Rajib Sinha
KTH Royal Institute of Technology, Confidence Steel Ltd., Bangladesh University of Engineering and Technology (BUET)
About
He is interested in understanding the complexity and dynamics of societal metabolism to identify the drivers of environmental pressures to take proactive actions to an improved management. His interests cover physical resource management to sustainable production consumption, material efficiency and circular economy, rebound effects and unintended consequences, implications of life cycle thinking and systems thinking in practice. His research specifically focused on the modeling aspects of industrial ecology, e.g., MFA/SFA, LCA, Input-Output analysis, system dynamics, agent based modeling.
Employment
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KTH Royal Institute of Technology Lecturer and researcher2016 - Present
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KTH Royal Institute of Technology PhD candidate2012 - 2016
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KTH Royal Institute of Technology Research Engineer2009 - 2012
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Confidence Steel Ltd. Structural Design Engineer2006 - 2007
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KTH Royal Institute of Technology
Education
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KTH Royal Institute of Technology PhD in Industrial Ecology2012 - 2016
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KTH Royal Institute of Technology Licentiate of Engineering in Industrial Ecology2012 - 2015
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KTH Royal Institute of Technology M.Sc. in Sustainable Technology2007 - 2009
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Bangladesh University of Engineering and Technology (BUET) B.Sc. in Civil Engineering2001 - 2006
Projects & Funding
Projects & funding information is unavailable.
Publications (24)
- Exploring paths toward enabling transitions: Systems thinking‐based approach and its application to shifts toward sustainable circulation of materials in transportation infrastructure Save
- Assessment of Greenhouse Gas Reduction and Sustainability Index in Waste-to-Energy Conversion Scenarios Using System Dynamics Modeling Save
- The biophysical economic structure of four developed countries: Lessons for decarbonization Save
- Applying material and energy flow analysis to assess urban metabolism in the context of the circular economy Save
- Environmental Damage of Different Waste Treatment Scenarios by Considering Avoided Emissions Based on System Dynamics Modeling Save
- What Can Be Done to Change?—The Environmental and Behavioral Consequences of Interventions for Sustainable Travel Save
- Life Cycle Assessment of Different Prefabricated Rates for Building Construction Save
- Quantifying nutrient recovery by element flow analysis: Harvest and use of seven marine biomasses to close N and P loops Save
- Marine biomass for a circular blue‐green bioeconomy?: A life cycle perspective on closing nitrogen and phosphorus land‐marine loops Save
- A new physical accounting model for material flows in urban systems with application to the Stockholm Royal Seaport District Save