Kim Dae Jung, Yie Jae Eui
Department of Chemistry, University of Utah, Salt Lake City, UT 84112, USA.
J Colloid Interface Sci. 2005 Mar 15;283(2):311-5. doi: 10.1016/j.jcis.2004.09.035.
In this paper, adsorption characteristics of methyl mercaptan on virgin activated carbon and copper chloride impregnated activated carbons were studied by using a dynamic adsorption method in a fixed bed. The activated carbons were characterized by nitrogen adsorption, XRD, TGA and solubility tests. The impregnation of copper chloride on the activated carbon significantly enhanced the adsorption capacity of methyl mercaptan, despite a notable decrease in microporosity. It is likely that copper chloride may act as adsorption site for methyl mercaptan. Copper chloride on the activated carbon in a range of 3-20 wt% Cu content was present mostly in the amorphous form of CuCl(2), according to the results of the solubility, XRD and TGA tests. Starting at 10 wt% in Cu loading, the adsorption capacity for methyl mercaptan decreases gradually. It is likely that a decrease in the degree of copper chloride dispersion and an accessibility of small pores may lead to the decrease in the adsorption capacity of the activated carbon for methyl mercaptan.
本文采用固定床动态吸附法研究了甲硫醇在原始活性炭和氯化铜浸渍活性炭上的吸附特性。通过氮气吸附、XRD、TGA和溶解度测试对活性炭进行了表征。尽管微孔率显著降低,但氯化铜浸渍在活性炭上显著提高了甲硫醇的吸附容量。氯化铜可能作为甲硫醇的吸附位点。根据溶解度、XRD和TGA测试结果,活性炭上铜含量在3-20 wt%范围内的氯化铜大多以CuCl₂的无定形形式存在。从铜负载量为10 wt%开始,对甲硫醇的吸附容量逐渐降低。氯化铜分散度的降低和小孔的可及性可能导致活性炭对甲硫醇的吸附容量下降。