V
Vikas Khanna
Researcher at University of Pittsburgh
Publications - 79
Citations - 2242
Vikas Khanna is an academic researcher from University of Pittsburgh. The author has contributed to research in topics: Life-cycle assessment & Greenhouse gas. The author has an hindex of 24, co-authored 73 publications receiving 1712 citations. Previous affiliations of Vikas Khanna include Ohio State University.
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Understanding resilience in industrial symbiosis networks: Insights from network analysis
Shauhrat S. Chopra,Vikas Khanna +1 more
TL;DR: This work focuses on understanding resilience as an emergent property of an IS network via a network-based approach with application to the Kalundborg Industrial Symbiosis (KIS), and recommends design strategies, such as increasing diversity, redundancy, and multi-functionality, to develop resilient and sustainable industrial symbiotic networks.
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Carbon Nanofiber Production
TL;DR: In this article, the authors present an assessment of the life cycle energy requirements and environmental impact of carbon nanofibers (CNFs) synthesis using data reported in the open literature.
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Environmental Life Cycle Perspective on Rare Earth Oxide Production
TL;DR: In this paper, a life cycle assessment (LCA) is performed to evaluate the environmental impacts and resource intensity of producing rare earth oxides (REO) from the Bayan Obo mine located in Inner Mongolia, China.
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A network-based framework for assessing infrastructure resilience: a case study of the London metro system.
TL;DR: A comprehensive, multi-pronged framework that analyses information on network topology, spatial organization and passenger flow to understand the resilience of the London metro system is presented and useful strategies to build resilience for both existing and upcoming metro systems are provided.
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Microalgal biomass production pathways: evaluation of life cycle environmental impacts.
George G. Zaimes,Vikas Khanna +1 more
TL;DR: Given the high variability in microalgae’s energy and environmental performance, careful evaluation of the algae-to-fuel supply chain is necessary to ensure the long-term sustainability of emerging algal biofuel systems.