Masoud Rashidinejad | Energy Sustainability | Best Researcher Award

Global Scientist Day Awards

Masoud Rashidinejad
Shahid Bahonar University of Kerman, Iran

Masoud Rashidinejad
Affiliation Shahid Bahonar University of Kerman
Country Iran
Scopus ID 18437999400
Documents 225
Citations 4,446
h-index 38
Subject Area Energy Sustainability
Event Global Scientist Day Awards
ORCID 0000-0002-3046-7088

Masoud Rashidinejad is an academic researcher affiliated with Shahid Bahonar University of Kerman, Iran, whose scholarly work has contributed to the advancement of energy sustainability and related engineering disciplines. His publication record, citation performance, and sustained research productivity demonstrate continued engagement with internationally indexed scientific literature. His contributions encompass theoretical developments, applied research, and collaborative scientific investigations that support sustainable technologies and energy-efficient systems.[1]

Abstract

This academic profile summarizes the scientific achievements of Masoud Rashidinejad in the field of Energy Sustainability.Through investigations addressing sustainable energy technologies, engineering innovation, and applied scientific research, his work contributes to expanding scientific understanding and supporting environmentally responsible technological development.[1]

Keywords

Energy Sustainability, Renewable Energy, Sustainable Engineering, Applied Energy Research, Scientific Publications, Scopus Author, Research Excellence, Environmental Engineering, Global Scientist Day Awards

Introduction

The growing importance of sustainable energy systems has encouraged interdisciplinary research integrating engineering, environmental science, and technological innovation. Researchers working within this domain contribute toward improving energy efficiency, renewable resource utilization, and environmentally conscious industrial processes. Masoud Rashidinejad has established a sustained scholarly presence through publications addressing these themes while participating in broader scientific collaborations that advance evidence-based engineering solutions.[2]

Research Profile

According to internationally indexed academic records, Masoud Rashidinejad has authored 225 scholarly documents, accumulated more than 4,400 citations, and achieved an h-index of 38. These bibliometric indicators demonstrate consistent research productivity together with sustained scholarly influence across energy sustainability and associated engineering disciplines.[1]

Research Contributions

The research activities of Masoud Rashidinejad encompass sustainable energy systems, engineering methodologies, and applied scientific investigations intended to improve technological performance and environmental responsibility. His publications illustrate continued participation in collaborative research initiatives while supporting knowledge dissemination through peer-reviewed scientific literature.[2]

Publications

The author’s publication portfolio includes journal articles, conference contributions, and collaborative research papers indexed within major scientific databases. These publications collectively contribute to the expanding body of literature concerning sustainable energy systems, engineering innovation, and environmental technologies.[1]

Research Impact

Citation metrics indicate that the published work of Masoud Rashidinejad has been referenced by researchers across multiple scientific disciplines. Such citation activity reflects scholarly engagement and demonstrates that his research contributes to ongoing academic discussions concerning sustainable engineering and energy technologies.[1]

Award Suitability

The academic record presented through internationally recognized bibliometric indicators, together with a sustained publication history and meaningful citation performance, supports consideration of Masoud Rashidinejad for recognition within the Global Scientist Day Awards. His documented scholarly productivity, institutional affiliation, and continuing contributions to Energy Sustainability align with the objectives of honoring researchers who advance scientific knowledge through sustained academic excellence.[1]

Conclusion

Masoud Rashidinejad represents an active contributor to research in Energy Sustainability through an established record of scholarly publications, measurable citation impact, and continued participation in scientific research. His academic achievements illustrate sustained engagement with internationally recognized research activities and reflect contributions that support scientific progress in sustainable engineering and energy-related disciplines.[2]

References

  1. Elsevier (2026). Scopus author details: Masoud Rashidinejad, Author ID 18437999400. Scopus.
    https://www.scopus.com/pages/authors/18437999400
  2. Optimal Joint Energy and Flexibility Market Clearing Considering Uncertain Renewable Resources Using Information Gap Decision Theory.
    https://www.scilit.com/publications/8b403497588cb2b34f8c23d87f43992b
  3. Global Scientist Day Awards (2026). Official Awards Website.
    https://scientistday.org/

Daehee Choi | Environmental engineering | Research Excellence Award

Global Scientist Day Awards

Daehee Choi – Yeungnam University

Daehee Choi

Affiliation Yeungnam University
Country South Korea
Scopus ID 56729661000
Documents 33
Citations 456
h-index 13
Subject Area Environmental Engineering
Event Global Scientist Day Awards
ORCID 0000-0003-2440-7078

The Global Scientist Day Awards recognizes researchers whose scholarly contributions have demonstrated sustained impact within their respective scientific disciplines. Daehee Choi of Yeungnam University has established a research profile in environmental engineering through peer-reviewed publications, scholarly collaboration, and measurable citation performance. The available bibliometric indicators illustrate an active research career characterized by interdisciplinary engagement and continued academic productivity.[1] The profile summarized on this page follows a neutral academic style intended for professional recognition and reference.

Abstract

Daehee Choi has developed a research portfolio focused on environmental engineering, emphasizing environmentally sustainable technologies, engineering solutions, and scientific innovation. Through thirty-three indexed publications and a growing citation record, the researcher has contributed to knowledge dissemination within the environmental sciences community.[1]

Keywords

Environmental Engineering, Sustainability, Water Treatment, Environmental Technology, Resource Management, Pollution Control, Scientific Research, Global Scientist Day Awards, Scopus Publications, Research Excellence.

Introduction

Environmental engineering continues to play an essential role in addressing contemporary global challenges related to environmental protection, resource conservation, and sustainable development. Researchers working in this discipline contribute scientific evidence that informs engineering practice, environmental policy, and technological innovation.[2]

Research Profile

Affiliated with Yeungnam University in South Korea, Daehee Choi has established an academic profile supported by indexed publications and measurable citation performance. The available Scopus metrics report thirty-three indexed documents, four hundred fifty-six citations, and an h-index of thirteen, indicating sustained scholarly engagement across environmental engineering research themes.[1]

Research Contributions

The research contributions of Daehee Choi encompass environmental engineering methodologies that support sustainable environmental management and technological advancement. Published studies contribute to the broader scientific understanding of engineering-based environmental solutions while encouraging interdisciplinary collaboration.[3]

Publications

The publication record demonstrates continued engagement with peer-reviewed scientific communication. Indexed research outputs contribute to environmental engineering literature through original investigations, collaborative studies, and interdisciplinary research. Representative publications are catalogued through internationally recognized indexing services and include works carrying Digital Object Identifiers (DOIs), facilitating long-term scholarly accessibility.[3]

Research Impact

Research impact may be evaluated using a combination of publication output, citation frequency, collaborative activity, and bibliometric indicators. The current citation profile reflects continuing academic visibility within environmental engineering literature. Such indicators provide quantitative evidence that complements qualitative assessment of scientific significance, originality, and practical relevance.[1]

Award Suitability

Based on the available scholarly information, Daehee Choi demonstrates characteristics commonly considered during academic recognition processes, including sustained publication activity, measurable citation impact, institutional affiliation with a recognized university, and continuing contributions to environmental engineering research.[1]

Conclusion

Daehee Choi has developed a credible academic profile supported by peer-reviewed publications, international indexing, and measurable research influence. The combination of publication productivity, citation performance, and continued engagement within environmental engineering illustrates an active contribution to scientific advancement.[2]

References

  1. Elsevier (2026.). Scopus author details: Daehee Choi, Author ID 56729661000. Scopus.
    https://www.scopus.com/pages/authors/56729661000
  2. ORCID (2026). Daehee Choi ORCID Record.
    https://orcid.org/0000-0003-2440-7078
  3. Sustainable valorization of post-consumer bone waste into calcium-rich bone char via HCl-induced partial phase transformation for enhanced fluoride removal.
    https://www.sciencedirect.com/science/article/abs/pii/S2213343726033129

Khuplianlam Tungnung | Energy Sustainability | Best Research Article Award

Global Scientist Day Awards

Khuplianlam Tungnung
School of Planning and Architecture Vijayawada
Khuplianlam Tungnung
Affiliation School of Planning and Architecture Vijayawada
Country India
Scopus ID 57211003892
Documents 9
Citations 34
h-index 4
Subject Area Energy Sustainability
Event Global Scientist Day Awards
ORCID 0000-0002-2140-5897

The Global Scientist Day Awards recognize researchers whose scholarly activities contribute to scientific advancement, interdisciplinary collaboration, and sustainable development. Khuplianlam Tungnung, affiliated with the School of Planning and Architecture Vijayawada, has developed an academic profile focused on Energy Sustainability through peer-reviewed publications and scholarly engagement. Bibliometric indicators, including publication output, citation impact, and author identifiers, provide measurable evidence of academic activity and research visibility within the international scholarly community.[1][2]

Abstract

Khuplianlam Tungnung has established an academic record in Energy Sustainability with research disseminated through indexed scholarly publications. The available bibliometric indicators demonstrate steady scholarly productivity supported by citations and international indexing.These characteristics align with the scholarly evaluation principles commonly applied in academic recognition programs.[1][2]

Keywords

Energy Sustainability, Sustainable Development, Urban Planning, Environmental Planning, Renewable Energy, Green Infrastructure, Climate Resilience, Research Impact, Scientific Publications, Global Scientist Day Awards.

Introduction

Energy sustainability has become a central research priority owing to global concerns regarding climate change, efficient resource utilization, and environmentally responsible development. Academic contributions within this field frequently integrate engineering, architecture, planning, environmental science, and policy research to develop practical and evidence-based solutions.[4]

Research Profile

Khuplianlam Tungnung is affiliated with the School of Planning and Architecture Vijayawada, India.These metrics indicate measurable academic engagement and provide quantitative indicators commonly used for evaluating scholarly influence across international databases.[1][2]

Publications

The available indexed publication record reflects continued participation in peer-reviewed scholarly communication. Research outputs contribute to the literature concerning sustainable planning and energy-related studies. Publications indexed by international databases improve accessibility, discoverability, and long-term scholarly visibility.[1]

Research Impact

Citation metrics, publication indexing, and researcher identifiers collectively indicate academic visibility and measurable research influence. Although bibliometric indicators represent only one dimension of scholarly assessment, they provide useful evidence regarding dissemination and recognition within the scientific community. [1][2]

Award Suitability

Based on the available scholarly information, Khuplianlam Tungnung demonstrates characteristics generally associated with academic recognition, including indexed publications, measurable citation performance, interdisciplinary engagement, and sustained contributions to Energy Sustainability research.[5]

Conclusion

Khuplianlam Tungnung has established a documented academic profile supported by internationally recognized researcher identifiers, peer-reviewed publications, citation records, and sustained contributions to Energy Sustainability. The available scholarly evidence reflects continued participation in research activities relevant to sustainable development and scientific advancement.[1][5]

References

  1. Elsevier (2026.). Scopus author details: Khuplianlam Tungnung, Author ID 57211003892. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57211003892
  2. Google Scholar (2026.). Author Profile: Khuplianlam Tungnung.
    https://scholar.google.co.in/citations?user=UmQ9q3UAAAAJ
  3. ORCID (2026.). ORCID Record: 0000-0002-2140-5897.
    https://orcid.org/0000-0002-2140-5897
  4. Parametric passive design strategy towards sustainable net-zero energy buildings in hot-dry climate zones of India.
    https://www.sciencedirect.com/science/article/abs/pii/S0038092X25002786
  5. Global Scientist Day Awards (2026.). Official Award Website.
    https://scientistday.org/

Md Shible Noman | Energy Sustainability | Best Researcher Award

Global Scientist Day Awards

Md Shible Noman
Affiliation Pabna University of Science and Technology
Country Bangladesh
Google Scholar ID 3oyZHncAAAAJ
Documents 6
Citations 19
h-index 3
Subject Area Energy Sustainability
Event Global Scientist Day Awards

Md Shible Noman

Pabna University of Science and Technology, Bangladesh

Md Shible Noman is a researcher associated with the Pabna University of Science and Technology, Bangladesh, whose academic interests focus on energy sustainability and related interdisciplinary research areas. His scholarly work contributes to understanding sustainable energy systems, environmental efficiency, and innovative technological solutions that support global sustainable development objectives. Through peer-reviewed publications and measurable citation impact, his research reflects continued engagement with emerging scientific challenges while emphasizing evidence-based methodologies and practical applications.[1]

Abstract

This article presents an academic overview of Md Shible Noman, highlighting his research activities, scholarly productivity, and contributions within the field of energy sustainability.The information is intended to provide an objective assessment suitable for academic recognition and professional reference while maintaining a neutral encyclopedic style.[1]

Keywords

Energy Sustainability, Renewable Energy, Sustainable Development, Environmental Engineering, Green Technology, Research Impact, Academic Recognition, Bangladesh Research, Scientific Publications, Global Scientist Day Awards.

Introduction

Energy sustainability has become one of the defining scientific priorities of the twenty-first century due to increasing environmental challenges and the need for efficient energy systems. Researchers working within this field contribute toward developing technologies and analytical frameworks that improve energy efficiency while reducing environmental impacts.[2]

Research Profile

Based at the Pabna University of Science and Technology, Md Shible Noman has established a developing academic profile supported by peer-reviewed publications indexed through Google Scholar. His current scholarly metrics include six publications, nineteen citations, and an h-index of three. These indicators demonstrate growing academic visibility and continued engagement in scientific research.[1]

Research Contributions

The research contributions of Md Shible Noman focus on advancing knowledge related to sustainable energy systems and environmentally responsible technological development. His work contributes to scientific discussions concerning renewable energy utilization, resource optimization, and sustainability-oriented engineering practices.[2]

Publications

The available publication record demonstrates scholarly engagement through peer-reviewed academic articles indexed within Google Scholar. These publications collectively contribute to the understanding of sustainable energy systems and environmental research while supporting future interdisciplinary investigations.[1]

Research Impact

Academic impact may be evaluated using publication output, citation performance, and research visibility. With an established Google Scholar profile, measurable citation activity, and an h-index reflecting scholarly influence, Md Shible Noman demonstrates continued participation in the international research community. Continued publication and collaboration are expected to strengthen future scientific impact.[1]

Award Suitability

Based on publicly available academic information, Md Shible Noman demonstrates characteristics associated with scholarly excellence, including active research engagement, peer-reviewed publications, measurable citation performance, and contributions within the field of energy sustainability.[1]

Conclusion

Md Shible Noman represents an emerging researcher contributing to the advancement of energy sustainability through scholarly investigation and scientific publication. His developing research profile, supported by peer-reviewed work and measurable academic metrics, reflects continued dedication to evidence-based research and knowledge dissemination.[1]

References

  1. Google Scholar (2026). Md Shible Noman — Google Scholar Author Profile.
    https://scholar.google.com/citations?hl=en&user=3oyZHncAAAAJ
  2. Technoeconomic Assessment of a Hydrogen-Integrated Hybrid Microgrid for Island Electrification in Developing Countries.
    https://doi.org/10.1155/ijph/5549395
  3. Global Scientist Day Awards (2026). Official Award Website.
    https://scientistday

Nasma Bouchelkia | Environmental Science | Research Excellence Award

Dr. Nasma Bouchelkia | Environmental Science | Research Excellence Award

Centre De Recherche En Technologies Agro-Alimentaires | Algeria

Dr. Nasma Bouchelkia is a PhD holder in Process Engineering specializing in chemical and environmental engineering. Her research focuses on sustainable wastewater treatment using low-cost, eco-friendly adsorbents derived from agri-food and industrial by-products. She integrates advanced techniques such as adsorption, surface chemistry, kinetic modeling, and machine learning optimization to enhance pollutant removal, including dyes, heavy metals, and pharmaceuticals. Her work also explores material characterization, advanced oxidation processes, and circular economy approaches. With strong academic and industrial experience, she contributes to innovative solutions for water purification, environmental protection, and sustainable material development.

Citation Metrics (Scopus)

  300
  200
  100
    50
      0

Citations
220

Documents
9

h-index
7

Citations

Documents

h-index


View Scopus Profile View Orcid Profile View Google Scholar Profile

Featured Publications

Sana Kordoghli | Energy Sustainability | Research Excellence Award

Prof. Sana Kordoghli | Energy Sustainability | Research Excellence Award

University of Carthage-Tunisia | Tunisia

Dr. Sana Kordoghli is an Associate Professor in energy engineering with strong expertise in sustainable energy systems, smart grids, and environmental valorization. She has authored 20 scientific documents, receiving 281 citations across 233 documents, with an h-index of 10. In preview mode, the “View h-index” button is disabled. She founded a Master’s program in Management and Digitalisation of Energy at the University of Carthage and actively contributes to international research projects on hydrogen production, waste-to-energy, and circular economy solutions. She supervises doctoral research and supports innovation and entrepreneurship through academic initiatives.

Citation Metrics (Scopus)

400
300
200
100
0

Citations
281

Documents
20

h-index
10

Citations

Documents

h-index


View Scopus Profile
View Google Scholar Profile

Featured Publications

Ahmed Albojamal | Energy Sustainability | Research Excellence Award

Dr. Ahmed Albojamal | Energy Sustainability | Research Excellence Award

San Diego City College | United States

Dr. Ahmed Albojamal is a mechanical engineer specializing in thermal transport, nanofluids, electronic cooling, and phase change materials. His research focuses on heat transfer enhancement in porous media and metal foams, nanofluid flow modeling, and energy storage systems. He has contributed extensively to understanding particle deposition, natural and forced convection, and thermal management in complex geometries, integrating numerical simulations with experimental analysis. His work advances energy-efficient HVAC systems, thermal management of electronic devices, and sustainable building technologies. With multiple peer-reviewed publications and expertise in both theoretical and applied thermal sciences, he bridges engineering fundamentals with practical energy solutions.

Citation Metrics (Scopus)

  450
  300
   150
    50
       0

Citations
323

Documents
7

h-index
6

Citations

Documents

h-index


View Scopus Profile    View Orcid Profile View Google Scholar Profile

Featured Publications

Xinping Duan | Green Chemistry | Research Excellence Award

Prof. Xinping Duan | Green Chemistry | Research Excellence Award

Prof. Xinping Duan | Xiamen University | China

Prof. Xinping Duan of Xiamen University, China, is an internationally recognized researcher in catalysis, materials chemistry, and sustainable chemical transformations. With a distinguished academic career spanning nearly two decades, he has established himself as a leading figure in the fields of heterogeneous catalysis, CO₂ conversion, selective hydrogenation, photocatalysis, and advanced nanomaterials. His research contributions have significantly advanced the understanding of catalytic mechanisms, metal–support interactions, and rational catalyst design for energy-efficient and environmentally friendly chemical processes. Prof. Duan’s scientific impact is reflected in his outstanding publication metrics: over 72 papers, an H-index of 33, and more than 3,318 citations. His work consistently appears in top-tier journals, including Science, Nature Communications, Science Advances, ACS Catalysis, Chemical Engineering Journal, Journal of Catalysis, and Chemical Science. Several of his landmark papers—such as those on copper–silica nanocatalysts, selective CO₂ hydrogenation, and novel metal oxide interfaces—have received exceptional citation counts and have influenced both academic research and industrial catalyst development. A hallmark of Prof. Duan’s research is his ability to integrate advanced nanostructures, metal phosphides, metal carbides, and polyoxometalates to achieve high catalytic selectivity and stability. His studies on hydrogenolysis, hydrogenation, and biomass-derived oxygenate conversion have contributed to the development of greener pathways for producing fuels, fine chemicals, and value-added intermediates. He has also explored cutting-edge topics such as oxygen vacancy engineering, interfacial electron localization, spillover effects, and ambient-pressure catalytic processes. Through his rigorous research approach and sustained scientific productivity, Prof. Xinping Duan has earned a strong reputation as a catalyst innovation leader in China and abroad. His work continues to shape modern heterogeneous catalysis, clean energy conversion, and sustainable chemical engineering, positioning him as a prominent contributor to global scientific advancement.

Profile: Scopus | Orcid

Featured Publications

Lin, H., Liang, X., Wen, Z., Jiao, W., Wang, R., Lian, Y., & Duan, X. (2025). The superiority of W⁶⁺ overturns the CO₂ hydrogenation selectivity of iridium. Chemical Communications. https://doi.org/10.1039/D5CC02796A

Cheng, T., Liu, Y., Miao, F., Duan, X., & Liu, Y., & Jiao, W. (2025, July). Catalytic ozonation degradation of sulfamethoxazole by high gravity coupled monolithic catalyst Ce–Co/CH: Efficacy, mechanism, pathways and toxicity. Chemical Engineering Journal. https://doi.org/10.1016/j.cej.2025.163553

Duan, X., Zhao, Y., Chou, H.-L., Zuo, J., Wang, R., Jiao, W., Fang, H., Zheng, Y., Lin, H., Ye, L., et al. (2025, March 7). Reversible spillover wakens reactivity of dormant modular hydrochlorination catalysts. ACS Catalysis. https://doi.org/10.1021/acscatal.4c06661

Duan, X., Zuo, P., Li, N., Lu, J., Zhang, J., Wen, Z., Fang, H., Jiao, W., Wang, R., & Lin, H. (2024, October 22). Collective redox-shuttling properties of nanoalloys boost water electrolysis of nitrides [Preprint]. https://doi.org/10.21203/rs.3.rs-5236379/v1

Ji, X., Zhang, J., Li, N., Qiu, L., Zhang, G., Duan, X., & Wang, R. (2024, May 13). Accelerated “electron converter” characteristics of NiCo-LDH for a CdS-carbide photocatalytic system with a dual heterointerface. ACS Sustainable Chemistry & Engineering. https://doi.org/10.1021/acssuschemeng.4c00778

Ji, X., Zhang, J., Zhang, G., Li, N., Wang, R., Lin, H., & Duan, X. (2024, April). Dual interfacing with metallic cobalt boosts the electron shuttle of CdS-carbide nanoassemblies. Journal of Colloid and Interface Science. https://doi.org/10.1016/j.jcis.2024.01.142

Getahun Ayele Tessema | Energy Sustainability | Best Researcher Award

Mr. Getahun Ayele Tessema | Energy Sustainability | Best Researcher Award

Mr. Getahun Ayele Tessema | Indian Institute of Technology Roorkee (IITR) | India

Getahun Ayele Tessema is an emerging researcher and PhD Candidate at the Indian Institute of Technology Roorkee (IITR), specializing in energy efficiency and sustainable built environments. He holds a B.Tech and Master’s degree with distinction and previously served as a Lecturer at Adama Science and Technology University, where he earned the Best Teacher Award for his academic excellence. Currently supported by the prestigious ICCR Africa PhD Scholarship from the Government of India, he continues to advance impactful research in the Built Environment Lab at IIT Roorkee. His academic and professional journey reflects consistent excellence, with active engagement in research, teaching, and community-oriented scientific contributions. He has completed or is working on five research projects, published two journal papers, and maintains a growing citation record accessible through Google Scholar. His collaborative work spans international and institutional partnerships, and he holds memberships in two professional organizations aligned with his research areas. Getahun’s research focuses on energy-efficient buildings, energy modelling, energy-use behaviour, and energy analysis. His contributions offer significant insights into the determinants of household energy-saving behaviour in Ethiopian urban settings. By integrating personal norms with the Theory of Planned Behaviour, he has developed a comprehensive framework that helps understand and influence energy-conscious behaviour. This work supports the development of national energy conservation strategies and provides a scientific basis for formulating building energy codes—an urgent need for sustainable urban growth in Ethiopia. His findings aim to guide policymakers, enhance occupant awareness, and contribute to cleaner energy access through practical, community-responsive solutions. Through his multidisciplinary research, academic leadership, and commitment to sustainable development, Getahun exemplifies innovation, scholarly excellence, and societal impact. His work aligns strongly with the vision of promoting energy-efficient built environments and positions him as a strong candidate for the Best Researcher Award.

Profile: Google Scholar

Featured Publications

Tessema, G. A., Chani, P. S., & Rajasekar, E. (2025). Analysis of residential electricity consumption in Ethiopian condominiums: Leveraging cluster analysis for targeted electrification interventions. In 2025 IEEE 13th International Conference on Smart Energy Grid Engineering (SEGE). IEEE.

Tessema, G. A., Chani, P. S., & Rajasekar, E. (2025). Modelling energy-saving behaviour in Ethiopian urban households: Integrating personal norms and demographic moderators to the theory of planned behaviour. Energy and Buildings, , 116709.

Yuxuan Zhu | Chemical Engineering | Best Researcher Award

Mr. Yuxuan Zhu | Chemical Engineering | Best Researcher Award

Mr. Yuxuan Zhu | The Institute of Seawater Desalination and Multipurpose Utilization | China

Zhu Yuxuan is a dedicated early-career researcher specializing in electrocatalytic membrane water treatment, nano-carbon membrane engineering, and advanced materials for environmental purification. Currently a PhD candidate in Materials Chemistry at Tiangong University, a Double First-Class institution, she has built strong interdisciplinary expertise through studies spanning electrocatalysis, membrane science, wastewater treatment, and chemical engineering principles. She previously earned her master’s and bachelor’s degrees in Materials Science and Engineering from Shandong Jianzhu University, where she developed foundational skills in materials characterization, nanomaterials, and electrochemical functional materials. Zhu has made significant scholarly contributions with 9 research publications, achieving measurable academic impact with 38 citations from 26 citing documents and an h-index of 4. Many of her works are published as first author in high-ranking JCR Q1 TOP journals such as Chemical Engineering Journal, Separation and Purification Technology, and Journal of Environmental Chemical Engineering. Her research focuses on developing nano-conductive carbon membranes, transition-metal-sulfide composite electrodes, and electrocatalytically enhanced membrane separation systems for industrial wastewater treatment. She has also contributed to major national scientific initiatives, including the National Key R&D Program and the Jiangxi Provincial Key R&D Program, where she played central roles in method development, team coordination, and project reporting. Her innovation capacity is reflected in five authorized patents, spanning porous carbon composite materials, electrode technologies, and laboratory device designs. She has earned multiple honors, including the Excellent Report Award at the Beijing-Tianjin-Hebei Membrane Forum, university scholarships, and several provincial awards in innovation competitions. Technically, Zhu is proficient in SEM, Raman, IR, LC-MS, UV-Vis, electrochemistry, molecular dynamics, and MS simulation. As a student leader—serving as Chairman of the Student Union—she has demonstrated strong organizational and communication skills.

Profile: Orcid | Scopus

Featured Publications

Zhu, Y., Wu, Y., Zhao, H., Wang, H., Lei, H., & Zhong, Y. (2026). Mediation of superoxide radicals enhances the efficient degradation of dimethylacetamide in continuous flow-through three-dimensional electrochemical membrane reactor. Separation and Purification Technology, 506, 135619. https://doi.org/10.1016/j.seppur.2025.135619

Wang, Y., Chen, Z., Zhu, Y., Wang, H., Cui, Z., Li, X., Mo, J., & Li, J. (2025). An ultrathin Al2O3 ceramic membrane prepared by organic-inorganic blending with solvent evaporation and high-temperature sintering for highly efficient oil/water separation. Journal of Water Process Engineering, 107116. https://doi.org/10.1016/j.jwpe.2025.107116

Wang, Y., Zhu, Y., Wang, H., Chen, Z., He, B., & Li, J. (2025). Conductive carbon/Al2O3 mixed-matrix membrane cathode for efficient electrocatalytic production of H2O2. Separation and Purification Technology, 134120. https://doi.org/10.1016/j.seppur.2025.134120

Zhu, Y., Chen, Z., Wang, H., Ma, A., & Li, J. (2025). Continuous flow-through electro-Fenton membrane reactor with Fe−N4-doped carbon membrane as cathode for efficient removal of dimethylacetamide. Separation and Purification Technology, 354, 129290. https://doi.org/10.1016/j.seppur.2024.129290

Chen, Z., Wang, H., Zhu, Y., Chen, X., Gui, S., Ma, A., & Li, J. (2025). Electrochemical reactor with carbon membrane electrodes for efficient phenol removal via anode and cathode synergism. npj Clean Water, 8, Article 43. https://doi.org/10.1038/s41545-024-00432-4

Zhu, Y., Feng, Y., Wang, H., & Li, J. (2025). Fabrication of nitrogen-doped conductive carbon membranes both as anode for degradation of phenol and as cathode for electro-synthesis of hydrogen peroxide in flow-through electrochemical membrane reactor. Separation and Purification Technology, 359, 130586. https://doi.org/10.1016/j.seppur.2024.130586