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Adsorption of Carbon Dioxide from Gas Streams via Mesoporous Spherical-Silica Particles

机译:adsorption of Carbon Dioxide from Gas streams via mesoporous spherical-silica particles

摘要

A relatively new mesoporous silica sorbent for environmental protection applications (i.e., mesoporous spherical-silica particles [MSPs]), was modified by N-[3(trimethoxysilyl)propyl]ethylenediamine (EDA) solution and was tested for its potential in the separation of carbon dioxide (CO(2)) from flue gas. The CO(2) adsorption capacity of MSP and MSP(EDA) increased with temperature from 20 to 60 degrees C but decreased with temperature from 60 to 100 degrees C. The mechanism of CO(2) adsorption on both samples is mainly attributed to physical interaction regardless of temperature change. The MSP(EDA) have good adsorption performance as compared with EDA-modified zeolite or granular activated carbon conducted in this study and many types of silica sorbents reported in the literature. The cyclic CO(2) adsorption showed that spent MSP(EDA) could be effectively regenerated at 120 degrees C for 25 min and CO(2) adsorption capacity of MSP(EDA) was preserved during 16 cycles of adsorption and thermal regeneration. These results suggests that MSP(EDA) are efficient CO(2) sorbents and can be stably used in the prolonged cyclic operation.
机译:用N- [3(三甲氧基甲硅烷基)丙基]乙二胺(EDA)溶液改性了一种相对较新的环保型中孔二氧化硅吸附剂(即中孔球形二氧化硅颗粒[MSPs]),并测试了其在分离二甲苯中的潜力。烟气中的二氧化碳(CO(2))。 MSP和MSP(EDA)的CO(2)吸附容量随温度从20到60摄氏度而增加,但随温度从60到100摄氏度而下降。这两种样品上CO(2)的吸附机理主要归因于物理相互作用,无论温度如何变化。与本研究中进行的EDA改性沸石或粒状活性炭相比,MSP(EDA)具有良好的吸附性能,文献中报道了许多类型的二氧化硅吸附剂。循环的CO(2)吸附表明,用过的MSP(EDA)可以在120摄氏度下有效再生25分钟,并且在16个吸附和热再生循环中,MSP(EDA)的CO(2)吸附容量得以保留。这些结果表明,MSP(EDA)是有效的CO(2)吸附剂,可以稳定地用于延长的循环操作中。

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