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首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Adsorption Equilibrium and Desorption Activation Energy of Water Vapor on Activated Carbon Modified by an Oxidation and Reduction Treatment
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Adsorption Equilibrium and Desorption Activation Energy of Water Vapor on Activated Carbon Modified by an Oxidation and Reduction Treatment

机译:氧化还原处理改性活性炭对水蒸气的吸附平衡和解吸活化能

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摘要

Activated carbon (AC) was modified by oxidation with nitric acid and microwave-assisted reduction. The textural properties and surface oxygen content as well as the surface acidities of the ACs studied were determined by nitrogen adsorption, X-ray photoelectron spectrometry, and Boehm titration. The adsorption isotherms of the water vapor were measured, and temperature-programmed desorption experiments were conducted to estimate the desorption activation energy, E_d, of water on the ACs. The results indicated that the oxidation increased the value of E_d and the adsorption capacity of water on AC in low relative humidity (RH) but decreased the adsorption capacity of water in high RH. The reduction decreased the value of E_d and the adsorption capacity of water on AC over the whole RH range. The modification of AC first by the oxidation treatment of nitric acid and then by microwave-assisted reduction treatment not only increased the adsorption capacity of water in a high RH but also greatly decreased the value of E_d. The microwave-assisted reduction of virgin or oxidized AC with hydrogen should yield a lower E_d and higher adsorption capacity of water in high RH than the reduction of that with nitrogen.
机译:活性炭(AC)通过硝酸氧化和微波辅助还原进行改性。通过氮气吸附,X射线光电子能谱和Boehm滴定法确定所研究AC的质构性质和表面氧含量以及表面酸度。测量了水蒸气的吸附等温线,并进行了程序升温脱附实验,以估算AC上水的脱附活化能E_d。结果表明,在低相对湿度(RH)下,氧化增加了E_d值,增加了水对AC的吸附能力,但在高RH下降低了水的吸附能力。还原降低了整个湿度范围内的E_d值和水在AC上的吸附能力。首先通过硝酸的氧化处理,再通过微波辅助的还原处理,对AC进行改性,不仅提高了高RH下水的吸附能力,而且大大降低了E_d值。与氢的还原相比,微波辅助的氢在氢的作用下还原原始的或氧化的AC会产生较低的E_d和较高的水吸附能力。

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