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Evaluating Regeneration Options of Solid Amine Sorbentfor CO2 Removal

机译:评估固体胺吸附剂的再生选择用于去除二氧化碳

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摘要

Biogas is one of the most popular alternative energy resources to replace fossil fuels. The product of anaerobic fermentation in a digester contains several impurities such as H2S and especially CO2 that needs to be removed in order to upgrade the gas quality. Supported amine sorbents (SAS) might provide an attractive option to remove these impurities. However, little is known about the regeneration of the sorbent. This study evaluates experimentally and by modeling the options for regeneration of the SAS. Theoretically, pressure swing adsorption without purge flow is the most energy efficient method (1.7 MJ/kg CO2). It was found that when using a purge flow the desorption rate is strongly influenced by the equilibrium between the gas and adsorbed phase. With elevated temperature (>80 °C) both the working capacity and the productivity increase significantly. Finally, an energy evaluation for a typical biogas case study is carried out, showing the trade-offs between power consumption, heat demand, and sorbent inventory. Interestingly, at the expense of a somewhathigher power consumption, the use of inexpensive air as purge gasat 60 °C could be an attractive option, but case-specific costsare needed to identify the economic optimum.
机译:沼气是替代化石燃料的最受欢迎的替代能源之一。消化池中厌氧发酵的产物包含多种杂质,例如H2S,尤其是CO2,需要除去这些杂质以提高气体质量。负载型胺吸附剂(SAS)可能是去除这些杂质的有吸引力的选择。但是,关于吸附剂的再生知之甚少。这项研究通过实验和通过对SAS再生的选项进行建模来评估。从理论上讲,没有吹扫气流的变压吸附是最节能的方法(1.7 MJ / kg CO2)。已经发现,当使用吹扫流时,解吸速率受到气相和吸附相之间平衡的强烈影响。随着温度升高(> 80°C),工作能力和生产率均显着提高。最后,针对典型的沼气案例进行了能源评估,显示了能耗,热量需求和吸附剂库存之间的权衡。有趣的是,牺牲了一些更高的功耗,使用廉价的空气作为吹扫气在60°C时可能是一个有吸引力的选择,但因案例而异的成本需要确定经济最佳方案。

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