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SO_2 retention on CaO/activated carbon sorbents. Part Ⅱ:Effect of the activated carbon support

机译:SO_2保留在CaO /活性炭吸附剂上。第二部分:活性炭载体的作用

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The present paper analyses the role of the activated carbon (AC) properties on the SO_2 uptake capacity of CaO/AC sorbents prepared by AC impregnation or ionic exchange with calcium acetate water solutions. Gas adsorption and mercury porosimetry have been used for textural characterization of the AC and surface oxygen groups have been characterized by temperature programmed desorption (TPD). Thermogravimetry has been used for SO_2 retention tests and CO_2 chemisorption at 300 ℃ for CaO dispersion (d) determinations. The results show that the surface calcium on CaO/AC samples, determined as "Ca loading·CaO dispersion" (parameter Ca(%) ? d), governs the SO_2 uptake. The surface oxygen content is the AC property that mainly controls both the calcium loading and surface calcium on CaO/AC samples, which could be explained by the fact that the surface oxygen lowers the hydrophobic character of the AC supports therefore favouring the interaction with the calcium acetate water solutions. The combination of high calcium loading and dispersion leads to SO_2 uptakes up to 123 mg SO_2/g. The textural properties of the supports have some influence in the calcium loading. However, the effect is masked by the blockage of AC porosity by the calcium loaded.
机译:本文分析了活性炭(AC)性质对通过AC浸渍或离子交换与乙酸钙水溶液制备的CaO / AC吸附剂的SO_2吸收能力的作用。气体吸附和汞孔隙率法已用于AC的结构表征,表面氧基团已通过程序升温脱附(TPD)进行了表征。热重法已用于SO_2保留测试和在300℃下CO_2化学吸附用​​于CaO分散度(d)的测定。结果表明,CaO / AC样品的表面钙含量决定为“ Ca负载·CaO分散度”(参数Ca(%)?d),决定了S​​O_2的吸收。表面氧含量是主要控制CaO / AC样品上钙含量和表面钙含量的AC特性,这可以通过以下事实来解释:表面氧会降低AC载体的疏水特性,因此有利于与钙的相互作用醋酸盐水溶液。高钙含量和分散性的结合导致SO_2的吸收高达123 mg SO_2 / g。载体的质地性质对钙含量有一定影响。但是,这种作用被钙填充对AC孔隙的阻塞所掩盖。

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