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Environmental Life Cycle Assessment as a tool for Process Optimisation in the Utility Sector

机译:环境生命周期评估作为公用事业部门流程优化工具

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A methodology is presented to calculate the optimum operating conditions of a petrochemical plant utility sector,to minimize the overall Life Cycle Environmental Impact.The battery limits of the system studied are extended to include the relevant environmental impacts corresponding to the electricity imported generated in thermoelectric,hydroelectric and nuclear plants.The Overall Environmental Impact is calculated as a weighted sum of the following Potential Environmental Impact categories: Global Warming,Acidification,Eutrophication,Photochemical Oxidation,Ozone Depletion,Human Toxicity and Ecotoxicity.The contribution of each component emission to these environmental categories is evaluated multiplying its flow rate by the corresponding Heijungs factor.A Mixed Integer Non Linear Programming problem is formulated and solved in GAMS.Global Warming is the most relevant contribution.Significant reductions in the Overall Environmental Impact and particularly in Global Warming are achieved selecting the pressure and temperature of high,medium and low pressure headers and the optional drivers that can be electrical motors or steam turbines.Improvements are also reported in the operating cost,natural gas,water and electricity consumption.
机译:提出了一种方法来计算石化植物公用事业部门的最佳运行条件,以最大限度地减少整体生命周期的环境影响。研究的系统的电池限制延伸到包括对应于热电产生的电力的相关环境影响。水电和核植物。整体环境影响是根据以下潜在环境影响的加权总和计算:全球变暖,酸化,富营养化,光化学氧化,臭氧耗尽,人类毒性和生态毒性。每个组分排放对这些环境的贡献评估类别将其流量乘以相应的Heijungs因子。混合整数非线性规划问题在Gams中制定并解决了。Global变暖是最相关的贡献。实现整体环境影响的贡献,尤其是在全球变暖中的显着减少D选择高,中型和低压头的压力和温度和可作为电动机或蒸汽涡轮机的可选驱动器。在运营成本,天然气,水和电力消耗中也报告了可用电动机或蒸汽涡轮机的可选驱动器。

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