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活性炭改性对催化剂脱砷性能的影响 被引量:2
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作者 冯琪 姜增琨 +5 位作者 李阳 鞠雅娜 赵秦峰 李天舒 钟海军 葛少辉 《化工进展》 EI CAS CSCD 北大核心 2021年第6期3215-3223,共9页
以K_(2)CO_(3)对活性炭进行化学改性,考察K_(2)CO_(3)加入量对活性炭比表面积、孔容及孔径等物化性质的影响。随K_(2)CO_(3)与活性炭质量比(碱炭比)的增大,活性炭的比表面积呈现先增加后减小的趋势。当碱炭比为6∶1时,活性炭比表面积由... 以K_(2)CO_(3)对活性炭进行化学改性,考察K_(2)CO_(3)加入量对活性炭比表面积、孔容及孔径等物化性质的影响。随K_(2)CO_(3)与活性炭质量比(碱炭比)的增大,活性炭的比表面积呈现先增加后减小的趋势。当碱炭比为6∶1时,活性炭比表面积由初始的653.3m^(2)/g上升至1333.6m^(2)/g。以小分子砷化物三乙胂和大分子砷化物三苯基胂为模型化合物,配制高砷催化裂化汽油,测定催化剂的砷容和脱砷效率。实验结果表明,改性后的催化剂具有丰富的中孔-大孔多级孔结构,表现出更加优异的脱砷性能:微孔保证催化剂具有大的比表面积,使得活性组分能够高效分散;中孔-大孔有利于液态石油烃介质的扩散,从而增大砷化物与活性相的作用,提高催化剂脱砷效率。 展开更多
关键词 活性炭 碳酸钾改性 吸附 载体 催化剂
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NO adsorption and temperature programmed desorption on K_2CO_3 modified activated carbons 被引量:2
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作者 YANG Dai-jun MA Xiao-wei +2 位作者 LV Hong LI Bing ZHANG Cun-man 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第10期2339-2348,共10页
Fuel cell stacks as the automotive power source can be severely poisoned by a trace amount of NOx in atmosphere,which makes it necessary to provide clean air for fuel cell vehicles.In this work,activating commercial a... Fuel cell stacks as the automotive power source can be severely poisoned by a trace amount of NOx in atmosphere,which makes it necessary to provide clean air for fuel cell vehicles.In this work,activating commercial activated carbons with K2CO3 for the large enhancement of NO capture was studied.K2CO3 modified activated carbons(K2CO3 ACs)were prepared by impregnating activate carbons in K2CO3 solution under ultrasound treatment,followed by temperature programmed baking at 800 oC.The dynamic NO flow tests on K2CO3 ACs at room temperature indicated that NO adsorption capacity reached the maximum(96 mg/g)when K2CO3 loading was 19.5 wt%,which corresponded to a specific surface area of 1196.1 m2/g and total pore volume of 0.70 cm3/g.The ten-fold enhancement of NO adsorption on K2CO3 ACs compared to the unimpregnated activated carbon was mainly attributed to the formation of potassium nitrite,which was confirmed by FTIR and temperature programmed desorption measurements.Regeneration tests of NO adsorption on the optimum sample revealed that 76%of the NO adsorption capacity could be remained after the fourth cycle. 展开更多
关键词 activated carbon potassium carbonate MODIFICATION NO adsorption temperature programmed desorption
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