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蒸汽预处理添加浸渍剂甘蔗渣生产先进生物乙醇。

Steam pretreatment of Saccharum officinarum L. bagasse by adding of impregnating agents for advanced bioethanol production.

机构信息

Department of Computer Engineering, Modeling, Electronics, and Systems Science (DIMES), University of Calabria, via P. Bucci, 87036 Arcavacata di Rende, CS, Italy.

ENEA, Italian National Agency for New Technologies, Energy and Sustainable Economic Development, S.S. 106 Ionica, km 419+500, 75026 Rotondella, MT, Italy.

出版信息

Ecotoxicol Environ Saf. 2016 Dec;134(Pt 2):293-300. doi: 10.1016/j.ecoenv.2015.07.034. Epub 2015 Aug 24.

Abstract

The main byproduct of the sugarcane industry, Saccharum officinarum L. bagasse (sugarcane bagasse, SCB), is widely used as lignocellulose biomass for bio-ethanol (EtOH) production. In this research study, SCB was pretreated by steam explosion (SE) method using two different impregnating agents: sulfur dioxide (SD) and hydrogen peroxide (HP). As matter of fact, the use of impregnating agents improves the performance of SE method, increasing the concentrations of fermentable sugars after enzymatic saccharification, and decreasing the inhibitor compounds produced during the steam pretreatment step. The aim of this study was to investigate and compare the use of the two impregnating agents in various SE-conditions in order to optimize pretreatment parameters. For every pretreatment condition, it has been evaluated: concentration of fermentable sugars, glucose and xylose yields, and the effects of the inhibitor compounds on enzymatic hydrolysis step. The obtained results allow to improve the efficiency of the whole process of bio-EtOH synthesis enhancing the amount of fermentable sugars produced and the eco-sustainability of the whole process. Indeed, the optimization of steam pretreatment leads to a reduction of energy requirements and to a lower environmental impact.

摘要

甘蔗工业的主要副产品——甘蔗渣(Saccharum officinarum L. bagasse,SCB),广泛用作生产生物乙醇(EtOH)的木质纤维素生物质。在这项研究中,SCB 采用蒸汽爆破(SE)法进行预处理,使用了两种不同的浸渍剂:二氧化硫(SD)和过氧化氢(HP)。事实上,浸渍剂的使用可以提高 SE 法的性能,增加酶解后可发酵糖的浓度,并减少蒸汽预处理步骤中产生的抑制剂化合物。本研究的目的是研究和比较两种浸渍剂在不同 SE 条件下的使用情况,以优化预处理参数。对于每种预处理条件,都评估了:可发酵糖的浓度、葡萄糖和木糖的产率,以及抑制剂化合物对酶解步骤的影响。研究结果可以提高生物乙醇合成全过程的效率,增加可发酵糖的产量,并提高整个过程的生态可持续性。事实上,蒸汽预处理的优化可以降低能源需求和环境影响。

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