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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Economic and life cycle environmental optimization of forest-based biorefinery supply chains for bioenergy and biofuel production
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Economic and life cycle environmental optimization of forest-based biorefinery supply chains for bioenergy and biofuel production

机译:森林生物精炼供应链用于生物能源和生物燃料生产的经济和生命周期环境优化

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摘要

The increased use of forest and wood residues for the production of bioenergy, biofuels, and other bioproducts is essential to enhance the economic performance of forest products industries and reduce environmental impacts. Bi-objective optimization models have been developed recently to support the optimum design of either bioenergy or biofuels supply chains considering economic as well as environmental impacts. In an integrated bioenergy and biofuels supply chain where biofuel producers are also users of the generated energy, the energy flows among co-located supply chain entities affect the environmental and economic objective functions and consequently the optimal design of the supply chain, therefore, the energy flows have to be considered in the optimization model. This type of bi-objective problem has not been modeled in previous studies. In this paper, a bi-objective biorefinery supply chain optimization model for the production of bioenergy and biofuels using forest and wood residues is developed. The model considers energy flows among co-located technologies and is formulated as a multi-period mixed integer program (MIP) that calculates the net present value (NPV) and the life cycle greenhouse gas (GHG) emission savings associated with the biorefinery supply chain. The applicability of the proposed model is illustrated through a case study in British Columbia, Canada. (C) 2015 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:增加森林和木材残余物用于生产生物能源,生物燃料和其他生物产品的使用,对于增强林产品行业的经济绩效并减少环境影响至关重要。考虑到经济和环境影响,最近已经开发了双目标优化模型来支持生物能源或生物燃料供应链的优化设计。在生物燃料生产者也是所产生能量的使用者的生物能源和生物燃料一体化供应链中,位于同一地点的供应链实体之间的能量流会影响环境和经济目标功能,进而影响供应链的优化设计,因此会影响能源优化模型中必须考虑流量。这种类型的双目标问题尚未在以前的研究中建模。本文建立了一种利用森林和木材残留物生产生物能源和生物燃料的双目标生物精炼供应链优化模型。该模型考虑了位于同一地点的技术之间的能量流,并被公式化为多周期混合整数程序(MIP),该程序计算与生物炼制厂供应链相关的净现值(NPV)和生命周期温室气体(GHG)排放节省量。该模型的适用性通过加拿大不列颠哥伦比亚省的一个案例研究得到了说明。 (C)2015化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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