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Optimization-based identification of CO2 capture and utilization processing paths for life cycle greenhouse gas reduction and economic benefits

机译:基于优化的CO2捕获和利用处理路径终身循环温室气体减少和经济效益的识别

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摘要

This paper introduces a mathematical formulation to identify promising CO2 capture and utilization (CCU) processing paths and assess their production rates by solving an optimization problem. The problem is cast as a multi-objective one by simultaneously maximizing a net profit and life cycle greenhouse gas (GHG) reduction. Three case studies are illustrated using an exemplary CCU processing network. The results indicate the optimal solution is greatly influenced by the scale of CO2 emission source, market demand, and hydrogen availability. Moreover, with the current system of measuring the GHG reduction regarding a business-as-usual level, if the aim is to achieve a GHG reduction within a national boundary, the question of whether CCU plants producing a product of same functionality through conventional means, which the CO2-based product can replace, exists in the country can come into consideration. This systematic identification will assist decision-making regarding future R&D investment and construction of large-scale CCU plants.
机译:本文介绍了一种数学制定,以确定有前途的二氧化碳捕获和利用(CCU)处理路径,并通过解决优化问题来评估其生产率。通过同时最大化净利润和生命周期温室气体(GHG)减少,问题将作为多目标举动。使用示例性CCU处理网络示出了三种情况研究。结果表明最佳解决方案受到二氧化碳排放源,市场需求和氢可用性的规模极大影响。此外,随着目前测量关于业务和通常水平的温室气体减少的系统,如果目的是在国家边界内实现GHG减少,则通过常规手段产生CCU工厂的产品的产品,哪种基于CO2的产品可以取代,存在于国家可以考虑。该系统识别将协助关于未来研发投资和大规模CCU工厂的建设的决策。

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