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Production and characterization of activated carbon from sour cherry stones by zinc chloride

机译:氯化锌从酸性樱桃石中生产和表征活性炭

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The purpose of this study is to produce the low-cost activated carbon from the sour cherry (Prunus cerasus L) stones, known as a waste of fruit juice industry, by chemical activation using zinc chloride. The effects of the activation temperature and the impregnation ratio on the surface and chemical properties of activated carbon were investigated. Also, the mathematical correlation between the activation process variables and outputs such as activated carbon yield and surface area were examined by using the Response surface methodology. The activation temperatures and impregnation ratios were selected at the range of 500-900 ℃ and 1:1-4:1, respectively. In the study, it was observed that the optimum conditions for the activated carbon production were activation temperature of 700 ℃ and impregnation ratio of 3:1. The optimum conditions resulted in an activated carbon with a carbon content of 80.78% and a yield of 16.22%, while the Brunauer-Emmett-Teller surface area evaluated using nitrogen adsorption isotherm corresponds to 1704 m~2 g~(-1) with the total pore volume of 1.566 cm~3 g~(-1). The activated carbon was het-eroporous with the micropore volume contributing to 62.84%. Also, experimental results showed that the activation temperature and the impregnation ratio have significant effects on the pore structure of the activated carbon and sour cherry stones seemed to be an alternative precursor for the commercial activated carbon productions.
机译:这项研究的目的是通过使用氯化锌进行化学活化,从酸樱桃(Prunus cerasus L)石头生产低成本的活性炭,这种酸樱桃石头被称为果汁工业的废物。研究了活化温度和浸渍率对活性炭表面和化学性质的影响。另外,通过使用响应表面方法,研究了活化过程变量与输出之间的数学相关性,例如活性炭产率和表面积。活化温度和浸渍率分别选择在500-900℃和1:1-4:1的范围内。在研究中,观察到活性炭生产的最佳条件是活化温度为700℃,浸渍比为3:1。在最佳条件下产生的活性炭的碳含量为80.78%,产率为16.22%,而用氮吸附等温线评价的Brunauer-Emmett-Teller表面积相当于1704 m〜2 g〜(-1)。总孔体积为1.566 cm〜3 g〜(-1)。活性炭是异质多孔的,微孔体积占62.84%。而且,实验结果表明,活化温度和浸渍率对活性炭的孔结构具有显着影响,并且酸樱桃石似乎是商业活性炭生产的替代前体。

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