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Biochemical conversion of renewable feedstocks to ethanol is being investigated at commercial scale for biofuels production [ 22, 23].
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The process is based on biochemical conversion of logging residues to produce ethanol, biogas, pellets, heat and electricity.
With its new-found capital, Ciris specificially plans to build its first commercial-scale projects for "in-situ biochemical conversion of coal to methane," and to bring its "ex-situ biochemical coal conversion technology to commercial-ready status," the company said in a press statement.
The biochemical conversion of lignocellulosic biomass (LCB) comprises three main steps, viz.
Pretreatment is a vital step upon biochemical conversion of lignocellulose materials into biofuels.
The significant levels of aromatic hydrocarbons as well as alkanes, such as generated by pyrolysis of the residue of biochemical conversions of coffee waste, can be used to produce several chemical feedstocks in addition to renewable gasoline and diesel fuel.
High-performance hydrogen evolution reaction (HER) catalysts are compelling for the conversion of renewable electricity to fuels and feedstocks.
Heterogeneous catalysts play a key role in the conversion of renewable resources into fuels and chemicals.
Biorefinery has been proposed as one of the key concepts for conversion of renewable materials.
High-temperature water (HTW) was applied in the catalytic conversion of renewable lignocellulosic biomass to furfural (Akiya and Savage 2002).
Conversion of renewable lignocellulosic biomass into biofuels is at the heart of advanced biofuels production.
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