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Techno-economic assessment and comparison of absorption and membrane CO_2 capture processes for iron and steel industry

机译:技术经济评估及钢铁工业吸收和膜CO_2捕获过程的比较

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An economic assessment of the post-combustion CO2 capture process for the iron and steel industry is presented herein. Absorption- and membrane-based CO2 capture processes were modeled and simulated using Unisim (R) and MATLAB (R), and an economic assessment based on the multiparameter scaling methodology was used to evaluate the economics of the CO2 capture processes. Flue gases with CO2 concentrations in the range of 4.8-27.3 mol% were selected from a typical steel plant, and their technoeconomic impact on process design and CO2 capture cost was systematically analyzed. As the flue gas CO2 concentration increased from 4.8 to 27.3 mol%, the CO2 capture cost of the absorption-based process without CO2 compression decreased from 73.5 USD2019/tCO(2) to 55.3 USD2019/tCO(2), and that of the membrane-based process decreased from 271.7 USD2019/tCO(2) to 41.7 USD2019/tCO(2). The economics of the CO2 compression process integrated case were also evaluated. This dramatic change in the capture cost for membrane systems is related to the high partial pressure of CO2 being favored for membranes, compared to absorption-based processes. The case study confirms that the membrane-based CO2 capture process becomes more cost-effective and energy-efficient than the absorption-based process as the CO2 concentration of flue gas increases. (C) 2021 Elsevier Ltd. All rights reserved.
机译:本文提出了对钢铁工业后燃烧二氧化碳捕获过程的经济评估。使用Unisim(R)和Matlab(R)模拟和模拟基于吸收和基于膜的CO 2捕获方法,并且使用基于多次缩放方法的经济评估来评估CO2捕获过程的经济学。从典型的钢铁厂选自4.8-27.3摩尔%的CO2浓度的烟气,系统分析了它们对工艺设计和CO2捕获成本的技术影响。随着烟道气CO2浓度从4.8升至27.3摩尔%,无CO2压缩的吸收基础方法的CO 2捕获成本从73.5 USD2019 / TCO(2)降至55.3 USD2019 / TCO(2),以及膜基于271.7美元的过程从271.7美元减少到41.7美元至42美元/ TCO(2)。还评估了CO2压缩过程综合案例的经济学。与基于吸收的过程相比,膜系统的捕获成本与膜的捕获成本有关的刺激性变化与膜的高分压力有关。案例研究证实,随着烟道气的CO2浓度增加,基于膜的二氧化碳捕获过程比基于吸收的方法变得更具成本效益和节能。 (c)2021 elestvier有限公司保留所有权利。

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