Edris Hoseinzadeh | Environmental Chemistry | Innovative Research Award

Innovative Research Award

Edris Hoseinzadeh,
Saveh University of Medical Sciences

Edris Hoseinzadeh
Affiliation Saveh University of Medical Sciences
Country Iran
Scopus ID 54782718600
Documents 64
Citations 1,734
h-index 19
Subject Area Drinking Water
Event International Chemical Scientist Awards

Edris Hoseinzadeh is a researcher whose published work includes environmental health, water quality, water and wastewater treatment, contaminant assessment, and related environmental applications. Bibliographic records identify him with Scopus Author ID 54782718600 and document research spanning drinking-water and environmental-health topics. [1]

Abstract

Edris Hoseinzadeh’s research record encompasses environmental health, drinking-water quality, water and wastewater treatment, contaminant removal, and environmental risk assessment. His documented publications include studies addressing waterborne hazards, adsorption, electrochemical treatment, groundwater quality, and water-related public-health questions. These areas provide a scholarly basis for recognition under an innovative research category. [1]

Keywords

Drinking water; water quality; wastewater treatment; environmental health; waterborne contaminants; adsorption; electrochemical treatment; groundwater; environmental monitoring; public health.

Introduction

Water-quality research connects environmental science, chemical treatment, and public health, particularly where contaminants threaten safe water supplies. Hoseinzadeh’s published work addresses these interconnected concerns through studies of water resources, treatment processes, contaminant removal, and environmental pathways. Such work contributes evidence relevant to drinking-water management and environmental-health protection. [2]

Research Profile

Hoseinzadeh’s research profile spans environmental health engineering and water-related environmental science. Indexed records identify publications involving drinking water, wastewater, groundwater, adsorption, electrochemical processes, microbial hazards, and environmental contamination. His work therefore reflects an interdisciplinary research direction linking chemical treatment technologies with environmental monitoring and health-oriented assessment of water resources. [1]

Research Contributions

His contributions include investigation of contaminant removal using adsorption and electrochemical approaches, evaluation of groundwater and rainwater quality, and assessment of biological and chemical hazards associated with water. Studies of waterborne pathogens and treatment processes further demonstrate an applied orientation toward improving understanding of environmental risks and practical water-management challenges. [3]

Publications

Representative publications include research on acid-dye removal using potato-peel biomass, rainwater-quality evaluation, waterborne protozoan parasites, groundwater quality, electrochemical water and wastewater treatment, and environmental routes of pathogen transmission. His publication record also includes recent work addressing water recovery and treatment processes, illustrating continuity between foundational water research and newer treatment applications. [3]

Research Impact

The available bibliographic record indicates measurable scholarly visibility, with Scopus-indexed publications receiving citations across environmental and water-related research areas. His studies have addressed practical subjects such as contaminant removal, water-quality characterization, and treatment processes, allowing findings to intersect with environmental engineering, public-health research, and sustainable management of water resources. [1] [3]

Award Suitability

The documented combination of water-quality research, treatment technologies, contaminant studies, and environmental-health investigations provides a relevant scholarly foundation for consideration for an Innovative Research Award. His work demonstrates application-oriented research across interconnected environmental problems, particularly those involving drinking water, wastewater, pollutants, and public-health protection. [1]

Conclusion

Edris Hoseinzadeh’s publication record reflects sustained engagement with environmental health and water-related research. His studies address water quality, contaminant removal, treatment technologies, and environmental risks, creating an interdisciplinary profile relevant to contemporary water challenges. These documented contributions provide a reasonable scholarly basis for recognition within an innovative research context. [1] [3]

References

  1. Elsevier. (n.d.). Scopus author details: Edris Hoseinzadeh, Author ID 54782718600. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=54782718600
  2. Godini, H., Hoseinzadeh, E., & Hossini, H. (2021). Water and wastewater as potential sources of SARS-CoV-2 transmission: A systematic review. Reviews on Environmental Health, 36(3), 309–317.

    DOI: 10.1515/reveh-2020-0148.

  3. Hoseinzadeh, E., Samarghandi, M.-R., McKay, G., & Rahimi, N. (2014). Removal of acid dyes from aqueous solution using potato peel waste biomass: A kinetic and equilibrium study. Desalination and Water Treatment, 52(25–27).

    DOI: 10.1080/19443994.2013.810355.

Wissawa Malakan | Environmental Chemistry | Best Researcher Award

Best Researcher Award

Wissawa Malakan
Health Intervention and Technology Assessment Program Foundation, Thailand

Wissawa Malakan
Affiliation Health Intervention and Technology Assessment Program Foundation
Country Thailand
Scopus ID 57207989060
Documents 11
Citations 56
h-index 4
Subject Area Environmental Chemistry
Event International Chemical Scientist Awards
ORCID 0000-0003-4567-1206

Wissawa Malakan is a researcher associated with the Health Intervention and Technology Assessment Program Foundation in Thailand. His scholarly work focuses on environmental chemistry, air quality assessment, industrial pollution monitoring, and public health risk evaluation. Based on bibliometric indicators available through Scopus, his research portfolio demonstrates contributions to understanding environmental contaminants and their impacts on human health, supporting evidence-based environmental management and policy development.[1]

Abstract

Wissawa Malakan has contributed to environmental chemistry research through studies examining industrial air pollution, volatile organic compounds, environmental exposure assessment, and associated public health risks. His publications address analytical approaches for monitoring pollutants, modeling environmental impacts, and evaluating human exposure in industrial regions. Through interdisciplinary collaboration, his research supports environmental decision-making, risk management, and evidence-based policy development. Bibliometric indicators, including peer-reviewed publications, citations, and an established h-index, demonstrate measurable scholarly engagement. These contributions align with contemporary priorities in environmental sustainability, chemical safety, public health protection, and environmental risk assessment within both regional and international research communities.[1][2]

Keywords

Environmental Chemistry; Air Pollution; Volatile Organic Compounds; Environmental Health; Risk Assessment; Industrial Emissions; Exposure Modeling; Atmospheric Monitoring.

Introduction

Environmental chemistry plays a critical role in understanding pollutant behavior and protecting public health. Wissawa Malakan’s research focuses on industrial emissions, atmospheric contaminants, and environmental risk evaluation. His studies contribute valuable scientific evidence for environmental monitoring programs and support sustainable management strategies addressing pollution-related challenges in rapidly developing industrial regions.[2]

Research Profile

Affiliated with the Health Intervention and Technology Assessment Program Foundation, Wissawa Malakan maintains an active research profile in environmental chemistry. His scholarly record includes Scopus-indexed publications, multidisciplinary collaborations, and studies investigating pollutant dispersion, exposure pathways, and health implications associated with industrial and urban environmental conditions.[1]

Research Contributions

His contributions include modeling inhalation risks of volatile organic compounds, evaluating industrial air quality impacts, and assessing environmental exposure scenarios. These investigations provide evidence supporting environmental regulation, health risk communication, and sustainable pollution control measures. The research demonstrates practical relevance to environmental management and public health protection initiatives.[2]

Publications

The researcher has authored multiple peer-reviewed publications indexed in international databases. Notable works address integrated management of industrial air pollution and health risk assessment associated with volatile organic compounds, demonstrating consistent engagement with environmental chemistry and environmental health research topics.[2][3]

Research Impact

The researcher’s publications have contributed to scientific discussions concerning industrial pollution and environmental health. Citation metrics indicate academic visibility, while the practical orientation of his studies supports environmental monitoring frameworks, risk assessment methodologies, and policy considerations relevant to sustainable industrial development and public health protection.[1]

Award Suitability

Wissawa Malakan demonstrates qualifications consistent with recognition under the Best Researcher Award category. His peer-reviewed contributions, measurable citation performance, interdisciplinary collaborations, and focus on environmental sustainability collectively reflect scholarly achievement. The relevance of his research to environmental chemistry and public health strengthens his suitability for international academic recognition.[4]

Conclusion

Through research addressing industrial pollution, environmental exposure, and health risk assessment, Wissawa Malakan has established a meaningful scholarly presence within environmental chemistry. His publication record, citation impact, and commitment to evidence-based environmental management demonstrate scientific contributions that support continued advancement of environmental sustainability and public health research.[3]

References

  1. Elsevier. (n.d.). Scopus author details: Wissawa Malakan, Author ID 57207989060. Scopus.https://www.scopus.com/authid/detail.uri?authorId=57207989060
  2. Malakan, W., et al. (2023). Integrated Sustainable Management of Petrochemical Industrial Air Pollution. International Journal of Environmental Research and Public Health, 20(3), 2280.https://doi.org/10.3390/ijerph20032280
  3. ResearchGate. (n.d.). ResearchGate profile of Wissawa Malakan. https://www.researchgate.net/profile/Wissawa-Malakan
  4. ORCID. (n.d.). Researcher Profile: Wissawa Malakan.https://orcid.org/0000-0003-4567-1206

Hamid Rehman | Environmental Chemistry | Research Excellence Award

Dr. Hamid Rehman | Environmental Chemistry | Research Excellence Award

Postdoctoral Research Fellow | Yildiz Technical University | Turkey

Dr. Hamid Rehman is an emerging interdisciplinary researcher whose work focuses on environmental biotechnology, waste valorization, and the sustainable recovery of rare earth elements, with growing recognition for his contributions to circular economy solutions and eco-efficient material extraction strategies. His research demonstrates a strong integration of experimental bioleaching, microbial process engineering, predictive analytics, and meta-analysis, reflecting a modern scientific approach that bridges laboratory methods with scalable industrial applications. With 8 indexed publications, 44 citations, and an h-index of 4, his scholarly record shows a steadily increasing impact within the scientific community. His engagement in large, multi-author and cross-disciplinary projects, including collaborations with more than 50 co-authors, illustrates his commitment to global scientific cooperation and knowledge exchange. One of his most prominent works applies an integrated framework to the bioleaching of waste-derived rare earth elements, combining experimental data with computational forecasting to support process scale-up, positioning his research within urgent global discussions on c ritical material supply, clean energy technologies, and sustainable resource management. Beyond technical advancement, his scientific vision aligns with broader societal goals, emphasizing responsible waste utilization, reduction of environmental pollution, and replacement of resource-intensive mining processes with biologically driven alternatives. His contributions are not only relevant to academic research but also show strong potential for industrial translation, particularly in sectors developing green manufacturing, cleaner extraction pathways, and next-generation materials. As his publication profile and citation influence continue to expand, Dr. Rehman remains committed to advancing innovative research, strengthening international collaborations, and contributing to scientific progress that supports environmental stewardship, technological resilience, and global sustainability.

Profiles : Google Scholar | Scopus | ORCID | ResearchGate | LinkedIn

Featured Publications

Rehman, H., Debik, E., Ulucan-Altuntas, K., Manav-Demir, N., Canci, B., Iqbal, M., Barros, R., ur Rehman, W., Mohanty, S. K., & Khan, A. H. A. (2025). Bioleaching of waste-derived rare earth elements: An integrated approach with meta-analysis and predictive analytics for scale-up. Results in Engineering.

Wasif ur Rehman, W., Ma, Y., Khan, Z., Ait Laaskri, F. Z., Xu, J., Farooq, U., Ghani, A., Rehman, H., & Xu, Y. (2025). Biomass-derived carbon materials for batteries: Navigating challenges, structural diversities, and future perspective. Next Materials.

Wasif ur Rehman, W., Ma, Y., Khan, Z., Ait Laaskri, F. Z., Xu, J., Xu, Y., Rehman, H., Farooq, U., Altalbe, A., & Li, J. (2025). Bioinspired materials for batteries: Structural design, challenges and future perspective. Results in Chemistry.

Rehman, H., Rehman, Z., Das, T. K., Rehman, M., Khan, B. A., Nandi, S., Ahmad, K., Mohanty, S. K., Wasif ur Rehman, W., Naeem, R., et al. (2024). Toxicity evaluation and degradation of cypermethrin-contaminated soil using biochar and Bacillus cereus amendments. Scientific Reports.

Rehman, H., Khan, A. H. A., Butt, T. A., Toqeer, M., Bilal, M., Ahmad, M., Al-Naghi, A. A. A., Latifee, E. R., Algassem, O. A. S., & Iqbal, M. (2024). Synergistic biochar and Serratia marcescens tackle toxic metal contamination: A multifaceted machine learning approach. Journal of Environmental Management.

Dr. Hamid Rehman is advancing the field of environmental biotechnology through innovative bioleaching and data-driven sustainable recovery methods. His research promotes cleaner scientific practices and supports the global transition toward circular resource utilization.

Tamer Saleh | Green Chemistry | Chemical Scientist Award

Prof. Dr. Tamer Saleh | Green Chemistry | Chemical Scientist Award

Professor | University of Jeddah | Saudi Arabia

Dr. Tamer S. Saleh is a distinguished researcher recognized for substantial contributions to sustainable chemistry, advanced catalysis, green synthesis, nanomaterials, and biotechnology, with a strong publication record exceeding 96 peer-reviewed articles, 1,928 citations, and an h-index of 27. His research integrates innovative catalytic methodologies with environmentally responsible chemical processes, demonstrating expertise in developing supramolecular coordination polymers, metal-decorated biopolymers, layered double hydroxide systems, and novel organocatalysts that enable greener approaches for heterocycle construction, CH-functionalization, and cycloaddition reactions. He has advanced modern synthetic chemistry through sonophotocatalysis, pressure-assisted reactors, and hybrid catalytic platforms that improve efficiency, selectivity, and sustainability across diverse transformations. In analytical and materials chemistry, he has contributed significantly to the design of carbon dot–gold nanoparticle composites, fluorescence-based sensing probes, and SERS-enabled biosensors with enhanced sensitivity for detecting neurotransmitters and microbial metabolites, enabling progress in diagnostics, environmental monitoring, and chemical safety. His interdisciplinary work further includes biotechnological innovations such as optimized bioreactor fermentation, valorization of agricultural waste, and microbial lipid production using oleaginous yeasts, highlighting impactful pathways toward sustainable resource utilization and microbial engineering. Research on oxidative stress regulation in pathogenic fungi, metabolite profiling, and the development of novel bioactive compounds adds to his broad scientific portfolio with relevance to public health and drug discovery. With more than 160 collaborative co-authors worldwide, his scholarship is marked by strong scientific partnerships and global visibility. Through his commitment to methodological rigor, innovation, and sustainability-driven solutions, Dr. Saleh continues to contribute meaningfully to advancements in green chemistry, catalysis, materials science, and biotechnology, reinforcing the societal relevance of modern chemical research.

Profiles : Scopus | ORCID | ResearchGate

Featured Publications

Saleh, T. S., Al-Bogami, A. S., Aqlan, F. M., & Akhdhar, A. (2026). Exploring the molecular structure of green-synthesized aza-Michael addition products: 2D NMR confirms novel pyrazoles. Journal of Molecular Structure.

El-Said, W. A., Akhdhar, A., Al-Bogami, A. S., & Saleh, T. S. (2025). Design and green synthesis of carbon dots/gold nanoparticle composites and their applications for neurotransmitter sensing based on emission spectroscopy. Spectrochimica Acta Part A: Molecular and Biomolecular Spectroscopy.

Saleh, T. S., & Al-Bogami, A. S. (2025, November 4). Straightforward synthesis of thiophene bioisosteres of the pyrrolo[3,2-c]quinoline framework from Martinelline alkaloids. Molbank. El-bendary, M. M., Akhdhar, A., Davaasuren, B., Al-Bogami, A. S., & Saleh, T. S. (2025, October 10). Unveiling silver catalysis to access 5-substituted tetrazole through [3+2] cycloaddition reaction, utilizing a novel silver supramolecular coordination polymer–based catalyst: A new green horizon. Catalysts.

Al-Romaizan, A. N., Altuna, I. A., Larruskain, M. G., Alghamdi, K. S., Alzhrani, G., Saleh, T. S., … & Hillenbrand, R. (2025, September). Copper-decorated chitosan organocatalyst for sonophotocatalytic C–H arylation of pyrazoles: Mechanistic insights and eco-friendly perspective. Carbohydrate Polymer Technologies and Applications.

Dr. Tamer S. Saleh’s research advances sustainable chemical innovation by developing green catalytic systems, eco-friendly synthesis pathways, and high-performance sensing materials that address critical scientific and industrial challenges. His work supports cleaner technologies, enhances analytical capabilities, and contributes to global efforts toward environmentally responsible chemical manufacturing.

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.

Prof. Jinhui Zhao| Environmental Chemistry| Best Researcher Award

Prof. Jinhui Zhao| Environmental Chemistry| Best Researcher Award

Director of the Research Institute at Nanjing Tech University, China.

🔬 Short Biography 🌿💊📚

Dr. Jinhui Zhao is an Associate Professor at Nanjing Tech University specializing in environmental chemistry and water treatment technologies. With a Ph.D. in Environmental Engineering, he has published over 50 research articles, including 15 SCI-indexed papers, and holds 10 patents related to pollutant removal and sustainable water systems. His work focuses on the migration and transformation of contaminants in aquatic environments and the development of eco-friendly treatment methods. Dr. Zhao has led multiple national and industrial research projects and actively contributes to innovative solutions for global environmental challenges.

PROFILE 

ORCID 

SCOPUS 

🔍 Summary of Suitability:

Dr. Zhao Jinhui stands out as an applied environmental scientist with impactful research on water treatment technologies and pollutant migration. His work bridges environmental chemistry, public health, and sustainable engineering. His integration of theory with practical applications and industry relevance marks him as a leader in his field. With publications, patents, awards, and high-profile collaborations, he demonstrates a robust and balanced academic profile.

📘 Education

Professor Zhao Jinhui holds a solid academic foundation in environmental and chemical engineering sciences, which has guided his path into research and higher education. He has pursued advanced training in water environmental chemistry and related technologies, which laid the groundwork for his specialization in pollutant behavior and water resource management. His educational background also supports his active role in publishing professional books and developing technical standards in environmental science. This comprehensive academic journey has been instrumental in shaping his expertise in water treatment and sustainability.

Professional Experience

With over a decade of professional and academic experience, Professor Zhao serves as an Associate Professor at Nanjing Tech University. He has led five research projects and completed more than 60 consultancy and industry collaborations, particularly focusing on water treatment, reclaimed water utilization, and pollutant migration. Zhao’s practical expertise extends beyond academia, demonstrated through his leadership in large-scale projects such as those under China’s 863 Program. His innovations have translated into real-world applications, especially in the implementation of constructed wetland technologies for wastewater treatment and power generation, solidifying his role as a leader in applied environmental research.

Skills and Competencies

Zhao Jinhui’s key skills include water quality analysis, advanced water treatment technologies, pollutant migration modeling, and constructed wetlands optimization. His ability to bridge chemical engineering principles with biological systems sets him apart in environmental sustainability research. He also exhibits strong project management and consultancy skills, having led high-impact industry collaborations.

Research Focus 🔍🤖

Professor Zhao Jinhui’s research centers on water environmental chemistry, with a strong emphasis on sustainable water treatment technologies and pollutant behavior in aquatic systems. He investigates the recycling and reuse of reclaimed water and rainwater, aiming to improve water security and environmental protection. A major aspect of his work involves studying the migration and transformation of organic and inorganic pollutants during various treatment processes, including advanced oxidation and constructed wetlands. His interdisciplinary approach combines chemical, biological, and engineering techniques to enhance pollutant removal efficiency while promoting eco-friendly practices. Zhao’s research contributes significantly to water sustainability and green innovation.

Awards and Honors 🏆🎖️

Zhao received the Third Prize in Science and Technology from the China General Chamber of Commerce for his contributions to constructed wetlands for wastewater treatment and energy generation. His applied research has significantly influenced environmental engineering practices in China.

Publications & Citations 📚

  1. Title: Comparison of Field Infiltration Test Methods for Permeable Pavement: Toward a Further Easy and Accurate Method
    Journal: Clean – Soil, Air, Water
    DOI: 10.1002/clen.201900174
    Authors: Zhao, Jinhui
    Year: 2019

  2. Title: Water and energy saving potential by adopting pressure-reducing measures in high-rise building: A case analysis
    Journal: Building Services Engineering Research and Technology
    DOI: 10.1177/0143624417751056
    Authors: Zhao, Jinhui
    Year: 2018

  3. Title: A fancy eco-compatible wastewater treatment system: Green Bio-sorption Reactor
    Journal: Bioresource Technology
    DOI: 10.1016/j.biortech.2017.03.037
    Authors: Zhao, Y.; Liu, R.; Zhao, J.; Xu, L.; Sibille, C.
    Year: 2017

  4. Title: Advanced treatment of actual textile dye wastewater by Fenton-flocculation process
    Journal: Canadian Journal of Chemical Engineering
    DOI: 10.1002/cjce.22752
    Authors: Xiao, X.; Sun, Y.; Sun, W.; Shen, H.; Zheng, H.; Xu, Y.; Zhao, J.; Wu, H.; Liu, C.
    Year: 2017

  5. Title: Constructed wetland integrated microbial fuel cell system: Looking back, moving forward
    Journal: Water Science and Technology
    DOI: 10.2166/wst.2017.190
    Authors: Wang, Y.; Zhao, Y.; Xu, L.; Wang, W.; Doherty, L.; Tang, C.; Ren, B.; Zhao, J.
    Year: 2017

  6. Title: Embedding constructed wetland in sequencing batch reactor for enhancing nutrients removal: A comparative evaluation
    Journal: Journal of Environmental Management
    DOI: 10.1016/j.jenvman.2017.01.080
    Authors: Liu, R.; Zhao, Y.; Zhao, J.; Xu, L.; Sibille, C.
    Year: 2017

  7. Title: Agricultural runoff pollution control by a grassed swales coupled with wetland detention ponds system: A case study in Taihu Basin, China
    Journal: Environmental Science and Pollution Research
    DOI: 10.1007/s11356-016-6150-2
    Authors: Zhao, J.; Zhao, Y.; Zhao, X.; Jiang, C.
    Year: 2016

  8. Title: Highway runoff treatment by hybrid adsorptive media-baffled subsurface flow constructed wetland
    Journal: Ecological Engineering
    DOI: 10.1016/j.ecoleng.2016.02.020
    Authors: Zhao, J.; Zhao, Y.; Xu, Z.; Doherty, L.; Liu, R.
    Year: 2016

  9. Title: UV/TiO₂ photocatalytic disinfection of carbon-bacteria complexes in activated carbon-filtered water: Laboratory and pilot-scale investigation
    Journal: Journal of Environmental Science and Health, Part A: Toxic/Hazardous Substances and Environmental Engineering
    DOI: 10.1080/10934529.2015.1055155
    Authors: Zhao, J.H.; Chen, W.; Zhao, Y.; Liu, C.; Liu, R.
    Year: 2015

🔍 Conclusion:

Highly suitable for the Best Researcher Award. Dr. Zhao’s contributions in environmental chemistry and sustainable water systems have tangible societal benefits and scientific depth. Strategic international engagement and editorial roles would further amplify his already strong research trajectory.

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.

 

 

Thompson Faraday Ediagbonya | Environmental Chemistry | Excellence in Innovation Award

Prof. Thompson Faraday Ediagbonya | Environmental Chemistry | Excellence in Innovation Award

Professor at Olusegun Agagu University of Science and Technology in Nigeria.

Dr. Thompson Faraday Ediagbonya 🎓, an Associate Professor of Environmental Chemistry at OAUSTECH, Nigeria 🇳🇬, is a distinguished scholar with a Ph.D. in Environmental Chemistry and over 50 scientific publications 📚. With teaching experience spanning two decades, his expertise lies in pollution studies, risk assessment, and environmental impact analysis 🌍🧪. He has received awards such as Best Lecturer by the Chemical Society of Nigeria 🏆 and secured prestigious grants, including DAAD and Max Planck Institute scholarships 🌐💼. Beyond academia, he actively mentors postgraduate students and contributes to environmental research and policy. He enjoys reading, football, table tennis, and atmospheric music ⚽📖🎶.

Professional Profile

GOOGLE SCHOLAR 

SCOPUS 

🔍 Summary of Suitability:

Dr. Ediagbonya is a visionary scholar whose work bridges environmental science and public health. He has pioneered analytical approaches to assess the risks of environmental pollutants such as PAHs, PCBs, and heavy metals using advanced tools like GC-MS and ICP-OES 🔬. His studies on atmospheric pollutants, water safety, and ecosystem health have contributed to national and international environmental policies 🌍📈.

🎓 Educational Background

  • 🏫 Primary School: Obanosa Primary School, Benin City (1980–1986)

  • 🏫 Secondary School: Ihogbe College, Benin City (1986–1992)

  • 🏫 Secondary School: Step-forward Secondary School, Warri (1992–1993)

  • 🧪 B.Sc. (Ed) Chemistry: University of Benin (1995–1999)

  • 💻 Diploma in Computer Studies: Obafemi Awolowo University Consultancy Services (2000–2001)

  • ⚗️ M.Sc. in Analytical & Environmental Chemistry: University of Benin (2002–2005)

  • 🌍 Ph.D. in Environmental Chemistry: University of Benin (2006–2011)

👨‍🏫 Professional Experience

🏛️ University Level (OAUSTECH)

  • 👨‍🔬 Lecturer II, Industrial Chemistry (2013)

  • 📘 Lecturer I, Industrial Chemistry (2016)

  • 📗 Senior Lecturer, Industrial Chemistry (2019)

  • 🎓 Associate Professor, Chemical Sciences (2022–Present)

  • 🧑‍🎓 Sub Dean, School of Science (2024–Present)

  • 👨‍💼 Acting HOD, Department of Chemical Sciences (2024–Present)

🏫 Teaching (Outside University)

  • 👨‍🏫 Chemistry Teacher, Imaguero Grammar School (1997–1998)

  • 👨‍🏫 NYSC Teacher, Irabeji Grammar School (2000–2001)

  • 👨‍🏫 Royal College, Ovwian (2001–2009)

  • 🧪 Practical Demonstrator, University of Benin (2008–2010)

  • 👨‍🏫 Jenny College, Ekete (2010–2012)

  • 👨‍🏫 Lecturer II, Western Delta University (2012–2013)

🌍 Research & Assessments

  • 🧪 Environmental Impact Assessments (EIA)

  • 💧 Health Impact Assessments (HIA) for SPDC, NNPC & others

  • 🔬 Numerous international and national environmental studies

Professional Development 🚀📖

Dr. Thompson Faraday Ediagbonya 📘 has demonstrated remarkable professional development through decades of academic excellence and environmental research 🌍🧪. Rising from a dedicated Chemistry teacher to an Associate Professor at OAUSTECH 🎓, he has contributed significantly to pollution analysis, environmental risk assessment, and sustainable practices 💧🌿. A recipient of the DAAD Staff Exchange Scholarship 🇩🇪 and international grants, he has attended numerous conferences, presented impactful research 📊, and published over 50 scientific papers 📚. As a mentor and postgraduate supervisor 👨‍🏫, his role in shaping future scientists is commendable. His professional growth reflects dedication, innovation, and global environmental advocacy 🌐🔥.

Research Focus 🔍🤖

Dr. Thompson Faraday Ediagbonya’s research focus centers on Environmental Chemistry and Pollution Studies 🌍🧪. His work explores air and water quality, heavy metals, polycyclic aromatic hydrocarbons (PAHs), polychlorinated biphenyls (PCBs), and greenhouse gases 🌫️💧🌡️. He conducts risk assessments to evaluate environmental and human health impacts 🧬⚠️, particularly in industrial and coastal regions. His studies utilize advanced analytical techniques like GC-MS and ICP-OES 🔬📈. Committed to sustainability, he investigates climate change, rainwater harvesting, and ecosystem protection 🌦️🌱. His research supports cleaner environments and informed policies, contributing to global environmental safety and public health awareness 🧑‍🔬📉🌐.

🏆 Awards & Honors
  • 🥇 Best Lecturer Award – Chemical Society of Nigeria (OAUSTECH), 2021

  • 🏅 Students’ Favourite Lecturer – Chemical Society of Nigeria (OAUSTECH), 2018

  • 🧪 Best Chemistry Teacher – Royal Colleges, Ovwian, Delta State, 2007

  • 🎓 DAAD Staff-Exchange Scholarship – Germany 🇩🇪, 2021

  • 🌍 International Research Grant – Max Planck Institute for Chemistry, Germany 🇩🇪 (2020, €26,676)

  • 📚 TETFund National Research Grants – Nigeria 🇳🇬 (3-time recipient)

Publications & Citations 📚

📘 Occupational exposure to wood dust and respiratory health status of sawmill workers in South-south Nigeria – Tobin EA, Ediagbonya TF et al. | J Pollut Eff Cont | 51 citations | 📅 2016 🌳🫁

💧 Assessment of rain water harvesting systems in a rural community of Edo State, Nigeria – Tobin EA, Ediagbonya TF et al. | Journal of Public Health | 31 citations | 📅 2013 🌦️🏞️

🌫️ Sequential extractions and toxicity potential of trace metals absorbed into airborne particles in an urban atmosphere of Southwestern Nigeria – Olumayede EG, Ediagbonya TF | Scientific World J | 30 citations | 📅 2018 🏙️☠️

💦 Identification and quantification of heavy metals, coliforms and anions in water bodies using enrichment factors – Ediagbonya TF et al. | J Environ Anal Chem | 23 citations | 📅 2015 🚱🧪

🌾 Spatio-temporal distribution of inhalable and respirable particulate matter in rural atmosphere of Nigeria – Ukpebor EE, Ediagbonya TF et al. | IAEES | 22 citations | 📅 2013 🌬️🏡

🧭 Potential risk assessment and spatial distribution of elemental concentrations in sediment – Ediagbonya TF, Balogun OT | Applied Water Science | 17 citations | 📅 2020 🧪🌍

🐟 Comparative analysis of some metallic elements in selected body part of fishes from Igbokoda River – Ediagbonya TF et al. | Results in Chemistry | 17 citations | 📅 2020 🐠⚗️

🧱 Risk assessment and elemental quantification of anthropogenic activities in soil – Ediagbonya TF, Ajayi S | Environ Geochem Health | 15 citations | 📅 2021 🌍🔬

🏙️ Air pollution and respiratory morbidity in an urban area of Nigeria – Ediagbonya TF, Tobin AE | Greener J Environ Manag | 15 citations | 📅 2013 🚗💨

🪵 The level of suspended particulate matter in wood industry (sawmills) in Benin City, Nigeria – Ediagbonya TF et al. | J Environ Chem Ecotoxicol | 13 citations | 📅 2013 🪚🌫️

🌍 Comparative study of TSP, inhalable and respirable particles in Niger Delta – Ediagbonya TF et al. | Greener J Phys Sci | 13 citations | 📅 2012 🏞️💨

🐸 Bioaccumulation of elemental concentrations in sediment and frog (Pyxicephalus edulis) – Ediagbonya TF et al. | Chemistry Africa | 12 citations | 📅 2022 🐸⚛️

⛏️ Effect of quarry activities on biological resources around quarry site in Oyo State – Ediagbonya TF et al. | Environ Geochem Health | 12 citations | 📅 2021 🌿🪨

🌊 Geochemistry of terrigenous sediments in surface water from Ore and Okitipupa – Ediagbonya TF, Ayedun H | Bangladesh J Sci Ind Res | 12 citations | 📅 2018 🧬💧

🧲 Enrichment factor of atmospheric trace metals using reference elements – Ediagbonya TF | Nigerian Journal of Technology | 12 citations | 📅 2016 🔍📈

🌫️ Heavy metal in inhalable and respirable particles in urban atmosphere – Ediagbonya TF et al. | Environ Skeptics and Critics | 12 citations | 📅 2013 🌁🧪

😷 Prevalence of respiratory symptoms due to particulate matter in Niger Delta – Ediagbonya TF et al. | Biol & Environ Sci J Tropics | 11 citations | 📅 2014 🫁🌿

 🔍 Conclusion:

Dr. Ediagbonya’s commitment to scientific innovation, public health, and sustainability makes him an exceptional candidate for the Excellence in Innovation Award. His work not only advances academic knowledge but also delivers practical solutions to pressing global environmental challenges 🌎🚀

 

 

Md. Saikat Hossen | Environmental Sciences | Best Researcher Award

Mr. Md. Saikat Hossen | Environmental Sciences | Best Researcher Award

Student at University of Barishal in Bangladesh.

🌱 Md. Saikat Hossen is a passionate 3rd-year BSc student in Soil and Environmental Sciences at the University of Barishal, Bangladesh 🇧🇩. Skilled in SPSS, R, GIS, and Canva, he excels in data analysis 📊, research 📖, and graphic design 🎨. As a research intern at the Plasma Cell Research Center 🔬, he explores immune responses to environmental pollutants. A dedicated volunteer and event organizer 🎤, he has earned multiple certifications and won 1st place in a poster design competition 🏆. With a strong commitment to sustainability and problem-solving, he strives to make a meaningful impact in environmental science 🌍.

Professional Profile

Suitability for the Best  Researcher Award 🏆

Md. Saikat Hossen is a dedicated environmental science researcher 🌱🔬 with strong analytical expertise in data analysis, GIS, and computational modeling 📊. His research on pollution’s impact on health 🏥 and chemical-protein interactions 🧪 showcases his commitment to solving critical environmental challenges.

Education 🎓

  • 📖 BSc in Soil and Environmental Sciences (Ongoing) – University of Barishal, Bangladesh 🇧🇩
    • Focus on research, soil health, agriculture, and pollution control 🌱
  • 🏫 HSC in Science – Kafil Uddin Degree College (2021)
    • GPA: 4.50 🎯
  • 🏫 SSC in Science – Hazirpara Hamidia High School (2019)
    • GPA: 4.06 📚

💼 Experience:

    • 🔬 Research Intern (2024–2025) – Plasma Cell Research Center 🏥
      • Studying immune responses to environmental pollutants 🧪
      • Working on computational and experimental methods for pollution impact 📊
      • Upcoming publication on chemical-protein interactions in air pollution 📝
    • 💻 IT and Research Enthusiast (2023–2024) – University of Barishal 🏛️
      • Expertise in SPSS, STATA, and data analysis 📈
      • Organized events like Quizzi-cal 2.0 and Disaster Hackathon 2.0 🏆
      • Served as IT Secretary at BURHES for volunteer initiatives 🤝

Professional Development 🚀📖

Md. Saikat Hossen is continuously enhancing his expertise in data analysis 📊, environmental research 🌱, and graphic design 🎨. As a research intern at the Plasma Cell Research Center 🔬, he applies computational and experimental methods to study pollution’s impact on health 🏥. His proficiency in SPSS, R, GIS, and STATA strengthens his analytical skills 📈. He actively participates in workshops, publishes research 📖, and has earned multiple certifications 🏅. His leadership as IT Secretary at BURHES and involvement in event management 🎤 showcase his dedication to innovation, problem-solving, and sustainability 🌍.

Research Focus 🔍🤖

Md. Saikat Hossen’s research revolves around environmental science 🌱, pollution control 🏭, and computational analysis 📊. As a research intern at the Plasma Cell Research Center 🏥, he studies the impact of environmental pollutants on human health 🧬. His work integrates data analysis (SPSS, R, STATA) 📈 and GIS mapping 🗺️ to model pollution effects. He explores chemical-protein interactions 🧪 to predict air pollution’s health consequences 🌍. Passionate about sustainability and innovation ⚡, he aims to develop scientific solutions for environmental and public health challenges 🤝.

Awards & Honors 🏆

  • 🥇 1st Place in Poster Design Competition (2023) – Recognized for creativity and research presentation skills 🎨📊
  • 🎓 Certified in GIS and Research (2024) – Demonstrated expertise in geographic information systems and analytical research 🗺️🔬
  • 🏅 Multiple Voluntary Certificates (2023–2024) – Acknowledged for active participation in academic and community initiatives 🤝🎤
  • 📜 Upcoming Research Publication (2025) – Contributed to scientific advancements with a study on chemical-protein interactions and air pollution effects 🧪🌍

 

Publication Top Notes:

📄 Publication: “Modeling the Interactions Between Chemicals and Proteins to Predict the Health Consequences of Air Pollution” (2025) 🧪🌍 | Cited by: [Not available yet] 📑

🎯 Conclusion:

Given his groundbreaking research, technical proficiency, and academic achievements, Md. Saikat Hossen is a strong candidate for the Best Researcher Award 🏆. His contributions to environmental science and public health research make him highly deserving of this honor 🌟.

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

 

Md. Ramjan Sheikh | Environmental science | Best Researcher Award

Mr. Md. Ramjan Sheikh | Environmental science | Best Researcher Award

Research assistant at  Gono Bishwabidyalay in Bangladesh.

Md. Ramjan Sheikh 🎓 is a dedicated biochemist specializing in molecular biology 🧬. He holds an M.S. in Biochemistry & Molecular Biology from Hajee Mohammad Danesh Science and Technology University 🏛️ and currently serves as a consultant biochemist at Super Medical Hospital, Savar, Dhaka 🏥. With expertise in bacterial genomics, RT-PCR, and bioinformatics 🖥️, he is also the founder of the Plasma Cell Research Center 🔬. Passionate about research, he has contributed to multiple scientific publications 📚 and actively engages in training and workshops. His work focuses on antimicrobial resistance, plant biochemistry, and computational biology for drug discovery 💊.

 

Professional Profile

Suitability for the Best Researcher Award 🏆

Md. Ramjan Sheikh is a highly accomplished biochemist and molecular biologist 🧬 with a strong research background in bacterial genomics, antimicrobial resistance, plant biochemistry, and computational drug design 💊. His extensive hands-on experience in RT-PCR, enzyme assays, whole-genome sequencing, and bioinformatics 🖥️ has led to significant scientific contributions. With multiple peer-reviewed publications 📚, active involvement in research education 🎓, and leadership as the founder of the Plasma Cell Research Center 🔬, he demonstrates an outstanding commitment to advancing biochemical research.

Education 🎓

  • M.S. in Biochemistry & Molecular Biology (2023) 🧬
    • Hajee Mohammad Danesh Science and Technology University, Bangladesh 🏛️
    • CGPA: 3.83/4.00
  • B.Sc. (Hons) in Biochemistry & Molecular Biology (2020) 🧪
    • Gono Bishwabidyalay, Bangladesh 🏫
    • CGPA: 3.76/4.00
  • Higher Secondary Certificate (HSC) in Science (2014) 🏆
    • Gov. Yasin College 🏢
    • GPA: 4.30/5.00
  • Secondary School Certificate (SSC) in Science (2012) 🏅
    • Kola Sadar Uddin High School 📖
    • GPA: 4.69/5.00

Experience 👨‍🔬

  • Consultant Biochemist (Present) 🏥
    • Super Medical Hospital, Savar, Dhaka
  • Founder & Instructor 🔬
    • Plasma Cell Research Center
  • Laboratory Officer (Feb 2021 – Dec 2021) 🏢
    • Gonosasthaya RNA Molecular Diagnostic and Research Center, Dhaka
  • Research & Training Experience 📚
    • Conducted RT-PCR tests for Covid-19, Hepatitis B & C 🦠
    • Hands-on expertise in molecular biology techniques (PCR, DNA extraction, ELISA) 🧫
    • Completed various bioinformatics and programming trainings (Python, R, SPSS) 💻
    • Engaged in bacterial genomics and antimicrobial research 🦠🔬

Professional Development 🚀📖

Md. Ramjan Sheikh 🧬 is committed to continuous professional growth through research, training, and hands-on experience. He has undergone specialized training in RT-PCR 🦠, bioinformatics 🖥️, and molecular characterization 🔬. His expertise spans bacterial genomics, computational drug design 💊, and enzyme assays. He has completed multiple workshops on Python and R programming for biological research 📊. As the founder of the Plasma Cell Research Center 🏫, he mentors young researchers in molecular biology. His contributions to scientific publications 📚 and active participation in conferences make him a dynamic professional dedicated to advancing biochemistry and molecular biology.

Research Focus 🔍🤖

Md. Ramjan Sheikh’s research focuses on biochemistry and molecular biology 🧬, with expertise in bacterial genomics 🦠, antimicrobial resistance 🏥, and plant biochemistry 🌿. He explores enzyme assays 🔬, proteomics 🧫, and genetic diversity in crops 🌾. His studies on computational drug design 💊 integrate bioinformatics 🖥️, artificial intelligence 🤖, and machine learning. He also investigates RNA-based diagnostics 🧪 and molecular mechanisms of diseases 🏥. Passionate about innovation, he contributes to scientific advancements through experimental research, genome sequencing, and biomarker discovery 🔍. His work supports drug development, agriculture, and disease prevention worldwide.

Awards & Honors 🏆🎖️

  • Founder & Instructor of Plasma Cell Research Center 🔬🏅
    • Recognized for contributions to research education and mentorship.
  • Best Research Contributor in Biochemistry & Molecular Biology 🧬🏆
    • Honored for impactful scientific publications and research advancements.
  • Recipient of Research Training Certifications 📜🥇
    • Successfully completed specialized training in RT-PCR, bioinformatics, and computational drug design.
  • Outstanding Performance in Graduate Studies 🎓🎖️
    • Achieved high academic excellence (CGPA: 3.83/4.00) in M.S. in Biochemistry & Molecular Biology.
  • Scientific Paper Publications & Recognition 📚🏅
    • Published multiple research articles in reputed international journals.

 

Publication Top Notes:

📜 Determination of antimicrobial activity of medicinal plant Cassia obtusifolia L.(Chakunda) leaf extract on selected pathogenic microbes – MH Rony, MAS Imran, R Islam, F Ahmed, BB Zaker, P Akter, MG Mosaib, … | 🏆 Cited by: 3 | 📅 Year: 2019

🧬 Biochemical analysis of Leonurus sibiricus and prediction of its bioactive compound-protein interactions in Homo sapiens – AA Osman, AAA Omar, MA Khatun, MR Sheikh, MS Alam, MMU Zaman, … | 🏆 Cited by: 2 | 📅 Year: 2024

🚬 Proteomic Insights Into The Health Impacts of Cigarette Smoking: Analyzing Nicotine, PAHs, Aromatic Amines, And Aldehydes – ML Miah, MF Hossain, ME Uddin, MH Rahman, H Barua, AA Osman, … | 🏆 Cited by: 1 | 📅 Year: 2025

🌫️ Modeling the Interactions Between Chemicals and Proteins to Predict the Health Consequences of Air Pollution – MR Sheikh, HH Mahmud, MS Hossen, D Saha, ME Uddin, MF Hossain, … | 📅 Year: 2025

🦠 Identification and Characterization of a Protease Producing Bacillus cereus Strain From Tannery Waste for Efficient Dehairing of Goat Skin – ME Uddin, MR Sheikh, M Asaduzzaman, S Ahmed, SK Kundu, AAI Sina | 📅 Year: 2025

🌱 Morphophysiological characterization of buckwheat landraces toward the development of germplasm in Bangladesh – MR Sheikh, M Shafiuzzaman, A Khan, MTS Turin, MT Abedin, MA Sayed | 📅 Year: 2024

🧬 Genomic Insights into the Cultivated Common Buckwheat: A Comprehensive Review on Genetic Diversity, Population Structure, and Marker Technologies – MR Sheikh, MT Abedin, ME Uddin, AS Toma, L Lisa, D Saha, MA Sayed | 📅 Year: 2025.

📌 Conclusion:

Given his pioneering research, high-impact publications, leadership in scientific mentorship, and significant advancements in molecular biology and computational research, Md. Ramjan Sheikh is an excellent candidate for the Best Researcher Award 🏆. His work not only enhances scientific knowledge but also contributes to healthcare, biotechnology, and drug discovery. Recognizing his contributions would further inspire innovation and excellence in biochemical and molecular research.