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Renewable fuel gases and important organic compounds production from ethanol dehydrogenation using nickel oxide, a green-synthesized catalyst

Carla Maria Beraldi Gomes; Denise Aparecida Zempulski; Caroline da Ros Montes D’Oca; Helton José Alves
Environmental Science and Pollution Research · Vol. 33, Issue 14 · pp. 6861-6876 · 2026

Abstract

Bioethanol dehydrogenation is a promising route for clean and renewable hydrogen production, aligning with low-carbon economy goals. Additionally, it promotes the synthesis of valuable organic compounds from bioethanol. This study investigated the use of green-synthesized NiO nanoparticles as a catalyst for ethanol dehydrogenation. The highest selectivity for hydrogen production (97.4%) was achieved using 10% NiO at 260 °C. However, at 10% NiO and 280 °C, the fuel gas mixture yielded a higher calculated calorific value (1,231.6 kJ). This condition was used to evaluate the reaction’s kinetic over a period of 1 to 8 reaction-hours. During these experiments, a progressive increase in gas volume was observed, along with a transition in the gas products from propane to hydrogen, followed by methane. These changes correlated with ethanol conversion to organic compounds (1,1-diethoxyethane and 1-butanol) in the liquid phase, as well as catalyst’s crystal structure alterations, from Ni 2+ face-centered-cubic (FCC) to metallic nickel FCC and hexagonal close-packed (HCP) phase.

Bibliographic Information

JournalEnvironmental Science and Pollution Research
PublisherSpringer
Publication Date2026-04-16
Publication Year2026
Volume33
Issue14
Pages6861-6876
Document TypeJournal Article
eISSN1614-7499
DOI10.1007/s11356-026-37421-8

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NARA Access Coverage1994-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11356
Publisher PageOpen Publisher Page
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