Ali Mohebbi | Chemical Engineering | Innovative Research Award

Global Scientist Day Awards

Ali Mohebbi
Affiliation Shahid Bahonar University of Kerman
Country Iran
Scopus ID 10839945400
Documents 130
Citations 3,375
h-index 31
Subject Area Chemical Engineering
Event Global Scientist Day Awards
ORCID 0000-0002-2303-7231

Ali Mohebbi is a researcher affiliated with Shahid Bahonar University of Kerman, Iran, whose scholarly work has contributed to the advancement of chemical engineering with particular emphasis on chemical precipitation, ion exchange, water treatment technologies, separation processes, and environmental applications. His publication record, citation profile, and sustained academic productivity demonstrate continuous engagement in scientific research and international collaboration.[1]

Abstract

This article summarizes the academic profile of Ali Mohebbi and outlines the significance of his research activities within the field of chemical engineering. His work has focused on separation technologies, chemical precipitation, ion exchange systems, wastewater treatment, adsorption, process optimization, and sustainable industrial applications. The available scholarly metrics indicate consistent publication activity and measurable scientific influence through citations and international dissemination of research findings.[1]

Keywords

Chemical precipitation, Ion exchange, Water treatment, Chemical engineering, Environmental technology, Separation processes.

Introduction

Modern chemical engineering increasingly emphasizes efficient resource utilization, environmental sustainability, and advanced separation technologies. Researchers working in chemical precipitation and ion exchange contribute significantly to industrial water purification, metal recovery, wastewater management, and environmental protection. Ali Mohebbi has participated in these scientific developments through publications addressing practical engineering challenges supported by experimental and analytical research methodologies.[2]

Research Profile

Ali Mohebbi’s Scopus author profile records more than one hundred scholarly documents together with several thousand citations and an h-index reflecting sustained research influence. His academic activities encompass chemical process engineering, adsorption technologies, ion exchange systems, desalination, membrane-assisted separation, industrial wastewater treatment, and related environmental engineering applications.[1]

Publications

The researcher has authored numerous peer-reviewed publications indexed in international scientific databases. Representative research themes include adsorption science, ion exchange, membrane technologies, process engineering, and industrial wastewater management. Several publications are associated with DOI registration, ensuring persistent scholarly identification.[3]

Research Impact

Citation indicators suggest that Ali Mohebbi’s work has been referenced by researchers across multiple scientific disciplines. His contributions support continued progress in sustainable engineering solutions, particularly in technologies related to water purification, resource recovery, and environmentally responsible industrial processes. Such impact reflects both the relevance and applicability of his research outputs within the broader scientific community.[1]

Award Suitability

Based on publicly available scholarly indicators, Ali Mohebbi demonstrates characteristics commonly considered during academic recognition processes, including a sustained publication record, measurable citation performance, interdisciplinary research activity, and contributions to chemical engineering. These accomplishments align with the objectives of the Global Scientist Day Awards, which recognize excellence in scientific research and international scholarly achievement.[4]

Conclusion

Ali Mohebbi has established an active academic profile through sustained research productivity, peer-reviewed publications, and recognized contributions to chemical engineering. His work in chemical precipitation, ion exchange, and environmental technologies contributes to ongoing scientific progress and illustrates the importance of applied engineering research in addressing industrial and environmental challenges. The documented scholarly record provides a strong basis for academic recognition within international research communities.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Ali Mohebbi, Author ID 10839945400. Scopus.
    https://www.sciencedirect.com/author/10839945400/ali-mohebbi
  2. Decoupling separation accuracy and flow partitioning in industrial hydrocyclones: CFD investigation of axial installation angle effect
    https://doi.org/10.1016/S1383-5866(03)00152-4
  3. A Green and Sustainable Solvent- Free Method for Synthesizing Wheat Starch Nanoparticles via Nanoprecipitation
    https://doi.org/10.1002/star.70179
  4. Global Scientist Day Awards. Official Award Website.
    https://scientistday.org/

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

Ehsan kianfar | Chemical Engineering | Editorial Board Member

Prof. Dr. Ehsan kianfar | Chemical Engineering | Editorial Board Member

Prof. Dr. Ehsan kianfar | Young Researchers and Elite Club | Iran

Dr. Ehsan Kianfar is a highly productive researcher in chemical engineering with extensive expertise in catalyst science, nanotechnology, zeolite modification, gas separation membranes, and advanced material synthesis. His research spans the development of high-performance catalysts for critical industrial processes such as methanol-to-gasoline (MTG), methanol-to-olefins (MTO), ethylene-to-propylene (ETP), and dimethyl ether (DME) synthesis. He has made significant contributions to the design, synthesis, and optimization of nano-zeolites, SAPO-based catalysts, and metal-modified ZSM-5 structures aimed at improving olefin production, selectivity, and reaction efficiency. He has authored numerous peer-reviewed research papers in reputable international journals, including Microchemical Journal, Catalysis Letters, Colloid and Polymer Science, Macromolecular Research, Journal of the Taiwan Institute of Chemical Engineers, Journal of Environmental Chemical Engineering, and Silicon. His work covers diverse areas such as polymeric and nanocomposite membranes for CO₂/N₂, O₂/N₂, and C₂H₆/CH₄ separations, CO₂ absorption using hollow fiber membrane contactors, CFD modeling of reactive flow systems, and the characterization of novel nanoparticle-based functional materials. Dr. Kianfar’s research contributions include a patented nanocomposite membrane developed using isophthalic acid and aluminum nitrate for enhanced gas separation and water treatment. He has also written multiple books and book chapters with respected international publishers, particularly on zeolite catalysts, methanol conversion processes, nanomaterials, gas hydrates, ionic liquids, and energy optimization methods. He serves as a reviewer for several high-impact international journals such as Applied Catalysis A, Topics in Catalysis, ACS Omega, Progress in Natural Science, Reviews in Inorganic Chemistry, and others. His broad academic output reflects strong capabilities in experimental design, catalyst characterization, membrane engineering, and nanomaterial innovation. Driven by a commitment to advancing sustainable catalytic technologies, Dr. Kianfar is actively seeking opportunities to further expand his research in catalysts, separation processes, and advanced nanoscale materials.

Profiles: Scopus | Orcid | Google Scholar

Featured Publications

Mahmoud, Z. H., AL-Salman, H. N. K., Hussein, U. A.-R., Hameed, S. M., Hussein, A. A., Abbas, J. M., Thajeel, S. K., Al Ghezy, W. D. K., & Kianfar, E. (2026). Recent advances in the applications of smart nanomaterials in biomedicine: A review. Nano LIFE. https://doi.org/10.1142/S1793984425300055

Jasim, A. A., Dhabab, J. M., Rheima, A. M., Zaidan, H. K., Al-Sharify, Z. T., Athair, D. M., & Kianfar, E. (2026). A review of hydrogel nanoparticles in drug delivery: Properties and applications. Nano LIFE. https://doi.org/10.1142/S1793984424300085

Al-Jamal, A. N., Hussein, U. A.-R., Aljbory, N., Mahmoud, Z. H., Mirani, A., Kianfar, E., & Maleknia, L. (2026). Electrospun ZnO and GSH co-loaded PU/CS nanofibrous films as potential antibacterial wound dressings. Nano LIFE. https://doi.org/10.1142/S1793984424500284

Joseph, T. M., Thomas, M. G., Mahapatra, D. K., Unni, A. B., Kianfar, E., Haponiuk, J. T., & Thomas, S. (2025). Adaptive and intelligent polyurethane shape-memory polymers enabling next-generation biomedical platforms. Case Studies in Chemical and Environmental Engineering, 101165. https://doi.org/10.1016/j.cscee.2025.101165

Abdelbasset, W. K., Jasim, S. A., Bokov, D. O., Oleneva, M. S., Islamov, A., Hammid, A. T., Mustafa, Y. F., Yasin, G., Alguno, A. C., & Kianfar, E. (2025). Retraction Note: Comparison and evaluation of the performance of graphene-based biosensors. Carbon Letters. https://doi.org/10.1007/s42823-024-00785-3

Adul-Rasool, A. A., Athair, D. M., Zaidan, H. K., Rheima, A. M., Al-Sharify, Z. T., Mohammed, S. H., & Kianfar, E. (2024). 0D, 1D, 2D, 3D nanostructures, types of bulk nanostructured materials, and drug nanocrystals: An overview. Cancer Treatment and Research Communications. https://doi.org/10.1016/j.ctarc.2024.100834

Hsu, C.-Y., Ajaj, Y., Mahmoud, Z. H., Ghadir, G. K., Alani, Z. K., Hussein, M. M., Abed Hussein, S., Karim, M. M., Al-khalidi, A., Abbas, J. K., … Kianfar, E. (2024). Adsorption of heavy metal ions using chitosan/graphene nanocomposites: A review study. Results in Chemistry, 101332. https://doi.org/10.1016/j.rechem.2024.101332

Libin Yang | Chemical Engineering | Best Researcher Award

Mr. Libin Yang | Chemical Engineering | Best Researcher Award

Mr. Libin Yang | Tianjin University of Technology | China

The Agricultural Technology Award honors individuals who are shaping the future of farming through innovative ideas and advanced research. It recognizes professionals who develop sustainable and smart agricultural systems that improve productivity and protect natural resources. The award encourages creativity, dedication, and real-world solutions that address food security and environmental challenges. Eligible candidates include researchers and professionals with strong academic or practical backgrounds in agricultural technology. Applicants are evaluated based on innovation, scientific contribution, and the impact of their work on farming communities. The selection process values originality, practical outcomes, and transformative potential in agricultural practices. Candidates are required to submit a biography, abstract, and supporting materials that demonstrate their research and achievements. The award promotes collaboration and knowledge sharing within the global agricultural community. It highlights advancements in precision farming, automation, and digital tools that enhance crop yield and efficiency. Recognition under this program strengthens leadership and inspires future agricultural innovators. The award fosters the use of technology in creating eco-friendly and resource-efficient farming systems. It serves as a platform for showcasing excellence in research and development in agriculture. Honorees become part of a growing network of experts driving innovation in food production. This initiative reflects a commitment to modernizing agriculture through science and technology. It ultimately supports global efforts toward a more sustainable, productive, and resilient agricultural future.

Profile: Orcid

Featured Publications

Guo, W., Bo, C., Li, W., Feng, Z., Cong, E., Yang, L., & Yang, L. (2022). Enhanced photocatalytic activity of nonuniformly nitrogen-doped Nb₂O₅ by prolonging the lifetime of photogenerated holes. Nanomaterials, 12(10), 1690. https://doi.org/10.3390/nano12101690