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液态热水预处理对玉米芯酶解及理化性质变化的影响

Effects of Liquid Hot Water Pretreatment on Enzymatic Hydrolysis and Physicochemical Changes of Corncobs.

作者信息

Imman Saksit, Laosiripojana Navadol, Champreda Verawat

机构信息

School of Energy and Environment, University of Phayao, Tambon Maeka, Amphur Muang, Phayao, 56000, Thailand.

The Joint Graduate School for Energy and Environment (JGSEE), King Mongkut's University of Technology Thonburi, Prachauthit Road, Bangmod, Bangkok, 10140, Thailand.

出版信息

Appl Biochem Biotechnol. 2018 Feb;184(2):432-443. doi: 10.1007/s12010-017-2541-1. Epub 2017 Jul 19.

Abstract

Liquid hot water (LHW) pretreatment is an efficient chemical-free strategy for enhancing enzymatic digestibility of lignocellulosic biomass for conversion to fuels and chemicals in biorefinery. In this study, effects of LHW on removals of hemicelluloses and lignin from corncobs were studied under varying reaction conditions. LHW pretreatment at 160 °C for 10 min promoted the highest levels of hemicellulose solubilization into the liquid phase, resulting into the maximized pentose yield of 58.8% in the liquid and more than 60% removal of lignin from the solid, with 73.1% glucose recovery from enzymatic hydrolysis of the pretreated biomass using 10 FPU/g Celluclast™. This led to the maximal glucose and pentose recoveries of 81.9 and 71.2%, respectively, when combining sugars from the liquid phase from LHW and hydrolysis of the solid. Scanning electron microscopy revealed disruption of the intact biomass structure allowing increasing enzyme's accessibility to the cellulose microfibers which showed higher crystallinity index compared to the native biomass as shown by x-ray diffraction with a marked increase in surface area as revealed by BET measurement. The work provides an insight into effects of LHW on modification of physicochemical properties of corncobs and an efficient approach for its processing in biorefinery industry.

摘要

液态热水(LHW)预处理是一种高效的无化学添加策略,可提高木质纤维素生物质的酶解消化率,以便在生物炼制中转化为燃料和化学品。在本研究中,考察了不同反应条件下LHW对玉米芯中半纤维素和木质素去除的影响。160℃下进行10分钟的LHW预处理可使半纤维素溶解到液相中的程度最高,从而使液相中戊糖产率最大化,达到58.8%,且固体中木质素的去除率超过60%,使用10 FPU/g纤维素酶(Celluclast™)对预处理后的生物质进行酶水解,葡萄糖回收率为73.1%。当将LHW液相中的糖与固体水解产物相结合时,葡萄糖和戊糖的最大回收率分别达到81.9%和71.2%。扫描电子显微镜显示完整的生物质结构被破坏,使得酶更容易接触到纤维素微纤维,与天然生物质相比,经X射线衍射显示其结晶度指数更高,BET测量表明表面积显著增加。该研究为了解LHW对玉米芯物理化学性质的改性作用以及生物炼制行业中玉米芯的高效加工方法提供了依据。

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