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首页> 外文期刊>Separation and Purification Technology >Evaluation of diamine-appended metal-organic frameworks for post-combustion CO2 capture by vacuum swing adsorption
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Evaluation of diamine-appended metal-organic frameworks for post-combustion CO2 capture by vacuum swing adsorption

机译:通过真空回波吸附评价燃烧后CO2后燃烧后的金属 - 有机框架的评价

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摘要

Five different diamine-appended metal-organic frameworks (MOFs) that show a S-shaped CO2 isotherm are evaluated for post-combustion CO2 capture from dry flue gas using a vacuum swing adsorption process. A comprehensive simulation and optimization study using a multi-objective genetic algorithm is performed. The optimization to maximize CO2 purity and recovery showed a key link between the feed temperature, evacuation pressure and process performance. The MOFs that achieve a target CO2 purity = 95% and recovery = 90%, namely, mmen-Mn-2(dobpdc) and mmen-Mg-2(dobpdc) were optimized to reduce parasitic energy and increase productivity. The adsorbents, mmen-Mn-2(dobpdc), mmen-Mg-2(dobpdc) and Zeolite 13X showed minimum parasitic energies of 142, 152 and 167 kWh(e)/tonne CO2 cap, respectively and maximum productivities of 0.4, 0.45 and 0.65 mol CO2 m(-1) ads s(-1), respectively while achieving CO2 purity 95% and recovery = 90%. The possible low N-2 affinity and the unique shape of the CO2 isotherm were found to be key reasons for a lower energy consumption.
机译:在使用真空回升吸附过程中,评估显示S形CO 2等温线的五种不同的二胺依附金属 - 有机框架(MOF),用于从干烟气捕获。进行了使用多目标遗传算法的全面模拟和优化研究。最大化CO2纯度和恢复的优化显示了进料温度,抽空压力和工艺性能之间的关键环节。实现目标CO2纯度&gt的MOF; = 95%和回收率,即= 90%,即Mmen-Mn-2(DOBPDC)和MMEN-MG-2(DOBPDC)以降低寄生能量并提高生产率。吸附剂,MMEN-MN-2(DOBPDC),MMEN-MG-2(DOBPDC)和沸石13X显示出最小寄生能量为142,152和167 kWh(e)/吨CO2帽,最大产品为0.4,0.45和0.65mol CO 2 M(-1)ADS S(-1),同时实现CO 2纯度95%并回收率。= 90%。发现可能的低N-2亲和力和CO 2等温线的独特形状是较低能量消耗的主要原因。

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