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首页> 外文期刊>Journal of Cleaner Production >Conceptual MINLP approach to the development of a CO_2 supply chain network - Simultaneous consideration of capture and utilization process flowsheets
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Conceptual MINLP approach to the development of a CO_2 supply chain network - Simultaneous consideration of capture and utilization process flowsheets

机译:CO_2供应链网络开发的概念MINLP方法 - 同时考虑捕获和利用过程流程

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A large fraction of anthropogenic CO2 emissions comes from large point sources such as power plants, petroleum refineries, and large industrial facilities. A significant decrease of these CO(2 )emissions can be achieved with CO2 capture, utilization, and storage (CCUS) technologies. This study proposes a conceptually simplified model for the optimization of combined CO2 supply networks and capture and utilization technologies by the mixed-integer non-linear programming (MINLP) approach. The objective is to maximize the profit of CCUS technologies, considering chemisorption using methyl-diethanolamine (MDEA) as a capture technology and conversion of CO2 to CH3OH as a utilization technology. Additionally, avoided tax from reduced CO2 emissions is considered as a revenue. A hypothetical case study of five larger point sources of CO2 was investigated, namely coal power plants, biogas plant, aluminium production plant and two cement plants. Two scenarios were considered: i) Scenario A considering different values of the CO2 tax, and ii) Scenario B considering different flue gas flowrates at different values of the CO2 tax. The results show the potential of model-based optimization in reducing the amount of CO2 in the atmosphere by CCUS technology. Furthermore, the results in Scenario A show that CCUS technology is only profitable if the price of CO2 emissions is higher than 110 euro /t emitted CO2. Moreover, the results in Scenario B show that both the profit and the production of CH3OH depend to a large extent on the flue gas flow.
机译:大部分的人为二氧化碳排放来自大点来源,如发电厂,石油炼油厂和大型工业设施。通过CO2捕获,利用率和储存(CCU)技术,可以实现这些CO(2)排放的显着降低。本研究提出了一种概念上简化的模型,用于通过混合整数非线性编程(MINLP)方法优化CO2供应网络和捕获和利用技术的优化。目的是最大化CCU技术的利润,考虑使用甲基二乙醇胺(MDEA)作为捕获技术和CO 2转化为CH3OH作为利用技术的捕获技术和转化。此外,减少二氧化碳排放量的避免税被视为收入。研究了对五种较大点源二氧化碳来源的假设案例研究,即煤发电厂,沼气厂,铝生产厂和两种水泥厂。考虑到二氧化碳税的不同价值,II)考虑不同价值的CO2税,考虑不同烟气流量的情况B,考虑二氧化碳税的不同价值,以及考虑不同烟气流量的情况。结果表明,基于模型的优化通过CCU技术降低了大气中的二氧化碳量的潜力。此外,场景的结果表明,如果二氧化碳排放的价格高于110欧元/ T发射二氧化碳,CCUS技术才能有利可图。此外,方案B中的结果表明,CH3OH的利润和生产均在很大程度上取决于烟道气流。

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