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首页> 外文期刊>Journal of Cleaner Production >Evaluation of the emergy investment needed for bioethanol production in a biorefinery using residual resources and energy
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Evaluation of the emergy investment needed for bioethanol production in a biorefinery using residual resources and energy

机译:使用剩余资源和能源评估生物精炼厂生产生物乙醇所需的能值投资

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An evaluation of the investment required to implement a second generation bioethanol production chain is presented in this study. An integrated agro-industrial system can be an appropriate solution to accomplish the European requirement for the partial substitution of bioethanol for gasoline by 2020. A biorefinery system is hypothesized within the Province of Siena (Italy), fed by residual energy and material flows from local productions: straw from agriculture and residual geothermal heat from geothermal electricity generation; the output is calibrated to replace 10% of gasoline consumption within the Provincial area. The physical consistency of the investment required to implement the production process, as well as the benefit of the biofuel gasoline substitution, have been evaluated by means of the emergy methodology. Emergy is a thermodynamics-based indicator that contributes to identify and measure all the inputs supporting a given system, expressed in a common unit (solar emergy joules semi). Results show that the benefit of saving gasoline, in emergy terms, almost doubles the emergy investment to produce biofuel. The case of a biorefinery fed by natural gas instead of local residual geothermal heat is also presented. The Unit Emergy Investment (UEI) of bioethanol produced in a biorefinery that uses residual straw and geothermal heat is 9.16E + 08 semj/g (the case of the Province of Siena); it is 1.84E + 09 semj/g (in case natural gas is used to fuel the process). Finally, the comparison between the UEI of bioethanol evaluated in this study and UEV of bioethanol calculated in other studies is presented. (C) 2014 Elsevier Ltd. All rights reserved.
机译:这项研究提出了对实施第二代生物乙醇生产链所需投资的评估。一个综合的农业工业系统可能是一个合适的解决方案,可以满足欧洲在2020年之前部分替代生物乙醇的要求。在锡耶纳省(意大利)内,假设生物精炼系统由当地的剩余能量和物料流提供生产:农业秸秆和地热发电产生的剩余地热。校准输出,以取代省级区域内10%的汽油消耗。已经通过能值方法对实施生产过程所需投资的物理一致性以及生物燃料汽油替代的好处进行了评估。 Emergy是一种基于热力学的指标,有助于识别和测量支持给定系统的所有输入,以一个通用单位表示(太阳能emergy焦耳半)。结果表明,就能值而言,节省汽油的好处几乎使能生物生产的能效投资增加了一倍。还介绍了用天然气代替局部残余地热供热的生物精炼厂的情况。使用剩余秸秆和地热的生物精炼厂生产的生物乙醇单位能值投资(UEI)为9.16E + 08 semj / g(锡耶纳省);它是1.84E + 09 semj / g(如果使用天然气为过程提供燃料)。最后,对本研究评估的生物乙醇UEI与其他研究计算的生物乙醇UEV进行了比较。 (C)2014 Elsevier Ltd.保留所有权利。

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