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Title Editorialdspecial issue ?catalysis for sustainable hydrogen production?
ID_Doc 13452
Authors Larimi, A; Parlett, CMA; Jiang, Z
Title Editorialdspecial issue ?catalysis for sustainable hydrogen production?
Year 2023
Published
DOI 10.1016/j.mtchem.2023.101457
Abstract Given the finite nature of fossil fuel resources and the negative environmental impact of their com-bustion during energy production, a global transition to sustainable and renewable energy carriers which encompass a circular economy model is one of today's most pressing issues. Hydrogen represents a promising option, with industrial and academic attention shifting to sustainable H2 production, partic-ularly via the catalytic conversion of inexpensive renewable feedstocks such as biomass, waste materials, and water. While this current stimulus has increased understanding, some key challenges still exist. If hydrogen production technologies are to become commercialized, their economics and efficiencies require improvements. In this regard, catalysts play a critical role at the heart of these processes, and therefore, developing inexpensive catalysts with high stability, selectivity, and activity are of extreme importance. Understanding the synthesis and behavior of these catalysts, coupled with elucidating structureeactivity correlations, at the atomic and molecular scale, is crucial to further developments and is the focus of ongoing research. This Special Issue provides a collection of high-quality full articles and comprehensive reviews on a diverse range of topics, which include photo (electro) catalytic water splitting, reforming and decomposition of oxygenated hydrocarbons and pyrolysis of plastics for sus-tainable hydrogen production. Authors from Australia, Belgium, Brazil, China, Cyprus, France, Germany, India, Iran, Italy, Japan, Kuwait, Portugal, Singapore, South Korea, and the United Kingdom contributed to the publications within this Special Issue, for which the Editors are grateful for their valuable contributions.(c) 2023 Elsevier Ltd. All rights reserved.
Author Keywords H 2 production; Catalytic reforming; Clean fuel; Renewable H 2
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:000961790500001
WoS Category Chemistry, Multidisciplinary; Materials Science, Multidisciplinary
Research Area Chemistry; Materials Science
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