Lignocellulosic agriculture wastes as biomass feedstocks for second-generation bioethanol production: concepts and recent developments

Лигноцеллюлозные сельскохозяйственные отходы как биомассовое сырье для производства биоэтанола второго поколения: концепции и современные достижения
Jitendra Kumar Saini, Reetu Saini, Lakshmi Tewari
2014-08-20

agricultural residuesbiomass pretreatmentcellulase productionlignocellulosic feedstockssecond-generation bioethanol
Production of liquid biofuels, such as bioethanol, has been advocated as a sustainable option to tackle the problems associated with rising crude oil prices, global warming and diminishing petroleum reserves. Second-generation bioethanol is produced from lignocellulosic feedstock by its saccharification, followed by microbial fermentation and product recovery. Agricultural residues generated as wastes during or after processing of agricultural crops are one of such renewable and lignocellulose-rich biomass resources available in huge amounts for bioethanol production. These agricultural residues are converted to bioethanol in several steps which are described here. This review enlightens various steps involved in production of the second-generation bioethanol. Mechanisms and recent advances in pretreatment, cellulases production and second-generation ethanol production processes are described here.
1
Agricultural residues are abundant, renewable, lignocellulose-rich feedstocks with substantial potential for second-generation bioethanol production.
2
Agricultural wastes can be converted into bioethanol through integrated processing steps, offering a potential response to petroleum depletion, climate change, and rising crude-oil prices.
3
Second-generation bioethanol production from lignocellulose involves sequential pretreatment, saccharification, microbial fermentation, and product recovery.
4
The review describes mechanisms and recent advances in lignocellulosic pretreatment technologies and cellulase production.

Lignocellulosic agricultural residues (agriculture wastes) used as biomass feedstocks for second-generation bioethanol production

The conversion of agricultural residues into second-generation bioethanol, including pretreatment, cellulase production, saccharification, microbial fermentation, and product recovery

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2014-08-20
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Jitendra Kumar Saini
Reetu Saini
Lakshmi Tewari
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