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Estimation of the environmental impact of a petrochemical process using coupled LCA and exergy analysis

机译:使用LCA和(火用)分析估算石化工艺对环境的影响

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摘要

Reduction of the environmental impact in the oil and gas industry is an ecological and financial issue for process development and design. Currently. the environmental impact of a process is often determined by life cycle assessment (LCA). But exergy analysis has also been proposed to assess process sustainability. To illustrate the potential of coupling LCA and exergy analysis in the petroleum industry, a naphtha catalytic reforming process has been selected and evaluated in terms of climate change, one of the classical environmental impacts used in LCA. LCA and exergy analysis are used together to show how greenhouse gas (GHG) emissions and a thermodynamic indicator (I-p) related to exergy are modified when the process parameters are varied (feed characteristics, inlet reactor temperature, type of utilities). A positive relationship between GHG emissions and Ip has been obtained. It does not depend upon the feed characteristics and can be used for process development without performing a full LCA. The methodology has been extended to take into account natural resources depletion, greenhouse gas emissions and quality of co-products during process development and design for a given product specification. Two catalytic reforming process variants (i.e. processing same inputs and producing same outputs with different internal unit operations arrangement; for this reason, these process variants have the same function) are compared from these previous different points of view. LCA and exergy analysis are shown to be complementary tools.
机译:减少石油和天然气工业中的环境影响是工艺开发和设计的生态和财务问题。目前。过程的环境影响通常由生命周期评估(LCA)决定。但是,还提出了火用分析来评估过程的可持续性。为了说明将LCA与火用分析耦合在石油工业中的潜力,已选择并根据气候变化对石脑油催化重整工艺进行了评估,这是LCA中使用的经典环境影响之一。 LCA和火用分析一起显示了当工艺参数(进料特性,进口反应器温度,公用事业类型)变化时,如何修正温室气体(GHG)排放量和与火用相关的热力学指标(I-p)。温室气体排放与Ip之间存在正相关关系。它不依赖于进料特性,并且可以在不执行完整LCA的情况下用于过程开发。扩展了该方法,以考虑到在给定产品规格的过程开发和设计过程中自然资源消耗,温室气体排放和副产品质量。从这些先前的不同观点比较了两种催化重整方法变体(即处理相同的输入并以不同的内部单元操作布置产生相同的输出;由于这个原因,这些方法变体具有相同的功能)。 LCA和火用分析被证明是互补的工具。

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