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首页> 外文期刊>Chemical Engineering Science >Adsorption and regeneration study of the mesoporous adsorbent SBA-15 adapted to the capture/separation of CO2 and CH4
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Adsorption and regeneration study of the mesoporous adsorbent SBA-15 adapted to the capture/separation of CO2 and CH4

机译:适于捕获/分离CO2和CH4的中孔吸附剂SBA-15的吸附和再生研究

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摘要

Carbon dioxide (CO2) and methane (CH4) are considered to be major greenhouse gases that have a direct impact on the world's atmosphere. It is critical that effective separation and capture technologies be developed to reduce the amount of greenhouse gases into our environment. Present liquid and solid capture and separation technologies cannot realize the regeneration of the saturated solution/adsorbent at ambient temperature (25 degrees C), which is a critical feature for the proper operation of these types of pressure swing systems. The present study uses triethanolamine (TEA) to modify the surface of SBA-15 and the resulted adsorbent showed promising performance in separating CO2 from its mixture with CH4. TEA did not change the ordered structure of SBA-15, but to enhance its selectivity for CO2. The modification enlarged the difference between the equilibrium adsorption of CO2 and that of other gases. The separation coefficient between CO2 and CH4, evaluated on the basis of breakthrough curves, enlarged to as much as more than seven times due to the modification. In addition, the modification allowed the adsorption of CO2 reversible, and the saturated adsorbent was regenerated at the ambient temperature either by purging it with the purified gas or by vacuuming. Repeated adsorption/regeneration experiments proved the stability of the separation performance of the adsorbent. (c) 2006 Elsevier Ltd. All rights reserved.
机译:二氧化碳(CO2)和甲烷(CH4)被认为是对世界大气有直接影响的主要温室气体。开发有效的分离和捕获技术以减少进入我们环境的温室气体数量至关重要。当前的液体和固体捕获和分离技术无法在环境温度(25摄氏度)下实现饱和溶液/吸附剂的再生,这对于这些类型的变压系统的正常运行是至关重要的。本研究使用三乙醇胺(TEA)修饰SBA-15的表面,所得吸附剂显示出从其与CH4的混合物中分离出CO2的良好性能。 TEA不会改变SBA-15的有序结构,但会增强其对CO2的选择性。该修改扩大了CO 2和其他气体的平衡吸附之间的差异。根据穿透曲线评估的CO2和CH4之间的分离系数由于修改而扩大到多达七倍。另外,该改性使得可逆地吸附CO 2,并且饱和的吸附剂在环境温度下通过用净化气体吹扫或通过真空来再生。重复的吸附/再生实验证明了吸附剂分离性能的稳定性。 (c)2006 Elsevier Ltd.保留所有权利。

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