2022
DOI: 10.1016/j.fuel.2021.122623
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Bio-hydrogen production from steam reforming of liquid biomass wastes and biomass-derived oxygenates: A review

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Cited by 48 publications
(13 citation statements)
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“…Indeed, secondary catalysts promote the conversion of products of incomplete gasication of the original biomass to enhance the yields of hydrogen and CO. Such post-biomass gasication reactions include downstream steam reforming of methane (and other hydrocarbons) in the gas products (eqn (10)), [116][117][118][119][120] dry reforming methane (and other hydrocarbons) in the gas products (eqn ( 11)) and watergas shi (eqn ( 8)). [122][123][124] Tar formation remains a signicant challenge to the biomass gasication process and requires continued research attention.…”
Section: Catalytic Systems For Tar Reduction and Elimination During B...mentioning
confidence: 99%
See 1 more Smart Citation
“…Indeed, secondary catalysts promote the conversion of products of incomplete gasication of the original biomass to enhance the yields of hydrogen and CO. Such post-biomass gasication reactions include downstream steam reforming of methane (and other hydrocarbons) in the gas products (eqn (10)), [116][117][118][119][120] dry reforming methane (and other hydrocarbons) in the gas products (eqn ( 11)) and watergas shi (eqn ( 8)). [122][123][124] Tar formation remains a signicant challenge to the biomass gasication process and requires continued research attention.…”
Section: Catalytic Systems For Tar Reduction and Elimination During B...mentioning
confidence: 99%
“…Therefore, the direct use of CaO as another cheap and widely available biomass gasication catalyst has been variously explored. 116,[194][195][196][197][198][199][200][201][202] The application of CaO is notable for obtaining higher hydrogen yield at lower temperatures (∼600 °C) 116 through the combination of eqn ( 7) and ( 13), as shown in the exothermic eqn ( 16) below.…”
Section: Catalytic Systems For Tar Reduction and Elimination During B...mentioning
confidence: 99%
“…Recently, H2 production from WW has gained attention as an emergent technology. Green H2 generation can be achieved by various methods, such as dark/photo fermentation, bio photolysis and microbial electrolysis [52][53][54]. Using raw industrial WW for H2 production can be a high energy-intensive and low-yield process.…”
Section: Wwelmentioning
confidence: 99%
“…The development of this new reactor can make dye photocatalysts and metal complexes well used in the system of solar water decomposition to hydrogen, improve the hydrogen production efficiency and inhibit the photodegradation reaction. So far, in improving the efficiency of solar energy conversion, it mainly focuses on how to inhibit the reverse reaction, reduce the recombination of electron hole pairs, and develop new semiconductor photocatalysts [6][7][8].…”
Section: Introductionmentioning
confidence: 99%