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Exergy analysis of a combined heat and power plant with integrated lignocellulosic ethanol production

机译:综合热电厂与木质纤维素乙醇生产综合的火用分析

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摘要

Lignocellulosic ethanol production is often assumed integrated in polygeneration systems because of its energy intensive nature. The objective of this study is to investigate potential irreversibilities from such integration, and what impact it has on the efficiency of the integrated ethanol production. An exergy analysis is carried out for a modelled polygeneration system in which lignocellulosic ethanol production based on hydrothermal pretreatment is integrated in an existing combined heat and power (CHP) plant. The ethanol facility is driven by steam extracted from the CHP unit when feasible, and a gas boiler is used as back-up when integration is not possible. The system was evaluated according to six operation points that alternate on the following three different operation parameters: Load in the CHP unit, integrated versus separate operation, and inclusion of district heating production in the ethanol facility. The calculated standard exergy efficiency of the ethanol facility varied from 0.564 to 0.855, of which the highest was obtained for integrated operation at reduced CHP load and full district heating production in the ethanol facility, and the lowest for separate operation with zero district heating production in the ethanol facility. The results suggest that the efficiency of integrating lignocellulosic ethanol production in CHP plants is highly dependent on operation, and it is therefore suggested that the expected operation pattern of such polygeneration system is taken into account when evaluating the potential of the ethanol production. © 2014 Elsevier Ltd. All rights reserved.
机译:木质纤维素乙醇的生产由于其能源密集型特性,通常被认为已集成在多联产系统中。这项研究的目的是调查这种整合的潜在不可逆性,以及对整合乙醇生产效率的影响。对模型化的多联产系统进行了火用分析,在该系统中,将基于水热预处理的木质纤维素乙醇生产整合到现有的热电联产(CHP)工厂中。在可行的情况下,乙醇设施由从CHP装置提取的蒸汽驱动,而在无法集成时,则使用燃气锅炉作为后备设备。根据六个运行点对系统进行了评估,这些运行点在以下三个不同的运行参数上交替进行:CHP装置中的负荷,集成运行与独立运行以及乙醇设施中的区域供热生产。乙醇设施的计算标准火用效率在0.564到0.855之间变化,其中最高值是在乙醇设施中降低CHP负荷和全区供热生产的综合运行中获得的,而在零区供热生产的单独运行中是最低的。乙醇设施。结果表明,在热电联产工厂中整合木质纤维素乙醇生产的效率高度依赖于操作,因此建议在评估乙醇生产潜力时考虑这种多联产系统的预期运行模式。 ©2014 Elsevier Ltd.保留所有权利。

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