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Biofuel production, hydrogen production and water remediation by photocatalysis, biocatalysis and electrocatalysis

Ahmed I. Osman; Ahmed M. Elgarahy; Abdelazeem S. Eltaweil; Eman M. Abd El-Monaem; Hisham G. El-Aqapa; Yuri Park; Yuhoon Hwang; Ali Ayati; Mohamed Farghali; Ikko Ihara; Ala’a H. Al-Muhtaseb; David W. Rooney; Pow-Seng Yap; Mika Sillanpää
Environmental Chemistry Letters · Vol. 21, Issue 3 · pp. 1315-1379 · 2023

Abstract

The energy crisis and environmental pollution have recently fostered research on efficient methods such as environmental catalysis to produce biofuel and to clean water. Environmental catalysis refers to green catalysts used to breakdown pollutants or produce chemicals without generating undesirable by-products. For example, catalysts derived from waste or inexpensive materials are promising for the circular economy. Here we review environmental photocatalysis, biocatalysis, and electrocatalysis, with focus on catalyst synthesis, structure, and applications. Common catalysts include biomass-derived materials, metal–organic frameworks, non-noble metals nanoparticles, nanocomposites and enzymes. Structure characterization is done by Brunauer–Emmett–Teller isotherm, thermogravimetry, X-ray diffraction and photoelectron spectroscopy. We found that water pollutants can be degraded with an efficiency ranging from 71.7 to 100%, notably by heterogeneous Fenton catalysis. Photocatalysis produced dihydrogen (H 2 ) with generation rate higher than 100 μmol h −1 . Dihydrogen yields ranged from 27 to 88% by methane cracking. Biodiesel production reached 48.6 to 99%.

Bibliographic Information

JournalEnvironmental Chemistry Letters
PublisherSpringer
Publication Date2023-06-01
Publication Year2023
Volume21
Issue3
Pages1315-1379
Document TypeJournal Article
Print ISSN1610-3653
eISSN1610-3661
DOI10.1007/s10311-023-01581-7

Access Information

NARA Access Coverage2003-01-01~Current
Journal Homepagehttps://www.springer.com/journal/10311
Publisher PageOpen Publisher Page
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