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Optimising Carbon Capture and Storage Supply Chains for the European Industry ?

机译:优化欧洲工业碳捕获和储存供应链

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Carbon capture and storage is considered of fundamental importance to achieve a remarkable decarbonisation of steel, cement and refining sectors. To operate carbon capture and storage at scale and address its inherent complexity, mathematical programming techniques can be exploited to optimise such systems. This contribution proposes a Europe-wide, spatially-explicit, time-dependent, carbon capture and storage chains optimisation, based on mixed integer linear programming architecture. Capture plants can be installed in all significant industrial CO2emitters, which comprise 25 steel mills, 111 cement plants and 59 refineries. A techno-economic description of capture plants is provided, based on scale effects and different options. Transport can be operated through pipelines and offshore storage is taken into account in the North Sea and Adriatic area. The analysis allows identifying the most promising sectors and optimal specific plants where capture should be operated, and the evolution of the system throughout the time horizon. Considering a time-varying carbon reduction target, the avoidance cost is 75.6 €/t of CO2for a North Sea targeted network, and decreases by 1.9% when sequestration in the Adriatic Sea is also taken into account.
机译:碳捕获和储存被认为是对钢,水泥和精炼部门的显着脱碳的基础重要性。为了以规模操作碳捕获和存储并解决其固有复杂性,可以利用数学编程技术来优化此类系统。基于混合整数线性编程架构,此贡献提出了欧洲范围,空间显式,时间依赖性,碳捕获和存储链优化。捕获设备可以安装在所有重要的工业CO2EMitters中,包括25个钢厂,111家水泥厂和59种炼油厂。基于规模效应和不同的选择,提供了捕获植物的技术经济描述。运输可以通过管道,在北海和亚得里亚地区考虑到海上储存。分析允许识别最有前景的部门和最佳特定工厂,以及在整个时间范围内的捕获和系统的演变。考虑到时变碳还原目标,避免成本为北海有针对性网络的75.6欧元,而且当亚得里亚海中的封存也被考虑在亚得里亚海中的封存时减少1.9%。

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