Thomas Graham is an Assistant Professor and PhytoGro Research Chair in Controlled Environment Systems at the University of Guelph, where he also serves as R&D Manager for the Controlled Environment Systems Research Facility (CESRF). His academic journey includes a BSc in Environmental Sciences from the University of Guelph and Stirling University (1997), an MSc in Horticulture (2001), and a PhD in Environmental Biology (2012), all from the University of Guelph. He completed a NASA Post-Doctoral Fellowship (2012–2015) at Kennedy Space Center, focusing on bioregenerative life-support systems for space exploration. Dr. Graham’s research expertise spans controlled environment agriculture (CEA) , space biology , medicinal crop production , and water remediation . He leads projects addressing food security, crop diversification in urban farming, and sustainable practices for high-intensity agriculture. Key initiatives include developing CEA systems for medical crops, optimizing tree crops for spaceflight, and advancing composting-based closed-loop systems. His scientific contributions are reflected in roles as Associate Editor for Gravitational and Space Research and Editor for special issues on Agriculture in Space . He collaborates with NASA, USDA, OMAFRA, and international agencies like the German Space Agency (DLR). Awards include the NASA Post-Doctoral Research Fellowship. Dr. Graham emphasizes mentorship, conducting bi-weekly graduate meetings and fostering student autonomy while providing structured support. His lab integrates interdisciplinary approaches to tackle global challenges, from climate resilience to lunar food production.
Hannes Hick is a Professor at Graz University of Technology , affiliated with the Institute of Machine Elements and Development Methodology . His research focuses on mechanical development, tribology, and systems engineering for automotive and industrial applications. He actively contributes to engineering education and methodology standardization. Research Interests Hydrogen internal combustion engines System modeling and digital twins Tribology in electric drivetrains Sustainable engineering practices MBSE (Model-Based Systems Engineering) Friction and wear analysis Article Trends His recent work emphasizes hydrogen propulsion systems, model-based approaches for interdisciplinary engineering challenges, tribological optimization for sustainable mobility, and integrating AI with mechanical design workflows. Labs and Teams He leads research at the Institute of Machine Elements, focusing on mechanical validation and development methodologies for advanced powertrain systems.
Neel S. Joshi is an Associate Professor in the Department of Chemistry and Chemical Biology at Northeastern University's College of Science. His research focuses on engineered living materials, microbial engineering, and synthetic biology, with applications in gut therapeutics, bioremediation, and bioplastics. He leads the Joshi Lab, which develops materials from genetically programmed microbial cells, emphasizing self-healing, environmental responsiveness, and scalability. Education and affiliations include Northeastern University's Institute for Chemical Imaging of Living Systems, where he collaborates on imaging tools for disease diagnostics. Notable projects include compostable plastics and probiotic-based therapies for childhood diarrhea. Joshi has been recognized as a TIER1 Awardee for innovative research. His work bridges biomaterials science and synthetic biology, with media coverage highlighting breakthroughs like living materials for space habitats and biodegradable plastics. Awards and grants are not explicitly listed, but his lab's funding supports interdisciplinary projects. He advises students through Northeastern's graduate programs and collaborates with industry and academic partners. The lab also explores applications in wearable X-ray shielding and light-driven chemical production in yeast biohybrids.
John Reganold is a Regents Professor of Soil Science and Agroecology at Washington State University (WSU), affiliated with the Department of Crop and Soil Sciences within the College of Agricultural, Human, and Natural Resource Sciences (CAHNRS). He specializes in sustainable agriculture, soil health, and organic farming systems. Reganold holds a B.A. in German (1971), M.S. in Soil Science (1974), and Ph.D. in Soil Science (1980) from the University of California at Berkeley and Davis. He teaches courses including Organic Gardening/Farming, Advanced Soil Analysis, and oversees the 30-acre Eggert Family Organic Farm research initiative. His research focuses on measuring the sustainability of organic vs. conventional farming systems, with a focus on soil health, crop yields, environmental quality, and economic performance. Notable studies include the long-term impacts of farming systems on soil organic matter and the financial competitiveness of organic agriculture. Reganold has authored influential papers in Nature , PNAS , and Scientific American , emphasizing agroecology and perennial grain development. Reganold directs the Organic and Sustainable Agriculture undergraduate program (~25 students) and the Online Certificate in Organic Agriculture. His work integrates ecological principles with practical farming practices, advocating for policies that support sustainable agricultural transitions. Current projects explore climate change impacts on soil health and the role of perennial grains in future food systems. His teaching and research laboratories emphasize participatory learning and field-based experimentation. Recent collaborations include studies on biodegradable plastics in agriculture and the role of dung beetles in disrupting pest vectors. Reganold’s work bridges academia and practice, aiming to advance global food security while preserving environmental integrity.
Eric Roy is an Associate Professor at the Rubenstein School of Environment and Natural Resources, University of Vermont, and Director of the Casella Center for Circular Economy and Sustainability. He is also a Fellow at the Gund Institute for Environment. His research focuses on nutrient cycling, biogeochemistry, and ecological engineering to design sustainable systems for nutrient management in food, waste, and water systems. Education: Ph.D. in Oceanography & Coastal Sciences from Louisiana State University (2013), M.S. in Food, Agricultural & Biological Engineering from Ohio State University (2008), and B.S. in Mechanical Engineering from Old Dominion University (2006). Research interests include nutrient stewardship, circular bioeconomy, and nature-based solutions. His work integrates lab and field studies with modeling to explore nutrient dynamics in engineered, urban, and agricultural ecosystems. Key themes include improving nutrient use efficiency in food systems, resource recovery, and green infrastructure design. Teaching emphasizes ecological design in water quality, waste management, and food systems. His recent publications highlight advancements in phosphorus retention modeling, floodplain function analysis, and composting system optimization. He leads the Nutrient Cycling and Ecological Design Lab, advancing interdisciplinary solutions for environmental sustainability.
Anusuya Rangarajan is a Senior Extension Associate and Director of the Cornell Small Farm Program at Cornell University’s School of Integrative Plant Science, Horticulture Section. She specializes in sustainable farming practices, particularly reduced tillage and soil health management for vegetable production, and urban agriculture. Doctorate, Michigan State University (1995) Master of Science, University of Wisconsin (1989) BA/BS, Michigan State University (1986) Her research focuses on sustainability in vegetable production systems, emphasizing reduced tillage, cover crops, and compost to enhance soil health without compromising yield or quality. She collaborates with colleagues across the Northeast and Midwest, exploring impacts on weed and pest management, soil biology, and profitability. The selected articles reflect her expertise in sustainable agriculture, including organic practices, conservation tillage, and urban farming. Key themes include optimizing soil health, balancing ecological and economic viability, and adapting agricultural strategies to small-scale systems. As Director of the Cornell Small Farm Program, she organizes the biennial Small Farm Summit, secured competitive grants for beginning farmer development, local food systems, veterans in agriculture, and soil health initiatives. She leads a team of seven staff members, collaborating with Cornell Cooperative Extension and non-profits to deliver workshops, webinars, and educational materials.
Nanna Bloch Hartmann is a senior researcher at DTU Sustain (Technical University of Denmark) since 2015. She holds a PhD in ecotoxicology from DTU (2011) and has held postdoctoral roles at DTU Environment (2013–present), the European Commission’s Joint Research Centre (2011–2013), and Edinburgh Napier University (2009). Her research focuses on the environmental fate and effects of micro- and nanoplastics, with expertise in ecotoxicology, technical systems, and science communication. Education: PhD in Ecotoxicology, DTU (2007–2011) Guest PhD student, Edinburgh Napier University (2009) Research Interests: Mechanistic understanding of micro/nanoplastics’ fate, degradation, and effects in aquatic and technical systems Science communication to regulators, media, and the public Contributions to UN Sustainable Development Goals (SDGs 6, 12, 14). Grants & Projects: Combat Microplastics Pollution in the Baltic Sea (2024–2027) Sustainable Industrial Laundry Wastewater Treatment (2023–2027) Risk Evaluation of Micro/Nanoplastics (2022–2026) Recognition: Listed among Stanford’s top 2% global scientists (2021–2022). Active in promoting gender equality through roles in DTU’s Women in Engineering Science network and Equality Steering Group (2015–2018).
Peter Irga is a Senior Lecturer and ARC DECRA Fellow at the University of Technology Sydney's School of Civil and Environmental Engineering, Faculty of Engineering and Information Technology. He is globally recognized as a leader in nature-based biological air treatment technologies, particularly green wall systems (Phytosystems), with current worldwide ranking #1 in his research topic (SciVal Topic T.37087). Dr Irga's research focuses on innovative nature-based solutions for urban air pollution challenges, including phytoremediation technologies, biosolar green roofs, and agrivoltaics. His work bridges environmental engineering with practical urban applications, examining the performance of nature-based systems in real-world settings to quantify their value and identify development opportunities. His research demonstrates how living infrastructure provides cities with natural beauty while improving human health and wellbeing, addressing UN Sustainable Development Goals 11 (Sustainable Cities), 13 (Climate Action), 15 (Life on Land), and 3 (Good Health). His research portfolio includes 80+ publications with an H-index of 30 and $5.21M in research income, including ARC funding. Industry recognition includes $4.54M in high-level consultancies. His work spans multiple disciplines including atmospheric science, environmental engineering, and sustainable materials development, with particular emphasis on practical implementation of green infrastructure solutions in urban settings. Tall Poppy Science Award (2022) from the Australian Institute of Policy and Science ARC DECRA Fellow (2021-2024) Chancellor's Postdoctoral Research Fellow (2018-2021) Dr Irga actively supervises Masters and PhD students and coordinates Postgraduate Environmental Engineering and Water Engineering programs. His funded research includes Sustainable High-Performance Transitory Structures using Biobased Materials (2025-2026), Bradfield Green and Bio-Solar Roof Monitoring (2025), and Plantabox for Targeting the Urban Heat Island Challenge (2024-2025). He collaborates with industry partners including Junglefy, Ambius, Bradfield Development Authority, and City of Sydney.
Dr. Gwendolyn Hustvedt is a Professor in the Fashion Merchandising department at Texas State University’s School of Family & Consumer Sciences. Her research focuses on sustainable textiles, consumer behavior regarding eco-labeling and ethical production, and STEM education through home economics. She leads projects such as a USDA-funded study on eco-labeling for US animal fiber products and collaborates with institutions like Kansas State University and the University of Delaware. Her teaching includes Textile Science and Textile Product Analysis courses, as well as an honors course on sustainable textile supply chains. Dr. Hustvedt has received awards including the 2023 American Association of Family & Consumer Sciences Leader Award and the 2014 Presidential Distinction Award for Scholarship. She serves as President of the International Federation for Home Economics, advocating for holistic sustainability education and underrepresented groups in STEM careers. Her grants total over $750,000, supporting initiatives like climate change adaptation in Hispanic families and integrating sustainability into higher education curricula. Her research spans consumer preferences for sustainable apparel, textile innovation (e.g., UV-protective fabrics), and waste reduction through wool composting. Current projects include in vivo experiments on textiles for skin cancer prevention and collaborations with Texas natural fiber producers. She chairs events like Sustainable Fashion Week and coordinates Fashion Merchandising programs, emphasizing community engagement and industry partnerships.
Professor Luke Connal is a full professor at the Research School of Chemistry at the Australian National University (ANU), where he leads the Connal Group. He joined ANU in 2017 after serving as a Senior Lecturer at the University of Melbourne. Currently, he holds an ARC mid-career industry fellowship and serves as the chair of the Royal Australian Chemical Institute (RACI) polymer division. Professor Connal is also an associate editor for the Royal Society of Chemistry journal "Molecular Systems Design and Engineering" and co-founder of two spin-out companies focused on polymer technologies. Professor Connal received his Bachelor of Chemical Engineering and PhD in polymer chemistry from the University of Melbourne, Australia. Following his doctoral studies, he completed a post-doctoral position with Professor Frank Caruso at the University of Melbourne, developing new techniques for the self-assembly of polymers. He then held a joint Sir Keith Murdoch postdoctoral Fellowship and Australian Linkage International Fellowship at the University of California, Santa Barbara, working with Professor Craig Hawker. Professor Connal's research focuses on the development of molecular design concepts to create new materials for diverse applications, including artificial skin and tissues, sustainable polymers and surfactants, additive manufacturing electronics, and water harvesting. His core competencies center around advanced polymer design, self-assembly, and catalysis . His group explores four main research themes: Catalysis, Functional Materials and Interfaces, Soft Matter, and Supramolecular Chemistry . They develop innovative materials such as enzyme-inspired polymer catalysts, smart polymers for 3D printing, and polymer electrolytes for energy storage applications. Analysis of Professor Connal's recent publications reveals a strong focus on developing biomimetic materials and responsive polymers. His work bridges fundamental polymer chemistry with practical applications in environmental remediation, healthcare, and sustainable technologies. A notable trend is the increasing emphasis on CO2 capture technologies through enzyme-inspired catalysts and hydrogel systems. His group has also made significant contributions to 3D printing of functional materials , particularly self-healing gels and pH-responsive polymers. The research demonstrates a consistent trajectory toward creating smart, responsive materials with applications addressing global challenges in sustainability and healthcare. David Syme Research Prize (2020) Grimwade Prize in Industrial Chemistry (2019) Professor Connal actively supervises multiple PhD students including Lilian Boton, Jason Buchanan, Sandra Jestin, Saif Rahaman, Peidong Shen, Ming Li Tan, Moki Thanusing, and Jekaterina Viktorova. His current research is supported by several significant grants including projects on sustainable and compostable plastic alternatives, multimaterial 3D printed antenna arrays, developing vitrimers as next-generation reusable plastics, multi-material 3D printing, and smart materials for atmospheric water management. These projects demonstrate his commitment to translating fundamental polymer research into practical solutions for environmental and technological challenges. The Connal Group at ANU operates at the intersection of polymer chemistry and materials science, developing innovative solutions across multiple domains. Their laboratory work focuses on creating new polymers with applications spanning artificial skin development, sustainable packaging alternatives, atmospheric water harvesting, and advanced electronics. The group's unique approach combines biomimicry principles with cutting-edge polymer synthesis techniques to create materials with precisely controlled properties. Current projects include developing strong and self-healing polymer materials for biological applications, expanding 3D printing capabilities for functional materials, creating fully recyclable or compostable plastics, and designing thermoresponsive polymer desiccants for sustainable water harvesting.
Professor Simon Pollard OBE DIC PhD DSc FREng FHEA is a Professor of Environmental Risk Management at Cranfield University's School of Water, Energy and Environment. With over 20 years of service at Cranfield, he has held numerous leadership positions including Pro-Vice Chancellor for the School of Water, Energy and Environment (2014-2021) and Pro-Vice-Chancellor International (2018-2024). He has served on the University's Executive for a decade and chaired key committees including Cranfield's Board for Energy and Environment, Health and Safety Committee, and International Committee. As an environmental engineer, Professor Pollard earned his PhD from Imperial College and his DSc from Cranfield University. His academic journey has positioned him as a leading authority in environmental risk governance, with significant contributions to government guidelines on environmental risk and leadership of risk centers for EPSRC and NERC. Professor Pollard's research focuses on environmental risk governance, preventative risk management, and regulatory design, with recent work exploring risk governance in the international water sector. His scholarship directly addresses the green economy, seeking to reconcile society's concerns about pollution with organizational responsibilities for safe management. His work spans carbon and climate risk, environmental policy, corporate sustainability, waste management, and resource efficiency. His extensive publication record demonstrates expertise across environmental engineering, risk assessment methodologies, water utility management, and sustainable waste practices, consistently bridging theoretical frameworks with practical applications. Professor Pollard has been honored with several prestigious awards including: Order of the British Empire (OBE) in 2020 Fellowship of the Royal Academy of Engineering (FREng) Fellowship of the Higher Education Academy (FHEA) Professor Pollard has served in numerous advisory capacities beyond academia, including membership on the Government's Interdepartmental Liaison Group on Risk Assessment, the joint engineering institutions' Hazards Forum, and BBSRC's Beringer Panel. As editor of Science of the Total Environment for 16 years, he has significantly influenced environmental research publication standards. His international engagement includes visiting professorships at the University of South Australia, Jiangsu University, and most recently, the University of Salerno (2024). Professor Pollard has led significant initiatives in responsible internationalization, resetting Cranfield's approach to academic partnerships amid changing geopolitical climates and renewing the university's approach to knowledge diplomacy. His work has directly influenced UUKi's commitment to international postgraduate education.
Marilia Chiavegato is an Assistant Professor at The Ohio State University, holding a split appointment in the Department of Animal Sciences and the Department of Horticulture and Crop Science. She specializes in agroecosystem sustainability, focusing on crop-livestock integration, grazing systems, and environmental impact assessment. Her work emphasizes climate change adaptation through multi-year analysis of large-scale datasets. Education: Ph.D. in Animal Sciences, Michigan State University (2014) M.S. in Applied Chemistry to Agriculture and the Environment, University of São Paulo (2010) B. Eng. in Agronomic Engineering, University of São Paulo (2008) Research Interests: Resilience of agroecosystems under climate change Greenhouse gas emissions monitoring Grazing management strategies Integrated crop-livestock systems Soil carbon sequestration Recent Work Trends: Dr. Chiavegato’s research bridges field-scale analysis with environmental pressures, focusing on mitigating emissions while enhancing productivity. Recent studies include grazing management’s impact on methane/nitrogen dynamics and biochar’s role in sustainable agriculture. Advising & Grants:** Advises students in Animal Sciences and Horticulture/Crop Science. Research funding sources include USDA grants and collaborative initiatives on sustainable farming. Labs/Teams:** Collaborates with Ohio State’s Agricultural Research and Development Center and Extension programs to translate research into practical farm solutions.
Professor Nicole Koenig-Lewis is a leading academic in Marketing at Cardiff Business School , with affiliations to the Centre for Climate Change and Social Transformations (CAST) and the International Society for the Circular Economy (IS4CE) . Her career spans over two decades, including roles at Swansea University and Cardiff University, culminating in her current professorship since 2023. Professor of Marketing - Cardiff Business School (2023-present) Reader in Marketing - Cardiff Business School (2018-2023) Senior Lecturer - Cardiff Business School (2016-2018) Research Focus : Her work bridges Sustainable Consumption , Access-Based Consumption , and Consumer Behavior Change , particularly through Sport/Cultural Events and Circular Economy frameworks. Recent projects include developing sustainability toolkits for rugby events and analyzing the psychological drivers of eco-packaging adoption. Publication Trends (2025-2019): Over 40 publications in journals like Journal of Business Research , European Journal of Marketing , and Journal of Environmental Psychology , with recurring themes in Behavioral Indicators , Event Sustainability , and Circular Consumption . Scientific Recognition : Recipient of multiple ESRC/UKRI grants, Outstanding Contribution Awards , and Best Paper Prizes . Notably led interdisciplinary teams to Highly Commendable 'Outstanding Partnership Impact' (2025) and 'Excellence in Environmental Sustainability' (2022) . Supervised 9 PhD students (current and past) Co-led 7 sustainability toolkits/conference impact projects Contributed to Routledge Companion to Marketing & Sustainability (2025) Labs & Collaborations : Co-founded the Cardiff University Festival Research Group , collaborating with organizations like The R&A , Pledgeball , and Welsh Government to transform events into sustainability catalysts. Currently mentors 4 active PhD students in circular economy and behavioral change.
Prof. Wojciech Sobieski is a faculty member at the Department of Mechanics and Fundamentals of Machine Design within the Faculty of Technical Sciences at the University of Warmia and Mazury in Olsztyn . His research focuses on fluid mechanics, numerical modeling, and porous media analysis, with applications in environmental engineering, hydraulic systems, and 3D printing. Academic Rank: Professor Scientific Discipline: Mechanical Engineering Key Research Areas: Tortuosity Analysis, Multiphase Flow, DEM Simulations His recent publications highlight advancements in computational methods for granular porous media, fluid flow modeling, and thermodynamic applications. Notable trends include the use of the Waterfall Algorithm for geometric analysis and sensitivity studies of numerical models like the Eulerian multiphase approach. He has contributed to understanding Forchheimer's laws and cavitation phenomena in hydraulic systems. Prof. Sobieski oversees the PathFinder Project , a research initiative focused on numerical modeling of porous media. His laboratory maintains infrastructure for multiphase flow simulations and particle-scale modeling. He has supervised 2 doctoral students to completion but currently has no active advisees.
Mariam Abdulkareem is a Postdoctoral Researcher at the School of Energy Systems, Lappeenranta University of Technology (LUT), specializing in Sustainability Science, with additional affiliation at the Natural Resources Institute Finland (LUKE). Her work bridges environmental technology and practical sustainability solutions for industrial and municipal systems. Her academic foundation includes: Doctoral degree in Sustainability Science from Lappeenranta University of Technology (2018-2021) Master's degree in Sustainability Science from Lappeenranta University of Technology (2015-2017) Dr. Abdulkareem's research centers on environmental technology and circular economy implementation , employing advanced life cycle assessment (LCA) methodologies to evaluate waste management systems, sustainable materials, and renewable energy integration. She focuses on quantifying environmental trade-offs in emerging technologies like printed electronics and industrial by-product valorization, with particular emphasis on end-of-life management and resource efficiency optimization. Her cross-disciplinary approach integrates ecological modeling with engineering solutions to address real-world sustainability challenges. Analysis of her 15 most recent publications (2021-2025) reveals a concentrated research trajectory in waste valorization and sustainable materials , with dominant themes including LCA of printed electronics waste streams, geopolymer concrete development from industrial side streams, and comparative analysis of recycling versus incineration pathways. Her work consistently applies multi-objective optimization frameworks to balance environmental performance, economic feasibility, and technical functionality across diverse regional contexts.