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由碳酸钾处理的废聚氨酯制备高比表面积活性炭及其表征

Preparation and characterization of high-specific-surface-area activated carbons from K2CO3-treated waste polyurethane.

作者信息

Hayashi J, Yamamoto N, Horikawa T, Muroyama K, Gomes V G

机构信息

Department of Chemical Engineering, Kansai University, Suita, Osaka 564-8680, Japan.

出版信息

J Colloid Interface Sci. 2005 Jan 15;281(2):437-43. doi: 10.1016/j.jcis.2004.08.092.

Abstract

An activated carbon with high specific surface area was prepared from polyurethane foam by chemical activation with K2CO3 and the influences of carbonization temperature and impregnation ratio on the pore structure of the prepared activated carbon were investigated. It was found that the specific surface area of the activated carbon was at a maximum value (about 2800 m(2)/g) at a carbonization temperature of 1073 K and at an impregnation ratio of 1.0. It was concluded that the polyurethane foam structure was modified during impregnation by K2CO3, K2CO3 promoted charring during carbonization, and then the weight loss behavior was changed below 700 and above 1000 K, carbon in the char was consumed by K2CO3 reduction, and this led to the high specific surface area. The prepared activated carbon had a very sharp micropore size distribution, compared with the commercial activated carbon having high specific surface area. The amounts of three organic vapors (benzene, acetone, and octane) adsorbed on the prepared activated carbons was much larger than those on the traditional coconut shell AC and the same as those on the commercial activated carbon except for octane. We surmised that the high specific surface area was due to the modification of the carbonization behavior of polyurethane foam by K2CO3.

摘要

以聚氨酯泡沫为原料,采用碳酸钾进行化学活化制备了高比表面积活性炭,并研究了碳化温度和浸渍比对所制备活性炭孔结构的影响。结果发现,在碳化温度为1073K、浸渍比为1.0时,活性炭的比表面积达到最大值(约2800m²/g)。研究得出,在浸渍过程中碳酸钾对聚氨酯泡沫结构进行了改性,碳酸钾在碳化过程中促进了炭化,进而在700K以下和1000K以上改变了失重行为,炭中的碳被碳酸钾还原消耗,这导致了高比表面积。与具有高比表面积的商业活性炭相比,所制备的活性炭具有非常尖锐的微孔尺寸分布。所制备的活性炭对三种有机蒸气(苯、丙酮和辛烷)的吸附量远大于传统椰壳活性炭,除辛烷外,与商业活性炭的吸附量相同。我们推测高比表面积是由于碳酸钾对聚氨酯泡沫碳化行为的改性所致。

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