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- W2068854548 endingPage "4323" @default.
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- W2068854548 abstract "Abstract The growing demand for hydrogen for industrial use and as a fuel pushes for innovative and sustainable production strategies, which can be applied both in centralized, large‐scale plants and in delocalized small units. At present, hydrogen is mainly produced by steam reforming of natural gas or oil. Nevertheless, the shortage of fossil fuel reserves and the increasing concern regarding environmental pollution have stimulated the search for alternative production routes, among which photocatalysis over metal oxide semiconductors represents a strategically attractive solution. Whereas the direct splitting of water is still a challenging issue because of intrinsic process drawbacks, a valuable alternative for a sustainable photocatalytic H 2 production is the use of biomass‐derived compounds as raw materials. Upon photoactivation in the presence of an appropriate semiconductor, such feedstocks can undergo oxidation to CO 2 with simultaneous H 2 production in the so‐called photoreforming process. When the oxidation is selective rather than complete, the process might be of further interest due to the added value of the obtained carbon‐containing by‐products. This microreview focuses on recent developments in this field, with particular attention to the use of representative biomass‐derived oxygenated compounds, such as methanol, ethanol, glycerol, and sugars." @default.
- W2068854548 created "2016-06-24" @default.
- W2068854548 creator A5012412084 @default.
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- W2068854548 creator A5063463209 @default.
- W2068854548 creator A5076840971 @default.
- W2068854548 creator A5086668589 @default.
- W2068854548 date "2011-09-02" @default.
- W2068854548 modified "2023-10-11" @default.
- W2068854548 title "Photocatalytic H<sub>2</sub> and Added‐Value By‐Products – The Role of Metal Oxide Systems in Their Synthesis from Oxygenates" @default.
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