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首页> 外文期刊>Chemical engineering journal >Dry gas-solid carbonation in fluidized beds of Ca(0H)2 and nanosilica/Ca(OH)2 at ambient temperature and low CO2 pressure
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Dry gas-solid carbonation in fluidized beds of Ca(0H)2 and nanosilica/Ca(OH)2 at ambient temperature and low CO2 pressure

机译:Ca(0H)2和纳米二氧化硅/ Ca(OH)2流化床中环境温度和低CO2压力下的干气固碳化

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This work presents a study on the chemisorption of CO2 by a bed of Ca(0H)2 powder subjected to the flovi/ of a dry CO2/N2 gas mixture (1 vol.% CO2) at ambient temperature and atmospheric pressure. The amount of CO2 and vapor water in the effluent gas from the fluidized bed is analyzed by means of FTIR spectrophotometry. The results obtained indicate that, even in an almost dry atmosphere (RH ≤ 0.01 %), CO2 capture in the fluidized bed occurs by chemisorption on Ca(0H)2, as inferred from the rise of vapor water at the end of the fast carbonation phase. The use of nanosilica as an additive increases the gas-solids contact efficiency and, therefore, enhances CO2 chemisorption on Ca(0H)2 particles. This process is initially activated by free molecular water physisorbed on the material and becomes autocatalyzed by water produced from Ca(OH)2 carbonation. Accordingly, the addition of hydrophilic nanosilica, capable of retaining higher amounts of free molecular water, yields a further enhancement of the CO2 fast sorption capacity.
机译:这项工作提出了在环境温度和大气压下,将Ca(0H)2粉末床化学吸附于干燥的CO2 / N2气体混合物(体积分数为1vol%)的条件下的研究。通过FTIR分光光度法分析流化床流出气体中的CO2和蒸气水量。获得的结果表明,即使在几乎干燥的大气中(相对湿度≤0.01%),由于在快速碳酸化结束时蒸气水的增加,Ca(0H)2的化学吸附也会在流化床中捕获CO2。相。纳米二氧化硅作为添加剂的使用可提高气固接触效率,因此可增强Ca(0H)2颗粒上的CO2化学吸附。此过程最初由吸附在材料上的自由分子水激活,并被Ca(OH)2碳酸化产生的水自动催化。因此,能够保留更多量的游离分子水的亲水性纳米二氧化硅的添加产生了对CO 2快速吸附能力的进一步增强。

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