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首页> 外文期刊>Journal of Cleaner Production >Development of an optimization mathematical model by applying an integrated environmental indicator for selecting alternatives in cleaner production programs
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Development of an optimization mathematical model by applying an integrated environmental indicator for selecting alternatives in cleaner production programs

机译:通过应用集成的环境指标在清洁生产计划中选择替代品来开发优化数学模型

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The purpose of this work is to propose an optimized mathematical model to facilitate the selection alternatives in cleaner production (CP) programs. On the basics of goal programming, this study develops an integer-programming model for CP option selection in case of multi-innovation objects and multi alternative scenarios. With the constraints given, the model defines which objects, and which alternatives can be used for innovation to obtain the optimal objective. The model is tested and proved in a cassava starch factory in Tayninh, Vietnam. Based on production accounting, innovation objects and their CP-alternatives in this factory are identified. Baseline integrated environment impact of the factory is 11,882 person equivalent (PE), in which bulk waste is 52.7%, global warming is 11.9%, photochemical ozone creation is 10.8%, energy is 10%, and the rest is 14.5%. With 135,000 USD for environmental impact reduction, the maximum reduction potentials obtained from solving the model are 8335.2 PE and 878.68 PE in case of minimization of integrated environment indicator and global warming, respectively. The results show that this model works excellently as a support alternative selection tool for CP programs. This study also develops a new cyclic methodology for CP programs based on applying the integer programming model. (C) 2017 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是提出一种优化的数学模型,以促进清洁生产(CP)程序中的选择替代方案。在目标规划的基础上,本研究针对多重创新对象和多种替代方案的情况,开发了一种用于CP选择的整数规划模型。在给定约束的情况下,模型定义了哪些对象以及哪些替代方法可用于创新以获得最佳目标。该模型在越南Tayninh的木薯淀粉工厂进行了测试和验证。根据生产核算,确定该工厂中的创新对象及其CP替代品。工厂对基线的综合环境影响为11,882人当量(PE),其中大宗废物占52.7%,全球变暖率为11.9%,光化学臭氧产生率为10.8%,能源为10%,其余为14.5%。以135,000美元用于减少环境影响,在最小化综合环境指标和全球变暖的情况下,通过求解模型获得的最大减少潜力分别为8335.2 PE和878.68 PE。结果表明,该模型非常适合作为CP程序的支持替代选择工具。本研究还基于应用整数编程模型,为CP程序开发了一种新的循环方法。 (C)2017 Elsevier Ltd.保留所有权利。

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