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Microwave assisted vacuum regeneration for CO2 capture from wet flue gas

机译:微波辅助真空再生从湿烟道气中捕集CO2

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摘要

Small scale processing of flue gas with the goal of enriching the stream in CO2 for sequestration or use is an interesting application area for adsorption technology. For example, boiler flue gas which may contain up to 10 % (v/v) CO2 in air can be readily enriched to a stream containing >70 % CO2 which may be ideal for use within a process such as acidification, precipitation, stripping, etc. The challenge in these applications is producing high purity CO2 without excessive energy use and handling high concentrations of water vapor without the added complication of a pre-drying stage. In this study we have examined the use of microwave assisted vacuum as a way of rapidly directing thermal energy to the adsorbent surface to liberate water and CO2. Preliminary "proof-of-concept" pump down experiments were conducted on a small transparent adsorption column of 13X zeolite pre-saturated with a 12 % CO2 in N2 gas mixture. Both wet and dry gas tests were conducted. The addition of microwave radiation improved the rapid desorption of CO2 and water and improved the integrated CO2 purity in the blowdown stream from 60 to 80 %. In the case of dry CO2 mixtures, the enhancement is due to microwave heating of the 13X zeolite facilitated by the high cation density in the faujasite structure. In the case of water and CO2 desorption, the temperature rise of the adsorbent upon microwave heating was much lower than that predicted by simple heating suggesting that the microwave radiation is absorbed primarily by the adsorbed water. A simplified energy analysis suggests that brief exposure of an adsorbent to microwave radiation will raise the required vacuum level for regeneration of high humidity flue gas streams and may lead to an overall lower energy penalty. The selective ability of microwave radiation to target different species provides scope for optimized, compact, flue gas treatment systems.
机译:以富集二氧化碳中的物流以进行封存或使用为目标的小规模烟气处理是吸附技术的一个有趣的应用领域。例如,锅炉烟气中的空气中二氧化碳含量最高为10%(v / v),可以很容易地富集到含有> 70%CO2的物流中,这对于在酸化,沉淀,汽提,这些应用中的挑战是在不消耗过多能源的情况下生产高纯度的CO2,以及在不增加预干燥阶段复杂性的情况下处理高浓度的水蒸气。在这项研究中,我们研究了微波辅助真空作为快速将热能引导至吸附剂表面以释放水和二氧化碳的一种方法。初步的“概念验证”抽空实验是在13X沸石的小型透明吸附柱上进行的,该吸附柱已预饱和了N2气体混合物中的12%CO2。进行了湿气和干气测试。微波辐射的添加改善了二氧化碳和水的快速解吸,并将排污物流中的综合二氧化碳纯度从60%提高到80%。在干燥的二氧化碳混合物的情况下,这种增强是由于微波加热了八面沸石结构中的高阳离子密度而促进了13X沸石的加热。在水和CO 2解吸的情况下,微波加热时吸附剂的温度升高远低于简单加热所预测的温度升高,这表明微波辐射主要被吸附的水吸收。简化的能量分析表明,吸附剂在微波辐射下的短暂暴露将提高高湿度烟道气流再生所需的真空度,并可能导致总体上降低能量消耗。微波辐射针对不同物种的选择性能力为优化,紧凑的烟气处理系统提供了空间。

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