Suppr超能文献

蒸汽爆破麦秸的甲烷潜力分析及乙醇与甲烷联产的能量产率估算。

Analysis of methane potentials of steam-exploded wheat straw and estimation of energy yields of combined ethanol and methane production.

作者信息

Bauer Alexander, Bösch Peter, Friedl Anton, Amon Thomas

机构信息

Department of Sustainable Agricultural Systems, Division of Agricultural Engineering, University of Natural Resources and Applied Life Sciences, Peter Jordan-Strasse 82, A-1190 Vienna, Austria.

出版信息

J Biotechnol. 2009 Jun 1;142(1):50-5. doi: 10.1016/j.jbiotec.2009.01.017. Epub 2009 Feb 6.

Abstract

Agrarian biomass as a renewable energy source can contribute to a considerable CO(2) reduction. The overriding goal of the European Union is to cut energy consumption related greenhouse gas emission in the EU by 20% until the year 2020. This publication aims at optimising the methane production from steam-exploded wheat straw and presents a theoretical estimation of the ethanol and methane potential of straw. For this purpose, wheat straw was pretreated by steam explosion using different time/temperature combinations. Specific methane yields were analyzed according to VDI 4630. Pretreatment of wheat straw by steam explosion significantly increased the methane yield from anaerobic digestion by up to 20% or a maximum of 331 l(N)kg(-1) VS compared to untreated wheat straw. Furthermore, the residual anaerobic digestion potential of methane after ethanol fermentation was determined by enzymatic hydrolysis of pretreated wheat straw using cellulase. Based on the resulting glucose concentration the ethanol yield and the residual sugar available for methane production were calculated. The theoretical maximum ethanol yield of wheat straw was estimated to be 0.249 kg kg(-1) dry matter. The achievable maximum ethanol yield per kg wheat straw dry matter pretreated by steam explosion and enzymatic hydrolysis was estimated to be 0.200 kg under pretreatment conditions of 200 degrees C and 10 min corresponding to 80% of the theoretical maximum. The residual methane yield from straw stillage was estimated to be 183 l(N)kg(-1) wheat straw dry matter. Based on the presented experimental data, a concept is proposed that processes wheat straw for ethanol and methane production. The concept of an energy supply system that provides more than two forms of energy is met by (1) upgrading obtained ethanol to fuel-grade quality and providing methane to CHP plants for the production of (2) electric energy and (3) utility steam that in turn can be used to operate distillation columns in the ethanol production process.

摘要

农业生物质作为一种可再生能源,有助于大幅减少二氧化碳排放。欧盟的首要目标是到2020年将欧盟与能源消耗相关的温室气体排放量削减20%。本出版物旨在优化蒸汽爆破小麦秸秆的甲烷产量,并对秸秆的乙醇和甲烷潜力进行理论估算。为此,采用不同的时间/温度组合对小麦秸秆进行蒸汽爆破预处理。根据VDI 4630分析特定甲烷产量。与未处理的小麦秸秆相比,蒸汽爆破预处理小麦秸秆显著提高了厌氧消化的甲烷产量,最高可达20%,或最大为331 l(N)kg(-1)挥发性固体。此外,通过使用纤维素酶对预处理小麦秸秆进行酶水解,测定了乙醇发酵后甲烷的残余厌氧消化潜力。根据所得葡萄糖浓度计算乙醇产量和可用于甲烷生产的残余糖量。小麦秸秆的理论最大乙醇产量估计为0.249 kg kg(-1)干物质。在200℃和10分钟的预处理条件下,经蒸汽爆破和酶水解处理的每千克小麦秸秆干物质可实现的最大乙醇产量估计为0.200 kg,相当于理论最大值的80%。秸秆酒糟的残余甲烷产量估计为183 l(N)kg(-1)小麦秸秆干物质。基于所提供的实验数据,提出了一种处理小麦秸秆用于乙醇和甲烷生产的概念。一种提供两种以上能源形式的能源供应系统的概念通过以下方式实现:(1) 将获得的乙醇升级为燃料级质量,并将甲烷提供给热电联产工厂,用于生产(2) 电能和(3) 公用蒸汽,而公用蒸汽又可用于乙醇生产过程中的蒸馏塔运行。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验