Challenges and perspectives of green-like lignocellulose pretreatments selectable for low-cost biofuels and high-value bioproduction

[Display omitted] •Mild pretreatments for near-complete saccharification of desirable lignocelluloses.•Integrated green-like biomass pretreatments to achieve maximum cellulosic ethanol.•Green-like pretreatments selectable for generation of nanomaterials and nanocarbon.•Distinct pretreatment mechanis...

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Veröffentlicht in:Bioresource technology 2023-02, Vol.369, p.128315-128315, Article 128315
Hauptverfasser: Zhang, Ran, Gao, Hairong, Wang, Yongtai, He, Boyang, Lu, Jun, Zhu, Wanbin, Peng, Liangcai, Wang, Yanting
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Sprache:eng
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Zusammenfassung:[Display omitted] •Mild pretreatments for near-complete saccharification of desirable lignocelluloses.•Integrated green-like biomass pretreatments to achieve maximum cellulosic ethanol.•Green-like pretreatments selectable for generation of nanomaterials and nanocarbon.•Distinct pretreatment mechanisms accounting for biomass recalcitrance reduction.•A novel strategy for cost-effective biofuels and functional materials at high value. Lignocellulose represents the most abundant carbon-capturing substance that is convertible for biofuels and bioproduction. Although biomass pretreatments have been broadly applied to reduce lignocellulose recalcitrance for enhanced enzymatic saccharification, they mostly require strong conditions with potential secondary waste release. By classifying all major types of pretreatments that have been recently conducted with different sources of lignocellulose substrates, this study sorted out their distinct roles for wall polymer extraction and destruction, leading to the optimal pretreatments evaluated for cost-effective biomass enzymatic saccharification to maximize biofuel production. Notably, all undigestible lignocellulose residues are also aimed for effective conversion into value-added bioproduction. Meanwhile, desired pretreatments were proposed for the generation of highly-valuable nanomaterials such as cellulose nanocrystals, lignin nanoparticles, functional wood, carbon dots, porous and graphitic nanocarbons. Therefore, this article has proposed a novel strategy that integrates cost-effective and green-like pretreatments with desirable lignocellulose substrates for a full lignocellulose utilization with zero-biomass-waste liberation.
ISSN:0960-8524
1873-2976
DOI:10.1016/j.biortech.2022.128315