Kong Lingchao , a Research Assistant Professor at Southern University of Science and Technology (SUSTech) , is a Shenzhen Overseas High-Level Talent (Category C) with expertise in water pollution control technologies and nitrogen-phosphorus geochemistry. His work combines Theoretical research on element cycling Applied innovation in environmental remediation Development of functional materials Single-cell Raman-isotope methodologies Research highlights include leading 7 funded projects such as: NSFC project on phosphate-solubilizing bacteria Shenzhen Innovation Talent Project Key Technology R&D Program of Shenzhen State Key Laboratory Open Project and 2 patents on phosphorus removal materials. His recent publications focus on: Nanofiber-based composite materials Layered double hydroxides (LDH) systems Photocatalytic membranes MXene applications in Fenton systems with over 30 SCI publications (H-index 21) . Scientific service includes: Young Editorial Board Member of Sustainable Horizons Peer reviewer for Chemical Engineering Journal Environmental Science & Ecotechnology Applied Clay Science
Professor Ian Mabbett is a Chemistry Professor at Swansea University's School of Engineering and Applied Sciences and Deputy Pro Vice Chancellor for Research Culture. As Director of the Morgan Advanced Studies Institute (MASI) since 2024, he leads transdisciplinary research initiatives addressing global challenges. Key Affiliations: Deputy Pro Vice Chancellor for Research Culture Director, Morgan Advanced Studies Institute (MASI) Core member of SPECIFIC Innovation and Knowledge Centre Research Leadership: Principal investigator for SUNRISE network (2020 THE Award winner) Developed Swansea University's Chemistry departmental structure His research spans rapid radiative curing of industrial coatings , energy materials (photovoltaics, storage systems), and sanitation technology for developing nations. He pioneered applications of near-infrared processing in materials synthesis and corrosion protection. Recent publications focus on biochar applications in agriculture, plasmonic photocatalysts for pharmaceutical waste treatment, and hydrogen production from industrial off-gases. His work integrates materials chemistry with systems approaches to climate change . Scientific Recognition: FRSC (Fellow of Royal Society of Chemistry) FIMMM (Fellow of Institute of Materials, Minerals & Mining) Recipient of Queen’s Anniversary Prize with SPECIFIC team As an educator, he leads modules like CH-010 Reactions and Products and CH-414 Scientific Innovation & Entrepreneurship , emphasizing industry collaboration and responsible research practices . He supervises PhD/EngD projects on sustainable building materials , carbon capture , and renewable energy systems .
Gregory Peters is a Full Professor at Chalmers University of Technology in the Department of Environmental Systems Analysis. His research focuses on expanding the application of sustainability assessment tools and improving their accuracy across multiple industries including clothing, water, agriculture, and chemicals. Environmental Systems Analysis Department, Chalmers University of Technology Specializes in Life Cycle Assessment methodology and applications Active researcher with over 130 publications Peters' research interests center on sustainability assessment tools, with particular expertise in Life Cycle Assessment (LCA) methodology development and application. His work spans multiple sectors including textile industry sustainability, water management systems, chemical risk assessment, and nutrient cycling. He has made significant contributions to understanding the environmental impacts of clothing consumption, wastewater treatment, and chemical substances, with a focus on improving assessment methodologies for more accurate sustainability evaluation. Analysis of Peters' recent publications reveals a strong trend toward addressing complex environmental challenges through integrated assessment approaches. His work frequently combines Life Cycle Assessment with other methodologies to evaluate textile sustainability, chemical risks, water systems, and nutrient management. A notable pattern is the application of LCA to consumer behavior, particularly in laundry practices, where he examines the disconnect between self-reported and actual behavior. His research increasingly focuses on circular economy solutions, including nutrient recovery, textile recycling, and innovative treatment technologies for wastewater and sludge. Peters leads or participates in numerous research projects funded by Formas, the European Commission, and industry partners. Key projects include SIDWater (Sustainable innovative drinking water treatment solutions), ZeroPM (Zero pollution of Persistent, Mobile substances), and The Future of the Laundry. These projects address critical environmental challenges through interdisciplinary approaches combining technical and behavioral solutions. As an educator, Peters teaches life cycle assessment and environmental science to university students while also delivering education and peer-review services to industrial clients. His work bridges academic research with practical applications for industry and policy development.
Myung Chae Jung is a Professor in the Department of Energy Resources and Geosystems Engineering at Sejong University, South Korea, specializing in environmental contamination and remediation. His work addresses critical challenges in post-mining landscapes and agricultural systems affected by industrial activities. His academic foundation includes: B.S. from Seoul National University (1989) M.S. from Seoul National University (1991) Ph.D. from Imperial College London (1995) Professor Jung's research centers on heavy metal behavior and remediation across environmental matrices. He investigates metal(loid)s in mining-impacted soils, water systems, and agricultural products, with particular focus on arsenic contamination in paddy ecosystems. His methodology integrates sequential extraction techniques, advanced spectroscopy (ICP-MS), and field studies to assess bioavailability, mobility, and food chain transfer. Current projects emphasize biochar-based immobilization technologies and microbial community approaches for sustainable soil restoration in contaminated agricultural lands. Analysis of his publication record (49 outputs, 2496 citations) reveals consistent focus on heavy metal immobilization using soil amendments, especially biochar applications in agricultural contexts. His work demonstrates strong regional relevance to Korean mining areas while addressing global challenges in food safety (rice contamination) and industrial pollution (smelter emissions). Methodologically, he combines geochemical analysis with ecological risk assessment, frequently employing sequential extraction and advanced microscopy techniques to characterize contaminant behavior in complex environmental systems.
Antonino Martorana is a Professor at the University of Palermo , affiliated with the School of Basic and Applied Sciences . He teaches courses such as Solid-State and Inorganic Materials Chemistry and Fundamentals of Chemistry , focusing on advanced materials for energy applications and structural analysis. Research Interests: His work spans materials chemistry, solid-state physics, and proton conductors, with emphasis on X-ray spectroscopy and nanostructured materials. Awards: No specific scientific awards are mentioned in the provided data. Students: He has supervised numerous theses on topics including solid oxide fuel cells, thermoelectric applications, and perovskite hybrids. Contact: Email: antonino.martorana@unipa.it | Phone: +3909123897953 Office Hours: Available Monday to Friday, 3:30 PM–5:30 PM at Viale delle Scienze, Building 17.
Professor Konstantinou Ioannis is affiliated with the Department of Chemistry at the University of Ioannina. He specializes in environmental chemistry and pollution control technologies. Environmental Catalysis Photocatalysis Antipollution technology Material science Advanced oxidation processes His research focuses on developing catalytic and adsorbent materials for pollutant degradation, optimizing analytical methods for environmental monitoring, and advancing green chemistry solutions. Recent work includes visible light-responsive photocatalysts and mass spectrometry-based pollutant identification. Key publications address Cr(VI) adsorption using waste tire chars, herbicide degradation in soil systems, and pharmaceutical removal from hospital wastewater via photocatalytic processes. Contact: iokonst@uoi.gr | Phone: 2651008349 | Office: X2-211c, University of Ioannina Campus
Maria Louloudi is a Professor in the Department of Chemistry at the University of Ioannina, where she has served since 1996, advancing to full Professor in 2012. She currently holds the position of Department President (2018-present) and leads the Biomimetic Catalysis & Hybrid Materials Laboratory. Her career progression includes Lecturer (1996-2001), Assistant Professor (2001-2004), Permanent Assistant Professor (2004-2007), Associate Professor (2007-2012), and Professor (2012-present). Degree in Chemistry, University of Ioannina (1986) Ph.D., Department of Chemistry, University of Ioannina (1992) Post-doctoral Research, University of Rene Descartes, CNRS (1993-1995, EU Human Capital and Mobility Fellowship) Postdoctoral Fellow, University of Ioannina (1996, EU Return Grant) Her research specializes in bimimetic catalysis and hybrid organic-inorganic materials , with focus areas including hydrocarbon oxidation using metal complexes (Mn, Fe, Cu), CO 2 reduction, H 2 production from formic acid, catalytic degradation of pollutants, and surface modification of silica/carbon materials. She employs advanced techniques like EPR spectroscopy to study catalytic mechanisms and has pioneered the use of recycled carbon materials for environmental applications. Her work bridges fundamental inorganic chemistry with industrial/environmental technologies. Analysis of her 15 most recent publications reveals a strong emphasis on hydrogen production catalysis (6 articles), hybrid material design (5 articles), and environmental remediation (4 articles). Key trends include the development of sustainable catalysts using waste-derived materials, mechanistic studies of spin-state changes in iron catalysts, and engineering of ternary photocatalytic systems for water splitting. EU Human Capital and Mobility Fellowship EU Return Grant Professor Louloudi has supervised 29 postgraduate students (11 PhD, 18 Master's) and 2 postdoctoral researchers. Her research is funded by major grants including 7 L'OREAL Paris projects (2015-2021), SYNERGASIA (2012-2015), THALIS (2012-2015), and NATO collaborations. She serves as a reviewer for top journals including Journal of Materials Chemistry and ACS Catalysis, and evaluates proposals for Greek, Dutch, and Austrian funding agencies. She founded and directs the Biomimetic Catalysis & Hybrid Materials Laboratory, which focuses on molecular catalyst design, surface modification of materials, and development of heterogeneous catalysts for industrial applications. Her team collaborates internationally with institutions in Russia, China, France, and the USA, and has organized major conferences including the 15th Panhellenic Symposium of Catalysis (2018).
Jean-François LARGEAU is a Teacher-researcher at IMT Atlantique Nantes, affiliated with the GREEN team and the Department of Energy Systems and Environment (Département Systèmes Énergétiques et Environnement) at Institut Mines-Télécom. He has been an associate researcher at GEPEA since 2014 and maintains strong connections with Icam where he began his academic career in 2011. His educational background includes a Master's degree in Fluid Mechanics and Turbulence from the University of Poitiers, followed by a doctorate in Acoustics and Dynamics of Unsteady Flows in 2004. Prior to entering academia, Dr. LARGEAU gained valuable industry experience working for R&D support companies serving major industrial groups and later with the Trelleborg/Tristone group in the automotive plastics industry. Dr. LARGEAU's research focuses on the energy recovery of waste through thermochemical processes, particularly pyrolysis and gasification to produce alternative fuels. His work aims to optimize the pyro-gasification process through both experimental studies on prototypes and comprehensive modeling approaches. His recent publications demonstrate a strong emphasis on converting various biomass wastes and challenging materials like used tires and petroleum sludge into valuable energy products. His research output shows a clear progression toward more sustainable waste-to-energy solutions, with particular attention to orange peels, agro-food wastes, and other abundant biomass resources. The work often combines experimental characterization with advanced modeling techniques to understand the fundamental processes and optimize conversion efficiency. 31 publications with 10,386 reads and 464 citations Active research in biomass energy, biofuels, biogasification, and biogas production Focus on practical applications of waste-to-energy technologies Dr. LARGEAU's advisory work appears to focus on graduate students involved in energy systems research, particularly those working on waste conversion technologies. His collaborations span multiple institutions, with strong ties to Mohand Tazerout's research group. His laboratory work centers on experimental studies of pyrolysis and gasification processes, with facilities for prototype testing and material characterization. The research group appears to have active projects on various waste streams including biomass wastes, used tires, and petroleum sludge.
Professor Arul Arulrajah is a distinguished academic and researcher at Swinburne University of Technology, where he leads the Geotechnical Engineering group within the School of Engineering. With over 14 years of industry experience prior to joining academia in 2006, he brings practical insights to his research and teaching. His research expertise spans sustainable geotechnics, recycled waste materials, ground improvement techniques, pavement and railway geotechnics, land reclamation, and dredging. Professor Arulrajah has pioneered innovative approaches to incorporating recycled materials into civil infrastructure, developing sustainable alternatives to conventional construction methods that align with global sustainability goals. His publication record is exceptional, with 400+ journal publications and 100+ conference papers, reflecting his significant contributions to the field. With an H-index of 85 in Google Scholar, his work has substantial academic impact and practical relevance, as evidenced by numerous industry collaborations and real-world implementations of his research findings. Professor Arulrajah's research has been recognized with prestigious international awards including the Telford Premium Award from the Institution of Civil Engineers (UK) in 2021 and 2009, the Chair Professor Award from Thailand's National Science and Technology Development Agency (2020), and the Shamsher Prakash Prize for Excellence in Geotechnical Engineering (USA, 2010). He has successfully secured AUD$17.3 million in research funding through 43 projects, including multiple Australian Research Council grants, demonstrating strong support for his innovative research directions. His current projects continue to advance sustainable infrastructure solutions through novel applications of recycled materials and innovative construction techniques. As an educator, Professor Arulrajah has supervised 32 PhD students to completion (25 as principal supervisor) and continues to mentor the next generation of civil engineers. His teaching focuses on geotechnical design, bridging theoretical knowledge with practical applications developed through his extensive industry and research experience.
Stefano Gialanella is an Associate Professor at the Department of Industrial Engineering, University of Trento. He serves as the Rector's delegate for Student Welfare and the Student Community and presides over the Joint Committee for the Right to Study. Expertise: Archaeometry, Metallurgy, Composite Materials, Electron Microscopy Teaching: Archeometria (Humanities Department), Metallurgy, Materials Selection for Engineering Design His research bridges industrial engineering and cultural heritage conservation, focusing on advanced material characterization techniques and sustainable engineering solutions. Recent work examines brake material emissions, shape memory alloys, and nanocrystalline material analysis. Teaching activities emphasize material science fundamentals, manufacturing technologies, and non-destructive testing methods.
Ingvar Albinsson is a Lecturer in the Department of Physics at the University of Gothenburg, Sweden. His professional activities are centered around research in photovoltaic technologies and energy materials, with numerous publications spanning from 2016 to the present. Dr. Albinsson's research interests focus on advancing solar energy conversion technologies, particularly dye-sensitized solar cells (DSSCs) and quantum dot solar cells. His work explores multiple aspects of these technologies including photoanode optimization with TiO2 nanoparticles, development of novel electrolytes (especially gel polymer and quasi-solid-state systems), counter electrode materials, and the incorporation of nanomaterials to enhance solar cell efficiency. He has published extensively on sustainable approaches using bio-derived materials like coconut shell charcoal and Jack wood biochar for energy applications. His publication record shows consistent research activity with numerous collaborative papers appearing annually in high-impact journals such as Journal of Materials Science, Electrochimica Acta, and Physical Chemistry Chemical Physics. The analysis of his recent publications (2020-2025) reveals a strong focus on optimizing solar cell components through nanomaterial engineering, with particular attention to sustainable and cost-effective solutions. Dr. Albinsson works within a strong collaborative network, primarily with researchers from Sri Lanka and other Swedish institutions, particularly with B.-E. Mellander. His research has practical implications for developing more efficient and sustainable solar energy technologies.
Dr. Mohd Ariff Ahmad Nazri is a Senior Lecturer in the Department of Civil Engineering at Tun Hussein Onn University of Malaysia (UTHM) in Batu Pahat, Johor. He leads an active research laboratory focused on hydrological and environmental engineering challenges. Research Interests: His work spans: Water Resources Engineering with emphasis on tropical hydrology Groundwater dynamics including exploration, contamination, and treatment Water quality assessment using chemical and biological indicators Environmental monitoring techniques for Malaysian watersheds Sustainable water solutions like rainwater harvesting and green infrastructure Thematic analysis of his 15 most recent publications (2018-2024) reveals dominant research threads: 58% focus on groundwater characterization/remediation using geophysical and isotopic methods, 27% address surface water quality assessment through chemical/biological monitoring, and 15% develop sustainable water technologies like bioadsorbents and green roofs. His studies consistently feature Malaysian case studies with strong field-data components. Dr. Nazri's lab employs advanced techniques including: Electrical Resistivity Imaging for aquifer mapping Isotope measurements for water interaction studies Carbonization processes for water treatment materials Hydrological modeling and statistical trend analysis
Dr. Jelena Parlov Vuković is a Research Associate at the NMR Center of the Ruđer Bošković Institute in Zagreb, Croatia. She holds a PhD in Natural Sciences (Chemistry) from the University of Zagreb (2011) and a Bachelor's degree in Chemical Engineering from the Faculty of Science, University of Zagreb (1997). Her research focuses on NMR spectroscopy applications in petroleum analysis, biofuels research, and biomass characterization. Ruđer Bošković Institute, NMR Center (current primary affiliation) Faculty of Science, University of Zagreb (teaching appointment) University of Hohenheim (GRACE Horizon Project collaboration) INA d.d. (Biorefinery Project collaboration) Dr. Parlov Vuković's research expertise centers on NMR spectroscopy applications for characterizing complex chemical systems. Her work spans petroleum analysis (particularly crude oil stability and asphaltene aggregation), biofuels research (including biodiesel purification and characterization), and biomass valorization. She has developed innovative NMR-based methods for fuel analysis, for which she received the INOVA 2006 Gold medal. Her recent work increasingly focuses on sustainable applications of NMR in biorefinery processes and waste valorization. Analysis of her recent publications (2022-2025) reveals a strong research trajectory with consistent output in high-impact journals. Her work demonstrates expertise in applying NMR spectroscopy to solve practical problems in petroleum chemistry, biofuels development, and biomass characterization. The publications show a clear progression from fundamental NMR methodology development to applied research in sustainable energy and waste valorization. INOVA 2006 Gold medal for development of method for determining benzene content using NMR spectroscopy Dr. Parlov Vuković has supervised 2 doctoral dissertations and 7 master's theses, demonstrating her commitment to academic mentoring. She is actively involved in multiple research projects including the current IPS-2023-02 project on valorization of vegetable oil industry residues. Her work is supported by Croatian Science Foundation grants, Horizon 2020 funding, and industry partnerships with INA d.d. As a core member of the NMR Center at Ruđer Bošković Institute, Dr. Parlov Vuković contributes to one of Croatia's leading NMR research facilities. She plays a key role in organizing the Adriatic NMR Conference series and serves as an editor for conference proceedings, helping to establish Croatia as a regional hub for NMR research.
Paul Akangah serves as an Assistant Professor of Instruction in the Department of Mechanical Engineering at North Carolina A&T State University's College of Engineering. With a robust academic background including a Ph.D. in Mechanical Engineering from North Carolina A&T State University, he brings extensive expertise in composite materials, wave energy systems, and structural engineering to his teaching and research. His educational journey includes multiple advanced degrees: a Ph.D. in Mechanical Engineering (2011) focusing on "Impact Damage Resistance and Tolerance of Nano-fiber Reinforced Composite Laminates," an M.S. in Mechanical Engineering (2005) from KTH Royal Institute of Technology on "Application of Cleaner Production in Ghana," another M.S. in Mechanical Engineering (1997) from Norwegian University of Science & Technology on "Intelligent Condition Monitoring and Diagnosis of Rotating Machinery," and a B.S. in Mechanical Engineering (1993) from Kwame Nkrumah University of Science & Technology on "Automation of Conventional Lathe Machine." Dr. Akangah's research spans several critical engineering domains with particular emphasis on composite materials, wave energy conversion, and computational modeling. His fingerprint analysis reveals strong contributions in Engineering (100%), Machine Learning Algorithms (50%), Finite Element Analysis (36%), and specialized areas including delamination, tangential stress, structural effects, and biochar applications. His recent publications demonstrate a clear trajectory toward sustainable energy solutions and advanced materials research. His recent scholarly output shows significant activity in renewable energy systems, particularly wave energy conversion, alongside continued work in composite materials and engineering education. The pattern indicates a strategic focus on addressing sustainability challenges through engineering innovation while maintaining strong contributions to mechanical engineering education. Dr. Akangah actively contributes to academic service as a book reviewer (2020-2021), session chair (2019), and professional service officer (2018-2019). His teaching portfolio includes Advanced Strength of Materials, Applied Thermodynamics, Conduction Heat Transfer, and Doctoral Dissertation supervision. His teaching responsibilities include Advanced Strength of Materials, Applied Thermodynamics, Conduction Heat Transfer, and Doctoral Dissertation supervision. His professional service includes book reviewing and session chairing at academic conferences, demonstrating his engagement with the broader academic community.