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Javier Dufour

Researcher at King Juan Carlos University

Publications -  148
Citations -  4677

Javier Dufour is an academic researcher from King Juan Carlos University. The author has contributed to research in topics: Life-cycle assessment & Hydrogen production. The author has an hindex of 33, co-authored 135 publications receiving 3397 citations. Previous affiliations of Javier Dufour include Spanish National Research Council & IMDEA.

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Life cycle assessment of processes for hydrogen production. Environmental feasibility and reduction of greenhouse gases emissions

TL;DR: In this paper, thermal and autocatalytic decomposition of methane were compared with the steam reforming with and without CO2 capture and storage from an environmental point of view, using life cycle assessment (LCA) tools.
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Life cycle assessment of transportation fuels from biomass pyrolysis

TL;DR: In this paper, the authors evaluated the environmental performance of a biofuel production system based on the fast pyrolysis of short-rotation poplar biomass using a Life Cycle Assessment (LCA) approach.
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Biomass pyrolysis for biochar or energy applications? A life cycle assessment.

TL;DR: A high sensitivity to biomass yield increase is found for biochar systems, and biochar application to low-quality soils where high yield increases are expected would show a more favorable performance in terms of global warming.
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A review of life-cycle approaches coupled with data envelopment analysis within multi-criteria decision analysis for sustainability assessment of energy systems

TL;DR: In this paper, a combination of life-cycle (LC) approaches and Data Envelopment Analysis (DEA) for the sustainability assessment of energy systems is presented. And the potentials of these combined approaches within sustainability-oriented MCDA in the field of energy are explored and elucidated.
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Environmental and exergetic evaluation of hydrogen production via lignocellulosic biomass gasification

TL;DR: In this article, a base-case system for hydrogen production via biomass gasification is defined, and its environmental and thermodynamic performance is evaluated through a life cycle assessment and an exergetic analysis.