving electrocatalytic hydrogen evolution and offering practical, cost-effective alternatives to noble-metal-based systems. His research portfolio further encompasses low-temperature plasma-driven oxidation for the mitigation of pharmaceutical and personal-care contaminants, environmental impact assessments of analytical detection methods, and intensified micro-electrolysis techniques tailored for highly toxic industrial waste streams. With collaborations spanning over 140 co-authors, Han has demonstrated a strong commitment to interdisciplinary research and scientific integration across chemistry, materials science, and environmental systems engineering. Many of his publications continue to accumulate significant citations, underscoring the relevance and applicability of his findings to both academic research and industrial practice. Through a combination of mechanistic insight, engineering innovation, and sustainability-focused design, Han Yanhe’s body of work contributes substantially to global efforts aimed at advancing clean-water technologies, enhancing catalytic efficiency, reducing environmental burdens, and supporting sustainable chemical engineering practices.

Profiles : Scopus

Featured Pulications
  1. Han, Y., Xu, H., Zhang, L., Ma, X., Man, Y., Su, Z., & Wang, J. (2023). An internal circulation iron–carbon micro-electrolysis reactor for aniline wastewater treatment: Parameter optimization, degradation pathways and mechanism. Chinese Journal of Chemical Engineering, 63(11), 96–107.

  2. Han, Y., Zhang, S., Zhang, X., Wu, C., & An, R. (2020). Optimization of the conditions for degradation of hydrolyzed polyacrylamide using electro-coagulation. Desalination and Water Treatment, 179, 148–159.

  3. Han, Y., Zhang, S., Xiaofei, Z., & Chen, J. (2020). Electrochemical oxidation of Hydrolyzed Polyacrylamide (HPAM) at Ti/SnO₂-Sb₂O₃/β-PbO₂ anode: Degradation kinetics and mechanisms. International Journal of Electrochemical Science, 15(4), 3382–3399.

  4. Han, Y., Wang, H., Wei, M., … Ma, X. (2025). Advanced low-temperature plasma-driven oxidation for mitigating pharmaceutical and personal care products in wastewater: Mechanisms, influencing factors, and reactor configurations.

    Prof. Yanhe Han advances sustainable environmental engineering through innovative electrochemical and micro-electrolysis technologies for efficient pollutant removal. His work delivers practical solutions for industry while contributing to global efforts toward cleaner water systems and a healthier environment.

Keke Zhi | Water environment restoration | Best Researcher Award

Dr. Keke Zhi | Water environment restoration | Best Researcher Award

China University of Petroleum-Beijing at Karamay , China.

Dr. Keke Zhi 🎓 is an Associate Professor and Master’s supervisor at China University of Petroleum (Beijing), Karamay Campus. Recognized as a Young Top Talent under Xinjiang’s “Tianshan Talents” program 🌟, his work spans catalytic chemistry, imprinted materials, and environmental remediation 🌍. With a Ph.D. from the University of Chinese Academy of Sciences 🎓 and numerous high-impact publications 📚, Dr. Zhi focuses on designing innovative solutions for wastewater treatment, CO₂ reduction, and lithium extraction ⚗️. His passion for applied chemistry drives his mission to convert biomass into high-value products 🌿, supporting sustainability and technological advancement ♻️.

PROFILE 

SCOPUS

ORCID 

 

🔍 Summary of Suitability:

Dr. Keke Zhi is a well-established researcher whose work spans environmental chemistry, catalysis, and functional materials. As an Associate Professor and a recipient of the prestigious “Tianshan Talents – Young Top Talents” award, he has demonstrated both research excellence and leadership. His research programs are nationally and regionally funded, highlighting recognition from major scientific institutions. Dr. Zhi’s prolific publication record in high-impact journals and his interdisciplinary work in wastewater treatment, CO₂ reduction, and lithium extraction position him as a leading innovator in applied chemical research.

📘 Education & Experience

  • 🏫 B.S. (2009–2013) – Ludong University

  • 🎓 Ph.D. (2013–2018) – University of Chinese Academy of Sciences

  • 👨‍🏫 Associate Professor – China University of Petroleum (Beijing), Karamay Campus

  • 🎯 Master Tutor – Mentoring graduate-level students

  • 🌟 Young Top Talent – Xinjiang Uygur Autonomous Region “Tianshan Talents” Program

Professional Development 🚀📖

Dr. Zhi has actively pursued diverse research programs funded by national and regional agencies 📈. His development includes leading NSFC projects on MOF-based catalysts for pollutant degradation 🔬 and contributing to lithium extraction technology from salt lake brines 🧪. His multidisciplinary collaboration is reflected in co-authored papers across journals like Chemical Engineering Journal and Nanomaterials 📄. Through ongoing research and mentorship 👨‍🏫, Dr. Zhi fosters a vibrant academic environment, continually expanding his expertise in environmental and catalytic chemistry 🌐. He also supports innovation by transforming biomass into functional materials 🌾 and exploring new frontiers in ion-imprinting technology.

Research Focus 🔍🤖

Dr. Zhi’s research centers on functional material synthesis for environmental and catalytic applications ⚗️. He specializes in surface and ion-imprinted materials for targeted extraction and degradation processes 🎯. His work on MOFs and graphene composites enables efficient degradation of pharmaceuticals and pollutants in wastewater 🌊. Additionally, he explores the conversion of biomass into high-value chemicals 🌿 and advances lithium extraction methods vital for clean energy storage 🔋. Bridging chemistry and sustainability, Dr. Zhi’s research supports eco-friendly solutions to modern industrial challenges ♻️, with significant emphasis on green catalysis and selective adsorption technologies 🌱.

Awards and Honors 🏆🎖️

  • 🌟 “Tianshan Talents” Young Top Talent – Xinjiang Uygur Autonomous Region

  • 🧪 Multiple Funded Research Projects – National Natural Science Foundation of China (NSFC) & regional foundations

  • 📈 First Author & Corresponding Author – Published in high-impact journals (Chemical Engineering Journal, Polymers, Nanomaterials, etc.)

  • 📚 Recognized Scholar – For contributions to catalytic and environmental chemistry

Publications & Citations 📚

  • 📘 N-doped graphene loaded with Ru sites as PMS activators for SMX degradationChemical Engineering Journal, 2025 🔬

  • 🔧 Graphical Pinch Analysis for heat exchanger networks retrofit in residuum hydrogenationEnergy, 2024 📊

  • 💧 Progress of Ion Imprinting Technology in Lithium ExtractionPolymers, 2024 🧪

  • 🧼 Elimination of Organic Contaminants using Iron-Based MOFsNanomaterials, 2024 🧲

  • 🌱 Review on CO₂ Utilization and Emission Reduction from Chemical Engineering PerspectiveProcess Safety and Environmental Protection, 2023 🏭

  • 🌿 Selective Adsorption of Quercetin by Sol-Gel Surface Molecularly Imprinted PolymerPolymers, 2023 ⚗️

  • 🌊 Review of Activation Persulfate by Iron-Based Catalysts for Wastewater DegradationApplied Sciences, 2021 🚰

 

Conclusion

Dr. Keke Zhi exemplifies the qualities of a Best Researcher Award recipient through his cutting-edge scientific contributions, strong publication record, and sustained impact on environmental and catalytic chemistry. His ability to address global challenges like pollution, resource extraction, and sustainability through innovative material science makes him a standout candidate. His work not only advances science but also has practical, scalable applications that benefit society.