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Hybrid physical-chemical absorption process for carbon capture with strategy of high-pressure absorption/medium-pressure desorption

机译:采用高压吸收/中压解吸策略的碳吸收物理化学吸收混合工艺

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Based on the conception of controlling the total energy consumption of CO2 capture process, this work proposed a hybrid physical-chemical absorption process, combined the traditional methods of physical absorption and chemical absorption, and adopted the strategy of high-pressure absorption/medium-pressure desorption, in order to achieve the reduction of total energy consumption of CO2 capture technology. The proposed process consisted of three main steps: physical absorption and desorption, chemical absorption and desorption, and compression with intercooling. Commercially used dimethyl ether of polyethylene glycol and methyl diethanolamine were selected as the physical absorbent and chemical absorbent, respectively. The process scheme was constructed and simulated for capturing CO2 from industrial high-pressure and CO2-rich gas to liquid CO2 product under pressure of 15 MPa. The total energy consumption was 0.1810 MWh.t(-1) CO2, which was markedly lower than that of the traditional methods. Sensitivity analyses were carried out to investigate the effects of the key system parameters, including the desorption pressure and the allocation of the capture rate between the physical absorption and chemical absorption, on the performance of the hybrid physical-chemical absorption process. Additionally, the mechanism of energy conservation of hybrid physical-chemical absorption process was further elaborated in a strategy of high-pressure absorption/medium-pressure desorption.
机译:基于控制CO2捕集过程总能耗的概念,本工作提出了一种物理化学吸收混合过程,将传统的物理吸收与化学吸收方法相结合,并采用了高压吸收/中压策略。脱附,以实现减少二氧化碳捕集技术总能耗。拟议的过程包括三个主要步骤:物理吸收和解吸,化学吸收和解吸以及中间冷却压缩。分别选择市售的聚乙二醇二甲醚和甲基二乙醇胺作为物理吸收剂和化学吸收剂。构建并模拟了在15 MPa的压力下从工业高压和富含CO2的气体中捕获CO2转化为液态CO2产品的过程方案。总能耗为0.1810 MWh.t(-1)CO2,明显低于传统方法。进行了敏感性分析,以研究关键系统参数(包括解吸压力和物理吸收与化学吸收之间的捕获率分配)对混合物理化学吸收过程性能的影响。此外,在高压吸收/中压解吸的策略中,进一步阐述了混合物理化学吸收过程的节能机理。

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