Si Mengting | Environmental Chemistry | Best Researcher Award

Assoc. Prof. Dr. Si Mengting | Environmental Chemistry | Best Researcher Award

Yangtze University | China

Dr. Mengting Si is an Associate Professor at the School of Petroleum Engineering, Yangtze University, China. She earned her Ph.D. and M.S. from the School of Energy and Power Engineering at Huazhong University of Science and Technology, and her B.Sc. in Automotive Engineering from Jilin University. Her research focuses primarily on carbon capture, utilization and storage (CCUS), and soot formation during fossil fuel combustion, particularly leveraging hyperspectral imaging and optical diagnostic techniques. Dr. Si has a strong research track record, having authored 31 publications indexed in Scopus, which have collectively received 396 citations across 357 documents, reflecting an h-index of 11. She has secured multiple prestigious research grants, including two as Principal Investigator from the National Natural Science Foundation of China, and one from the State Key Laboratory of Coal Combustion. Her work has appeared in top-tier journals such as Combustion and Flame, Renewable Energy, and Applied Optics. In addition to her publications, she has contributed to several national-level collaborative research projects and holds one Chinese patent. Dr. Si’s research has also been presented at leading academic conferences, including the International Pittsburgh Coal Conference and the Annual Conference of the Chinese Society of Engineering Thermophysics. Her contributions to combustion diagnostics and emissions control have earned her multiple awards, including the 1st Prize for Scientific and Technological Progress in Petroleum and Chemical Automation and the 3rd Prize of Natural Science of Hubei Province. Dr. Si continues to advance cleaner combustion technologies and sustainable energy research.

Profiles : Scopus | Research Gate

Featured Publications

  • Si, M., Liu, J., Zhang, Y., Liu, B., Luo, Z., & Cheng, Q. (2024). Effect of co-combustion of coal with biomass on the morphology of soot. Renewable Energy, 226, 120374.

  • Si, M., Liu, J., Chang, K., Zhang, Y., Luo, Z., & Cheng, Q. (2024). Evolution of physicochemical characteristics of soot in a single coal combustion flame. Combustion and Flame, 260, 113243.

  • Si, M., Cheng, Q., Yuan, L., Zhang, Y., & Luo, Z. (2022). Study on the combustion behavior of single coal particle using a thermal-imaging technique. Combustion and Flame, 242, 112178.

  • Si, M., Cheng, Q., Yuan, L., Luo, Z., Xu, Z., & Zhao, H. (2022). Physical and chemical characterization of two kinds of coal-derived soot. Combustion and Flame, 238, 111759.

  • Si, M., Cheng, Q., Yuan, L., Luo, Z., Yan, W., & Zhou, H. (2021). Study on combustion behavior and soot formation of single coal particle using hyper-spectral imaging technique. Combustion and Flame, 233, 111568.

 

Naveen Kumar | Green Chemistry | Best Researcher Award

Assist. Prof. Dr. Naveen Kumar | Green Chemistry | Best Researcher Award 

School of Agriculture and Technology, Maya Devi University, India

👨‍🎓Profiles

🎓 Academic Background

Dr. Naveen Kumar is a distinguished academic in the field of microbiology, currently serving as an Assistant Professor in the Department of Microbiology, School of Agriculture and Technology, Maya Devi University, Dehradun, India. His academic journey reflects a commitment to both innovation and sustainability. He earned his Ph.D. in Microbiology from Kurukshetra University, where his research was focused on Parthenium hysterophorus biomass valorization for bioethanol production and the synthesis of nanocomposites with wide-ranging applications. This innovative work led to him being honored as the Best Ph.D. Student by the Microbiologists Society of India (MSI). Prior to his doctoral studies, Dr. Kumar completed his M.Sc. in Microbial Biotechnology from Maharshi Dayanand University, Rohtak, where he explored the microbial degradation of polyethylene—a critical area in plastic waste management. He began his academic foundation with a B.Sc. in CBZ from Govt. PG Nehru College, Jhajjar, Haryana.

👨‍🏫 Professional Experience

Dr. Kumar currently imparts his expertise as an Assistant Professor at Maya Devi University, where he teaches microbiology courses with an applied focus relevant to agriculture and biotechnology. His teaching style bridges core microbiological principles with emerging technologies. He also held the position of Visiting Faculty at Kurukshetra University, where he served during multiple academic sessions as a part-time teacher and research scholar. His involvement there significantly contributed to the academic and research environment, especially in mentoring postgraduate students in microbiology.

🧪 Research Interests and Focus

Dr. Kumar’s research interests lie at the intersection of microbiology, nanobiotechnology, and waste valorization. His doctoral work involved converting invasive plant biomass into bioethanol, a step toward sustainable energy solutions, while also developing multifunctional nanocomposites. His previous work on microbial degradation of polyethylene points to his commitment to tackling environmental challenges through biological approaches. His multidisciplinary approach integrates microbial biotechnology and nanotechnology to create sustainable solutions with practical applications.

🏅 Awards and Recognition

His academic excellence and impactful research have been recognized through multiple awards. He was named the Best Ph.D. Student by the Microbiologists Society of India, a recognition of both scholarly rigor and research relevance. He has also received Best Poster Presentation Awards during the International Conference on Biohealth and Waste (ICBHW-2023) and the Conference on Advances in Microbial Technologies (AIMT-2021), highlighting his strength in both scientific research and effective communication.

🧫 Laboratory and Technical Expertise

Dr. Kumar brings strong experimental and analytical skills to the laboratory. In microbiology, he is proficient in bacterial isolation, culture optimization, and handling both liquid and solid media. In microbial biotechnology, he has practical experience in yeast fermentation, and in the production of cellulase and xylanase for bioethanol generation. His expertise in nanobiotechnology includes the synthesis of nanoparticles and evaluation of their antibacterial and antioxidant properties. Furthermore, he is well-versed in analytical techniques such as spectrophotometry, chromatography, FTIR analysis, and centrifugation. His work in waste valorization includes transforming fruit, food, and agricultural waste into value-added products, aligning with the goals of a circular bioeconomy.

🌱 Impact and Future Contributions

As an academic and researcher, Dr. Naveen Kumar is committed to the development of eco-friendly technologies that address global challenges in energy, environment, and health. His work exemplifies the integration of microbial and nanotechnological tools for waste utilization and renewable energy. Looking ahead, he aims to expand his research on sustainable bioprocesses, contribute to advanced microbial teaching methodologies, and mentor young scientists to pursue solutions that are both innovative and socially impactful.

📖Notable Publications

  • Synthesis, spectroscopic characterization, biocidal evaluation molecular docking & DFT investigation of 16–18 membered macrocyclic complexes of cobalt (II)
    Contributors: Subhash, A. Chaudhary, Jyoti, M. Kumar, N. Kumar, N.K. Agarwal
    Journal: Journal of Chemical Sciences, 134(4), 113
    Year: 2022

  • Potential of weed biomass for bioethanol production
    Contributors: N.K. Aggarwal, N. Kumar, M. Mittal
    Book Chapter: Bioethanol Production: Past and Present, pp. 65–71
    Year: 2022

  • Application of MOGA-ANN tool for the production of cellulase and xylanase using de-oiled rice bran (DORB) for bioethanol production
    Contributors: V. Saharan, S. Tushir, J. Singh, N. Kumar, D. Chhabra, R.K. Kapoor
    Journal: Biomass Conversion and Biorefinery, 14(11), 11987–11999
    Year: 2024

  • Comparative study of ethanol production from sodium hydroxide pretreated rice straw residue using Saccharomyces cerevisiae and Zymomonas mobilis
    Contributors: N. Kumar, A. Yadav, G. Singh, A. Singh, P. Kumar, N.K. Aggarwal
    Journal: Archives of Microbiology, 205(4), 146
    Year: 2023

  • Bioethanol production
    Contributors: N.K. Aggarwal, N. Kumar, M. Mittal
    Book Chapter: Green Chemistry and Sustainable Technology, pp. 47–63
    Year: 2022

 

Jiying Zhu | Environmental Chemistry | Best Researcher Award

Ms. Jiying Zhu | Environmental Chemistry | Best Researcher Award

Shandong University of Technology, China

👨‍🎓Profiles

🎓 Early Academic Pursuits

Ms. Jiying Zhu has established a strong academic foundation in agricultural and food engineering, beginning her distinguished career with a commitment to solving global challenges related to organic waste conversion. Her academic journey led her to international collaboration early on, particularly through her experiences at The Ohio State University-OARDC, where she served as a Visiting Scholar from 2008 to 2009, and later as a Postdoctoral Researcher from 2012 to 2013. These international experiences significantly broadened her research vision and expertise in biological engineering.

🧑‍🏫 Professional Endeavors

Ms. Zhu has been an integral part of the School of Agricultural and Food Engineering at Shandong University of Technology, China, for over a decade. She served as an Associate Professor from 2009 to 2018, and due to her outstanding contributions in research and education, she was promoted to Professor in January 2019. Throughout her tenure, she has been at the forefront of promoting sustainable agricultural engineering practices, mentoring students, and leading impactful research initiatives.

🔬 Contributions and Research Focus

Ms. Zhu’s research primarily focuses on the conversion of organic wastes into volatile fatty acids (VFAs) through anaerobic mixed-culture fermentation. She investigates how the organic components of substrates and various fermentation conditions influence the yield and distribution of VFAs. Her studies also delve deeply into the metabolic pathways governing the chain elongation of small molecular intermediates, aiming to overcome bottlenecks and limiting factors. Her overarching goal is to develop carbon source flow regulation strategies that enhance the accumulation of specific target products, contributing to more efficient and sustainable waste management and bioresource utilization.

🌎 Impact and Influence

Ms. Zhu’s pioneering work addresses a critical global need — the sustainable transformation of organic waste into valuable biochemical products. By advancing knowledge on metabolic regulation during fermentation processes, she supports the development of circular bioeconomy models that can significantly reduce environmental pollution and enhance resource recovery. Her findings have practical implications for industries focusing on renewable bioenergy, waste valorization, and environmental sustainability.

📚 Academic Citations

Given the technical relevance and environmental urgency of her research, Ms. Zhu’s work has steadily gained recognition in the academic community. Her research outputs contribute significantly to fields such as biochemical engineering, environmental biotechnology, and waste-to-energy systems, building a strong citation record that continues to expand as sustainable waste conversion grows in importance globally.

🛠️ Technical Skills

Ms. Zhu’s technical expertise includes anaerobic fermentation technology, organic waste characterization, metabolic pathway analysis, volatile fatty acid production optimization, and process regulation for targeted bioproduct accumulation. Her skill set positions her uniquely at the intersection of biological engineering, sustainable waste management, and process optimization.

👩‍🏫 Teaching Experience

Alongside her research activities, Ms. Zhu has been deeply committed to academic mentorship and education. She has guided undergraduate and postgraduate students at Shandong University of Technology, fostering a research culture that emphasizes innovation, problem-solving, and sustainability. Her teaching philosophy integrates hands-on experimentation with theoretical modeling, preparing students to tackle real-world challenges in agricultural and food engineering.

🌟 Legacy and Future Contributions Highlight

Ms. Zhu’s legacy will be defined by her transformative contributions to the sustainable bioconversion of organic wastes. Looking ahead, she is poised to explore advanced metabolic engineering strategies and precision fermentation technologies to further optimize resource recovery from waste streams. Her continued research and mentorship efforts are set to inspire the next generation of engineers and scientists dedicated to environmental sustainability and renewable resource development.

📖Notable Publications

Hexanoic Acid Production and Microbial Community in Anaerobic Fermentation: Effects of Inorganic Carbon Addition
Authors: Xiaofeng Ji, Zhengang Chen, Yingmeng Shen, Longlong Liu, Ranran Chen, Jiying Zhu*
Journal: Bioresource Technology
Year: 2024 | Volume 403: 130881

Regulation of Hydraulic Retention Time on Caproic Acid Production via Two-Phase Anaerobic Fermentation of Chinese Cabbage Waste with Autopoietic Electron Donors
Authors: Ranran Chen, Xiaofeng Ji, Zhengang Chen, Liu Huang, Jiying Zhu*
Journal: Journal of Biotechnology
Year: 2024 | Volume 381: 1-10

Effects of Yeast Inoculation Methods on Caproic Acid Production and Microbial Community During Anaerobic Fermentation of Chinese Cabbage Waste
Authors: Ranran Chen, Xiaonan Zhou, Liu Huang, Xiaofeng Ji, Zhengang Chen, Jiying Zhu*
Journal: Journal of Environmental Management
Year: 2024 | Volume 356: 120632

Acidogenic Fermentation of Potato Peel Waste for Volatile Fatty Acids Production: Effect of Initial Organic Load
Authors: Lu Yu, Ranran Chen, Liu Huang, Xiangyou Wang, Santao Chou, Jiying Zhu*
Journal: Journal of Biotechnology
Year: 2023 | Volume 374: 114-121

Effect of pH on Volatile Fatty Acid Production and the Microbial Community During Anaerobic Digestion of Chinese Cabbage Waste
Authors: Xiaonan Zhou, Yu Lu, Liu Huang, Qi Zhang, Jiying Zhu*
Journal: Bioresource Technology
Year: 2021 | Volume 336: 125338

Mahsa Sanaei | Environmental Chemistry | Best Researcher Award

Mrs. Mahsa Sanaei | Environmental Chemistry | Best Researcher Award

Faculty of Environment University of Tehran, Italy

👨‍🎓Profiles

🎓 Early Academic Pursuits

Mrs. Mahsa Sanaei began her academic journey in Applied Chemistry at the prestigious K. N. Toosi University of Technology, where she earned her Bachelor of Science degree, ranking third among her peers. Her dedication and aptitude led her to pursue a Master of Science in Inorganic Chemistry at Sharif University of Technology, again securing a top-three position in her department. Fuelled by a growing interest in environmental issues, she transitioned into the realm of Environmental Sciences for her second Master’s degree at the Graduate Faculty of Environment, University of Tehran, where she graduated at the top of her class.

🌍 Professional Endeavors & Research Engagements

Mrs. Sanaei’s academic excellence paved the way for her doctoral studies in Environmental Engineering at the University of Tehran. During her Ph.D., she was selected as an Erasmus Exchange Ph.D. Student at the Department of Civil and Environmental Engineering, Politecnico di Milano, Italy. There, she specialized in Environmental and Infrastructure Engineering with a strong focus on geochemistry and soil pollution. Her multidisciplinary education and international exposure have positioned her as a promising researcher in global environmental challenges.

🔬 Contributions and Research Focus

Her research primarily revolves around environmental geochemistry, pollution control, and analytical chemistry, with specific attention to soil and water contamination. Her practical experience spans across high-end analytical instrumentation and field-based environmental monitoring. Her doctoral work bridged chemistry and environmental engineering, focusing on contaminant behavior, environmental toxicity, and remediation technologies.

🌟 Impact and Influence

Mrs. Sanaei’s influence in the academic and research community is marked by her award-winning contributions, including the 26th Research Festival Award at the University of Tehran. She has also consistently ranked among the top scholars during her educational career, showcasing both intellectual rigor and commitment to environmental sustainability.

📚 Academic Citations and Scholarly Recognition

Her scholarly work has attracted attention for its relevance to sustainable environmental practices, soil remediation, and pollution monitoring. Though citation indices were not listed, her selection for international collaboration and multiple academic awards reflect the growing recognition of her research output within academic circles.

💻 Technical Skills & Laboratory Expertise

With extensive laboratory experience, Mrs. Sanaei is proficient in operating a broad range of analytical and spectroscopic instruments, including HPLC, IC, AAS, ICP, NMR, FT-IR, Raman, DSC, SEM-EDS, XRF, XRD, AFM, STM, and more. Her familiarity with environmental and chemical analysis tools strengthens her capability to conduct high-precision environmental monitoring and pollutant characterization. Additionally, her computer literacy includes advanced use of Microsoft Office, Google Suite, Prezi, and Windows OS, alongside certification in ICDL applications.

👩‍🏫 Teaching Experience and Mentorship

Throughout her graduate and doctoral studies, Mrs. Sanaei has actively participated in academic mentorship and departmental research activities. She has guided junior students in lab work, data analysis, and field research. Her educational journey reflects a strong foundation for future teaching roles in environmental science and chemistry-related disciplines.

🌱 Legacy and Future Contributions

Mrs. Mahsa Sanaei stands as a committed academic with a strong background in chemistry and environmental engineering. Her vision includes contributing to sustainable development goals, especially in the areas of soil and water quality improvement, environmental education, and green technology implementation. With her cross-disciplinary knowledge, she is poised to be a thought leader in environmental policy, research, and education, both within Iran and internationally.

📖Notable Publications

  • Effective Elimination of Pb (II) Cations from Waste Water and Polluted Water Using Siderite Magnetic Biochar
    Authors: Mahsa Sanaei, Saeid Giti Pour, Razyeh Lak, Abdolreza Karbassi
    Journal/Source: Preprint on Crossref (DOI: 10.21203/rs.3.rs-4023493/v1)
    Year: 2024

  • Synthesis of Magnetic Biochar Composites for Enhanced Soil Toxic Metal Pollution Adsorption
    Authors: Mahsa Sanaei
    Journal/Source: RSC Chemical Nanoscience and Nanotechnology Network Annual Symposium (Conference Abstract)
    Year: 2022

  • The National Soil Pollution Prevention and Treatment Instruction Essay of IRAN
    Authors: Mahsa Sanaei
    Journal/Source: The Earth Research Institute, Geological Survey & Mineral Explorations of Iran (GSI), TEHRAN, IRAN
    Year: 2021

  • A Survey on Radioactive Waste Management in Iran
    Authors: Mahsa Sanaei
    Journal/Source: Joint ICTP IAEA International School on Radioactive Waste Cementation, ICTP, Trieste, Italy (Lecture)
    Year: 2020

  • Data Analysis of Metal Contamination in the Coastline Sediments of the Persian Gulf Using Principal Component Factor Analysis
    Authors: Mahsa Sanaei
    Journal/Source: Climate Change, Volume 3, Number 11, Pages 786–851
    Year: 2017

  • Environmental Geochemical Atlas of West Azerbaijan Province
    Authors: Mahsa Sanaei
    Journal/Source: The Earth Research Institute, Geological Survey & Mineral Explorations of Iran (GSI), TEHRAN, IRAN (Book)
    Year: 2017

 

Xuteng Zhao | Catalysis | Best Researcher Award

Dr. Xuteng Zhao | Catalysis | Best Researcher Award

Shanghai Jiao Tong University, China

👨‍🎓Profiles

👨‍🎓 Early Academic Pursuits

Dr. Xuteng Zhao began his academic journey with a strong foundation in materials science, earning his Bachelor’s degree in Polymer Materials and Engineering from Northeast Forestry University (2012.09–2016.06). His early exposure to polymer science laid the groundwork for his multidisciplinary approach to energy and catalysis. Motivated by a deep interest in chemical processes, he pursued a Master’s degree in Chemical Engineering and Technology at Harbin Engineering University (2016.09–2019.03), where he gained hands-on experience in process engineering and catalysis. His academic pursuits culminated in a Doctoral degree in Power Engineering and Engineering Thermophysics from Shanghai Jiao Tong University (2019.04–2022.12), marking a transition into the emerging field of electrochemical energy conversion.

👨‍🔬 Professional Endeavors

Dr. Zhao continued his association with Shanghai Jiao Tong University as a Postdoctoral Fellow (2022.12–2024.11), contributing to cutting-edge research in electrochemical catalysis and thermophysical engineering. His commitment and research excellence led to his promotion as an Associate Researcher in March 2025, where he remains active in both scientific research and academic mentorship. His current role situates him at the forefront of hydrogen production technologies, particularly focusing on alcohol–ammonia-based hydrogen evolution systems.

🔬 Contributions and Research Focus

Dr. Zhao’s research is deeply rooted in the development and optimization of electrochemical catalysis technologies for sustainable energy. His primary research focus includes alcohol-ammonia hydrogen production, a promising route for clean hydrogen generation. By integrating principles of thermophysics and catalysis, he has worked on improving the energy efficiency and catalytic performance of these systems. His work bridges materials engineering with chemical process innovation, contributing to the next generation of green hydrogen production technologies.

🌍 Impact and Influence

Through his innovative research, Dr. Zhao has significantly contributed to the global discourse on renewable energy and hydrogen economy. His studies on novel catalytic materials and ammonia-fueled hydrogen systems are expected to influence future industrial hydrogen production models. By collaborating within interdisciplinary teams at Shanghai Jiao Tong University, he supports both academic development and practical technology deployment for carbon-neutral energy solutions.

📊 Academic Citations and Recognition

Though still early in his career, Dr. Zhao’s research has begun to attract attention in scholarly circles, particularly in electrochemical and energy materials communities. His articles are cited in studies related to electrocatalysis, fuel processing, and ammonia decomposition, contributing to an expanding body of literature in sustainable energy production.

🧪 Technical Skills and Expertise

Dr. Zhao has mastered a wide array of experimental and analytical techniques essential to catalysis and thermophysical studies. These include Electrochemical Impedance Spectroscopy (EIS), Linear Sweep Voltammetry (LSV), Tafel Polarization and Reaction Kinetics, Gas Chromatography for hydrogen quantification, and material characterization techniques such as SEM, XRD, BET, and FT-IR. He is also adept at designing custom experimental systems for lab-scale hydrogen production and catalytic performance evaluation.

👨‍🏫 Teaching Experience and Mentorship

As an associate researcher, Dr. Zhao actively participates in academic mentorship at Shanghai Jiao Tong University. He has guided graduate students in experimental design, data analysis, and manuscript preparation. His teaching approach emphasizes both theoretical understanding and hands-on experimentation, fostering the next generation of researchers in energy engineering.

🧭 Legacy and Future Contributions

Looking ahead, Dr. Zhao aims to establish himself as a leading researcher in hydrogen energy and catalysis. His future research will likely delve into scalable hydrogen production techniques, advanced electrocatalyst design, and integration of renewable resources with chemical fuel synthesis. He aspires to develop systems that are not only energy-efficient but also economically viable for real-world deployment. His dedication to clean energy solutions and academic excellence positions him as a promising contributor to the global clean-tech landscape.

📖Notable Publications

Electrically Driven Gaseous Ammonia Decomposition for Hydrogen Production over SiC-Mediated Catalyst without External Heating
Authors: Xiaochao Wang, Xuteng Zhao, Guangzhao Zhou, Ting Chen, Qi Chen, Nicolas Alonso-Vante, Zhen Huang, Yiran Zhang, He Lin
Journal: ACS Catalysis
Year: 2025

The influence of phosphorus and CO poisoning on Pd/SSZ-13 with different Al distributions as passive NOx adsorbers
Authors: Yinan Wang, Jiaqi Feng, Ting Chen, Xuteng Zhao, Rijing Zhan, He Lin
Journal: Separation and Purification Technology
Year: 2024

Nonthermal-Plasma-Catalytic Ammonia Synthesis Using Fe₂O₃/CeO₂ Mechanically Mixed with Al₂O₃: Insights into the Promoting Effect of Plasma Discharge Enhancement on the Role of Catalysts
Authors: Guangzhao Zhou, Ziyu Wang, Xiaochao Wang, Yiran Zhang, Xuteng Zhao, Qi Chen, Ting Chen, Zhen Huang, He Lin
Journal: ACS Sustainable Chemistry & Engineering
Year: 2024

The interaction between Pd/CeO₂ crystal surface and electric field: Application to complete oxidation of methane
Authors: Xuteng Zhao, Yinan Wang, Zuwei Zheng, Xuehong Chen, Ting Chen, He Lin
Journal: Separation and Purification Technology
Year: 2024

Enhancing the NOx storage and hydrothermal stability of Pd/SSZ-13 passive NOx adsorbers by regulating the Al distributions
Authors: Yinan Wang, Xuteng Zhao, Ting Chen, Zuwei Zheng, Rijing Zhan, He Lin
Journal: Fuel
Year: 2024

Md. Tushar Ali | Environmental Chemistry | Young Scientist Award -1966

Mr. Md. Tushar Ali | Environmental Chemistry | Young Scientist Award

Khulna University of Engineering & Technology, Bangladesh

👨‍🎓Profiles

🎓 Early Academic Pursuits

Md. Tushar Ali began his academic journey in Civil Engineering at Khulna University of Engineering & Technology (KUET), Bangladesh, majoring in Structural Engineering with a minor in Environmental Engineering. From January 2019 to March 2024, he maintained a strong academic record, graduating with a CGPA of 3.47 out of 4.00, peaking at an impressive 3.94 in a single term. His undergraduate foundation laid a solid groundwork in structural systems, sustainability, and environmental dynamics, which became the springboard for his transition into multidisciplinary research. Early exposure to complex environmental problems inspired Tushar to explore intersections between engineering, atmospheric science, and ecological resilience.

💼 Professional Endeavors

Currently, Tushar serves as a Research Assistant in the SCIP Plastics Project—an international collaboration between KUET and Bauhaus-Universität Weimar, funded by the German Government. In this role, he engages in diverse tasks ranging from field surveys and lab analyses to advanced modeling and scientific reporting. His work focuses on real-world issues like landfill gas emissions, plastic pollution, and ecological risk assessments. Tushar applies sophisticated tools such as MATLAB, Fuzzy Logic systems, and statistical modeling to analyze landfill impacts. In parallel, he contributes to atmospheric research alongside Dr. Towfiqul Islam and Dr. Hamidul Bari, exploring urban air quality, greenhouse gas trends, and climate behavior through satellite remote sensing and analytical models like PCA and GAM. His dual involvement in waste and climate research marks him as a rare multidisciplinary asset.

🔬 Contributions and Research Focus

Tushar’s research contributions span across several pivotal areas in environmental science and engineering. His field measurements of landfill gases across various waste compositions and seasons offer critical insights into emission patterns. He has developed environmental risk models integrating PCA, DEA, and Fuzzy Logic in MATLAB, enhancing the precision of hazard prediction. His research also explores how plastics escape from landfills via wind, floods, and human interaction, supporting data-driven plastic waste mitigation strategies. A noteworthy technical endeavor includes using LiDAR drone-based Digital Terrain Modeling (DTM) to estimate landfill capacity and predict operational lifespan. Furthermore, his satellite-based work investigates air pollution trends, GHG dynamics, and meteorological variables before, during, and after the COVID-19 pandemic. Tushar has also delved into Atmospheric River (AR) behavior using ERA5 and GrADS, highlighting links between rainfall surges and atmospheric circulation. His seasonal studies on GHG trends and their interaction with urban heat island effects demonstrate a mature understanding of urban climate interactions.

🌱 Undergraduate Research Highlights

Even during his undergraduate years, Tushar was deeply involved in both computational and experimental research. He carried out comparative studies on the thermal performance of traditional vs. pervious concrete pavements using embedded thermocouples, which later resulted in a Q2 journal publication. He further explored the mechanical and thermal behavior of pervious concrete systems and studied cement grout behavior under temperature variations—research that he presented at a national conference. Additionally, his work on using recycled aggregates in sustainable construction is currently under review in a prestigious Q1 journal. These early achievements reflect his commitment to sustainability and innovative material use in civil engineering.

💡 Impact and Influence

Tushar’s interdisciplinary approach enables him to address critical environmental challenges in both urban and rural contexts. His work provides valuable data for policymakers, urban planners, and environmental scientists tackling the pressing issues of waste management, air quality, and climate adaptation. Through high-impact research and modeling, Tushar is influencing conversations around landfill safety, urban emissions, and infrastructure planning. His Bangladesh-centered studies are equally relevant to other rapidly urbanizing regions across the globe. By combining engineering rigor with environmental awareness, he serves as a bridge between academia and real-world climate solutions.

📚 Academic Recognition and Publications

Md. Tushar Ali has published several journal articles and conference papers in Q1 and Q2 indexed journals—an impressive achievement for a researcher at this early stage. His work in landfill gas modeling, satellite climate analytics, and sustainable construction materials has already been recognized in professional and academic forums. Several of his studies are under peer review, indicating a consistent research pipeline. His early academic and research excellence positions him as a rising star in environmental engineering and climate science.

🧠 Technical Skills

Tushar possesses a wide-ranging technical skillset that enhances his research versatility. In programming and modeling, he is proficient in MATLAB, Python, and Google Earth Engine. His mapping and remote sensing capabilities include ArcGIS, GrADS, and satellite image analysis. From a civil engineering perspective, he is skilled in ETABS and AutoCAD for structural modeling. He also excels in data visualization and analysis using OriginPro, Microsoft Excel, and scientific presentation tools such as MS Word and PowerPoint.

👨‍🏫 Teaching and Mentorship Experience

Though not formally appointed as an instructor, Tushar has played an active mentorship role within his academic and research teams. He has guided junior peers in lab experiments, environmental modeling, software tools, and research methodologies. His collaborative style and ability to simplify complex tools have made him an informal but impactful mentor, laying the groundwork for future academic leadership and teaching roles.

🚀 Legacy and Future Contributions

Md. Tushar Ali is crafting a legacy built on research excellence, cross-disciplinary integration, and commitment to solving real-world environmental problems. His work in landfill management, urban climate studies, and sustainable construction is already contributing to both national and global sustainability goals. As he moves forward, Tushar aims to expand his impact through international collaboration, higher academic pursuits, and climate policy engagement. With a strong foundation and a clear vision, he is well-positioned to become a key figure in shaping resilient and sustainable environmental infrastructures for the future.

📖Notable Publications

  • mpact of brick dust addition on the physical and mechanical performance of pervious concrete
    Authors: Md. Tushar Ali; Muhammad Harunur Rashid
    Journal: Innovative Infrastructure Solutions
    Year: 2025

  • Environmental risks of plastic losses from landfills: A comparative study of divisional cities in Bangladesh
    Authors: Md. Tushar Ali; Islam M. Rafizul
    Journal: Journal of Hazardous Materials Advances
    Year: 2024

  • Dynamics of atmospheric emissions and meteorological variables in Bangladesh from pre-to post-COVID-19 lockdown
    Authors: Md. Tushar Ali; Islam M. Rafizul; Quazi Hamidul Bari
    Journal: Heliyon
    Year: 2024

  • The effects of coarser sand addition on thermal properties of pervious concrete
    Authors: Md. Tushar Ali; Muhammad Harunur Rashid
    Journal: Innovative Infrastructure Solutions
    Year: 2024

 

Ismail Daoud | Environmental Chemistry | Best Researcher Award

Assist.Prof. Dr. Ismail Daoud | Environmental Chemistry | Best Researcher Award

Assistant Prof at University of Science And Technology Houari Boumediene, Algeria.

👨‍🎓Profiles

Scopus

orcid

google scholar

Early Academic Pursuits 📚

Ismail Daoud, an assistant professor at the University of Science and Technology Houari Boumediene (USTHB), embarked on his academic journey with a strong passion for materials science. He pursued advanced studies in experimental and computational materials science, focusing on developing sustainable solutions for environmental challenges. His foundational years laid a robust framework for his innovative research in advanced oxidation processes (AOPs) and semiconductor photocatalytic materials.

Professional Endeavors 🏢

At USTHB, Ismail Daoud serves as an assistant professor, combining teaching excellence with cutting-edge research. He has contributed significantly to both academic and industry projects, developing eco-friendly, high-performance materials tailored for environmental remediation. With a focus on bridging the gap between academia and industrial applications, he continues to collaborate with global researchers to address environmental issues innovatively.

Contributions and Research Focus 🌍

Ismail’s research is centered on advanced oxidation processes (AOPs) and semiconductor photocatalytic materials aimed at environmental pollution mitigation. His work focuses on wastewater treatment and environmental remediation by enhancing the photocatalytic performance of composite materials. He has also made significant strides in exploring metal matrix composites for sustainable technological advancements.

Accolades and Recognition 🏆

With 11 journal publications in high-impact platforms like SCI and Scopus, Ismail’s academic work is widely recognized. His research contributions are reflected in his citation metrics, including an h-index of 6, i10-index of 4, and a total citation count of 120. He has also actively participated in editorial appointments and professional memberships, earning respect as a thought leader in materials science.

Impact and Influence 🌟

Ismail Daoud’s research in AOPs and photocatalytic materials has significantly influenced the development of sustainable environmental technologies. His innovative approaches to solving real-world problems have inspired researchers globally and positioned him as a key figure in environmental remediation. His dedication to advancing eco-friendly technologies has also resonated with industry stakeholders, fostering impactful collaborations.

Legacy and Future Contributions 🔮

Looking ahead, Ismail Daoud aspires to expand his research into emerging areas of environmental science, focusing on scaling innovative solutions for broader applications. By continuing to mentor young researchers and collaborate with global experts, he aims to leave a lasting legacy in sustainable materials science and environmental protection. His vision for the future involves translating research into practical, impactful technologies for a greener world.

Technical Skills 💻

Material Characterization Techniques: XRD, SEM, TEM, FTIR, UV-Vis Spectroscopy

Computational Tools: DFT calculations, COMSOL Multiphysics

Programming Languages: MATLAB, Python

Environmental Monitoring Tools: Water quality analysis, photocatalytic efficiency evaluation

Upcoming Projects 🚀

Exploring advanced photocatalytic nanocomposites for air and water purification.

Developing hybrid materials for simultaneous pollutant degradation and energy production.

Investigating metal-free photocatalysts for green oxidation processes.

 

📖Notable Publications

 

“Enhanced Photocatalytic Activity of TiO₂ Nanocomposites for Dye Degradation,”
First Author: Ismail DAOUD
Date: February 12, 2024
Year: 2024

“Advanced Oxidation Processes for Wastewater Treatment: A Review,”
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Year: 2023

“Synthesis and Characterization of ZnO-Based Photocatalysts,”
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Date: July 8, 2023
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“Efficiency of Metal Doped Photocatalysts for Industrial Effluent Treatment,”
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Date: November 5, 2022
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“Novel Composite Materials for AOP Applications,”
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“Mechanisms of Photocatalytic Reactions on Semiconductor Surfaces,”
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“Metal Oxide Nanostructures for Photocatalytic Remediation,”
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Date: December 12, 2021
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“Hybrid Materials for Photocatalytic Energy Applications,”
First Author: Ismail DAOUD
Date: September 25, 2020
Year: 2020

“Environmental Applications of AOPs: Progress and Challenges,”
First Author: Ismail DAOUD
Date: April 7, 2019
Year: 2019

“Investigating the Photocatalytic Efficiency of Semiconductors,”
First Author: Ismail DAOUD
Date: October 14, 2018
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“Fundamentals of Semiconductor Catalysis in Wastewater Treatment,”
First Author: Ismail DAOUD
Date: January 30, 2018
Year: 2018

 

 

Zhilin Xia | Environmental Chemistry | Best Researcher Award

Assoc. Prof. Dr. Zhilin Xia | Environmental Chemistry | Best Researcher Award

Hubei Engineering University, China

👨‍🎓Profiles

🎓 Early Academic Pursuits

Zhilin Xia embarked on his academic journey in 2010 at the China University of Mining & Technology, Beijing, where he completed his Bachelor’s Degree in 2014. His curiosity and commitment to the field of technology led him to pursue a Master's Degree at the same institution from 2014 to 2017. During this period, he deepened his knowledge in his chosen area, which prepared him for his future academic endeavors. Building upon his solid foundation, he advanced to the University of Chinese Academy of Sciences, where he pursued his Doctoral Degree from 2017 to 2021. His doctoral research expanded his expertise and led to significant discoveries that contributed to his field.

💼 Professional Endeavors

Zhilin Xia’s professional journey is marked by both academic research and industrial experience. In June 2021, he joined Shandong University as a Postdoctoral Researcher. Here, he honed his research skills, contributing to various projects and advancing the knowledge in his area of specialization. Simultaneously, from 2021 to 2023, he worked as an R&D Engineer at Shenzhen Changlong Technology Co., Ltd., bridging the gap between academia and industry. His work there reflected his ability to apply theoretical research to real-world challenges.

🔬 Contributions and Research Focus

Zhilin Xia’s research interests primarily focus on engineering and technology with a particular emphasis on advanced materials, nanotechnology, and energy systems. His work on material science and innovative manufacturing techniques has significant applications in sustainable energy solutions and environmental protection. As a postdoctoral researcher and R&D engineer, he has contributed to the development of novel materials and technologies, aiming to address global challenges in energy efficiency and environmental sustainability.

🌍 Impact and Influence

Zhilin Xia’s work has had a notable influence on both academic research and industrial applications. Through his postdoctoral research and collaboration with Shandong University and Shenzhen Changlong Technology Co., he has contributed to the development of new technologies that bridge academic theory with industrial practice. His academic insights and technical expertise are helping shape the future of engineering and technology innovation. His research, particularly in nanotechnology and energy systems, has the potential to create long-lasting impacts in the fields of renewable energy and environmental protection, making his contributions valuable to both academia and society.

📚 Academic Cites

Zhilin Xia’s research outputs have been widely recognized in the academic community, reflected in the citations of his published papers. These citations demonstrate the relevance and significance of his work in advancing knowledge in his field. His ability to contribute to high-impact journals has helped establish him as an expert, and his growing body of work continues to inspire new research directions.

🛠️ Technical Skills

Zhilin Xia’s academic and professional experience has equipped him with an extensive skill set, making him proficient in various analytical techniques and laboratory practices. His technical expertise includes: Nanomaterials Synthesis and Characterization, Energy System Optimization, Materials Engineering, Advanced Manufacturing Technologies, Data Analysis and Modeling. These skills are integral to his contributions to both research and industrial applications, especially in the development of cutting-edge technologies.

👨‍🏫 Teaching Experience

As an Associate Lecturer at Hubei Engineering University, Zhilin Xia has demonstrated a passion for educating and mentoring the next generation of engineers and researchers. His teaching philosophy emphasizes critical thinking, practical problem-solving, and a hands-on approach to learning. He actively guides students in their research projects and prepares them for real-world challenges by encouraging innovation and entrepreneurial thinking.

🌱 Legacy and Future Contributions

Looking forward, Zhilin Xia aims to continue his research and teaching efforts, pushing the boundaries of engineering and material science. His focus will remain on the development of sustainable technologies that address pressing environmental and energy challenges. Through his work, he hopes to leave a legacy of advancing scientific knowledge and fostering a new generation of innovative thinkers in the field of engineering and technology.

📖Notable Publications