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用于将离子液体预处理后的甘蔗顶生物质有效转化为生物燃料的纳米生物催化剂。

Nanobiocatalysts for efficacious bioconversion of ionic liquid pretreated sugarcane tops biomass to biofuel.

机构信息

School of Biotechnology, University of Jammu, Jammu 180006, India.

Department of Chemistry, University of Jammu, Jammu 180006, India.

出版信息

Bioresour Technol. 2021 Aug;333:125191. doi: 10.1016/j.biortech.2021.125191. Epub 2021 Apr 20.

Abstract

This work aimed to study the hydrolysis of ionic liquid (IL) pretreated sugarcane tops (SCT) biomass with in-house developed IL-stable enzyme preparation, from a fungal isolate Aspergillus flavus PN3. Maximum reducing sugar yield (181.18 mg/g biomass) was obtained from tris (2-hydroxyethyl) methylammonium-methylsulfate ([TMA]MeSO) pretreated biomass. Pretreatment parameters were optimized to attain enhanced sugar yield (1.57-fold). Functional mechanism of IL mediated pretreatment of SCT biomass was elucidated by SEM, XRD, FTIR and H NMR studies. Furthermore, nanobiocatalysts prepared by immobilization of enzyme preparation by covalent coupling on magnetic nanoparticles functionalized with amino-propyl triethoxysilane, were assessed for their hydrolytic efficacy and reusability. Nanobiocatalysts were examined by SEM and FTIR analysis for substantiation of immobilization. This is the first ever report of application of magnetic nanobiocatalysts for saccharification of IL-pretreated sugarcane tops biomass.

摘要

本工作旨在研究从真菌分离株黄曲霉 PN3 中开发的离子液体(IL)稳定酶制剂对甘蔗梢(SCT)生物质进行水解。从三(2-羟乙基)甲基氯化铵-甲基硫酸盐([TMA]MeSO)预处理的生物质中获得了最大还原糖得率(181.18mg/g 生物质)。通过 SEM、XRD、FTIR 和 H NMR 研究,优化预处理参数以获得更高的糖产率(1.57 倍)。通过 SEM 和 FTIR 分析对纳米生物催化剂进行了检查,以证实其固定化。这是首次报道将磁性纳米生物催化剂应用于 IL 预处理甘蔗梢生物质的糖化。

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