首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Techno-economic assessment of a wood-based biorefinery concept for the production of polymer-grade ethylene, organosolv lignin and fuel
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Techno-economic assessment of a wood-based biorefinery concept for the production of polymer-grade ethylene, organosolv lignin and fuel

机译:对用于生产聚合物级乙烯,有机溶剂木质素和燃料的木质生物精炼厂概念的技术经济评估

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Lignocellulose biorefineries are distinguished by an explicitly integrative, multi-functional concept that transforms biomass into multiple products, using a variety of conversion and separation processes. This study focuses on the technical design and economic evaluation of a lignocellulose biorefinery, that converts 400,000 t DM/a (250 MW) of beech wood into chemicals and fuel. A model was simulated with Aspen Plus (R) including the process steps pre-treatment, enzymatic hydrolysis, alcoholic fermentation, dehydration and biogas generation and upgrading. Mass and energy balances showed that 61,600 t/a polymer-grade ethylene, 58,520 t DM/a organosolv lignin, 38,400 t/a biomethane and 90,800 t DM/a hydrolysis lignin can be produced with a total energy efficiency of 87.1%. A discounted cash flow analysis indicated that the heat integrated biorefinery concept is not yet profitable. However, the economic results are greatly sensitive regarding various assumptions, in particular in terms of the prices for beech wood, ethylene and organosolv lignin. (C) 2015 Elsevier Ltd. All rights reserved.
机译:木质纤维素生物炼制厂的特征是明确整合的多功能概念,该概念可使用多种转化和分离工艺将生物质转化为多种产品。这项研究的重点是木质纤维素生物精炼厂的技术设计和经济评估,该精炼厂将400,000吨DM / a(250 MW)的山毛榉木转化为化学品和燃料。用Aspen Plus(R)模拟了一个模型,其中包括预处理,酶水解,酒精发酵,脱水以及沼气生成和升级的过程步骤。质量和能量平衡表明,可以生产61,600吨/年的聚合物级乙烯,58,520吨DM / a的有机溶剂木质素,38,400吨/年的生物甲烷和90,800 DM /年的水解木质素,总能源效率为87.1%。现金流量折现分析表明,热整合式生物精炼厂的概念尚未实现盈利。但是,经济结果对各种假设都非常敏感,特别是在榉木,乙烯和有机溶剂木质素的价格方面。 (C)2015 Elsevier Ltd.保留所有权利。

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