Niloufar Salehi – Circular Economy Implementation – Best Researcher Award

Niloufar Salehi - Circular Economy Implementation - Best Researcher Award

KTH Royal Institute of Technology - Sweden

AUTHOR PROFILE

SCOPUS

NILOUFAR SALEHI 🎓

Niloufar Salehi is a dedicated PhD candidate specializing in Circular Manufacturing Systems at KTH Royal Institute of Technology, Stockholm, Sweden. With over five years of experience, she has developed data-driven decision-support tools aimed at facilitating the transition of manufacturing systems to sustainable and circular practices. Her strategic thinking and strong analytical skills have enabled her to tackle complex problems and contribute significantly to her field. Committed to a sustainable future, she aspires to develop innovative solutions that expand academic knowledge in circular manufacturing.

PROFESSIONAL EXPERIENCE 🏢

As a PhD candidate, Niloufar has led data-gathering efforts for several successful European project proposals, significantly contributing to their writing and coordination. Her work in Horizon Europe’s DiCiM project highlights her ability to manage synergies among demonstrators while overseeing impactful dissemination efforts. Through her involvement in the H2020 ReCiPSS project, she has played a crucial role in implementing circularity principles across major industries, such as automotive and white goods manufacturing.

RESEARCH AND DEVELOPMENT 🔍

Niloufar’s research focuses on enhancing Circular Manufacturing Systems through multi-method simulation models. She has designed workshops and analyzed data to create comprehensive “as-is” and “to-be” scenarios, enabling companies to transition from linear to circular supply chains effectively. Her contributions include developing simulation-based decision-support tools that assess the economic, environmental, and technical performance of stakeholders involved in these supply chains, leading to actionable insights for management teams.

TEACHING AND SUPERVISION 📚

Niloufar is also committed to education, having taught courses on Circular Manufacturing Systems at both the master's and PhD levels. She has supervised multiple theses, guiding students in critical research areas related to sustainability and circularity in manufacturing. Her passion for teaching and mentoring has fostered an environment of academic growth and innovation within her department, inspiring the next generation of engineers and researchers.

COLLABORATIVE INITIATIVES 🤝

Throughout her career, Niloufar has established strong collaborations with international universities and research institutes, resulting in impactful publications and innovative projects. Her modeling skills have been recognized in various collaborative publications, showcasing her expertise in system dynamics and the evaluation of competitive scenarios in the circular economy. Her work reflects a commitment to promoting knowledge sharing and partnership within the academic community.

CONTRIBUTIONS TO SUSTAINABILITY 🌱

Niloufar’s dedication to sustainability extends beyond her academic achievements. She has actively participated in initiatives aimed at reducing industrial carbon footprints and enhancing climate change commitments in her home country, Iran. Her research in anaerobic digestion and techno-economic analysis underscores her commitment to finding sustainable solutions that address real-world environmental challenges. Through her work, she aims to drive meaningful change in manufacturing practices towards a more circular and sustainable future.

FUTURE ASPIRATIONS 🌟

Looking ahead, Niloufar Salehi aims to continue her research in circular manufacturing while expanding her influence through innovative collaborations and practical implementations. Her goal is to create lasting impacts on sustainability practices in the manufacturing sector, ensuring that future industries operate within a circular economy framework. As she approaches the completion of her PhD, her vision remains clear: to lead transformative initiatives that pave the way for a sustainable future.

NOTABLE PUBLICATION

Title: Towards circular economy: A guiding framework for circular supply chain implementation
Authors: Amir, S., Salehi, N., Roci, M., Sweet, S., Rashid, A.
Journal: Business Strategy and the Environment
Year: 2023

Title: Consumer Perceptions of the Circular Business Model: A Case of Leasing Strollers
Authors: Asif, F.M.A., Salehi, N., Lieder, M.
Conference Paper: Lecture Notes in Mechanical Engineering
Year: 2023

Title: Towards circular manufacturing systems implementation: A complex adaptive systems perspective using modelling and simulation as a quantitative analysis tool
Authors: Roci, M., Salehi, N., Amir, S., Mihelič, A., Rashid, A.
Journal: Sustainable Production and Consumption
Year: 2022

Title: A comparative life cycle assessment of stretchable and rigid electronics: a case study of cardiac monitoring devices
Authors: Kokare, S., Asif, F.M.A., Mårtensson, G., Roci, M., Salehi, N.
Journal: International Journal of Environmental Science and Technology
Year: 2022

Title: Multi-method simulation modelling of circular manufacturing systems for enhanced decision-making
Authors: Roci, M., Salehi, N., Amir, S., Shoaib-ul-Hasan, S., Rashid, A.
Journal: MethodsX
Year: 2022

Mostafa Mahinroosta – Solid Waste Management – Best Researcher Award

Mostafa Mahinroosta - Solid Waste Management - Best Researcher Award

Materials and Energy Research Center - Iran

AUTHOR PROFILE

Google Scholar

EARLY ACADEMIC PURSUITS

Mostafa Mahinroosta's academic journey began with a strong foundation in Chemical Engineering, culminating in a Ph.D. from the Iran University of Science and Technology. His research prowess was evident from his master's thesis, where he achieved outstanding scores and laid the groundwork for his future contributions.

PROFESSIONAL ENDEAVORS

Throughout his career, Mostafa has held various roles, including assistant professor at the Materials and Energy Research Center (MERC), CEO and co-founder of NAMI Advanced Materials Co., and positions in prestigious engineering firms. His diverse professional experiences have enriched his expertise in areas such as oil & gas process design, research consultancy, and executive leadership in nano-startups.

CONTRIBUTIONS AND RESEARCH FOCUS

Mostafa's research portfolio spans multiple disciplines, with a primary focus on Solid Waste Management, water and wastewater treatment, advanced nanomaterials, and hydrometallurgy. His innovative work in extracting and characterizing alumina-based nano-adsorbents from secondary aluminum dross showcases his dedication to sustainable materials development.

IMPACT AND INFLUENCE

Mostafa's research has garnered international recognition, positioning him as one of the world's top scientists. His contributions to Solid Waste Management and related fields have earned him prestigious awards and accolades, highlighting the significance of his work in addressing critical environmental challenges.

ACADEMIC CITES

Mostafa Mahinroosta's publications and research findings have been widely cited, underscoring their relevance and impact in the academic community. His studies on Solid Waste Management and advanced materials synthesis have contributed to the advancement of knowledge in these areas, shaping future research directions.

LEGACY AND FUTURE CONTRIBUTIONS

As Mostafa continues his academic and professional journey, he remains committed to pioneering solutions in Solid Waste Management and related fields. Through his mentorship of students and ongoing research endeavors, he seeks to leave a lasting legacy of innovation and sustainability in the realm of chemical engineering and environmental science.

NOTABLE PUBLICATION

Hydrogels as intelligent materials: A brief review of synthesis, properties, and applications 2018 (538)

Hazardous aluminum dross characterization and recycling strategies: A critical review 2018 (540)

A promising green process for synthesis of high purity activated-alumina nanopowder from secondary aluminum dross 2018 (105)

Mechanical activation of chemically activated high phosphorous slag content cement 2013 (87)

Enhanced alumina recovery from secondary aluminum dross for high purity nanostructured γ-alumina powder production: Kinetic study 2018 (83)