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饮用水深度处理用煤基活性炭吸附性能表征
引用本文:万超然,解强,刘德钱,周逸寰,吴昊天,杨帅. 饮用水深度处理用煤基活性炭吸附性能表征[J]. 矿业科学学报, 2021, 6(4): 487-496. DOI: 10.19606/j.cnki.jmst.2021.04.014
作者姓名:万超然  解强  刘德钱  周逸寰  吴昊天  杨帅
作者单位:中国矿业大学(北京)化学与环境工程学院,北京 100083
基金项目:国家重点基础研究发展计划2014CB238905
摘    要:活性炭是臭氧-生物活性炭(O3-BAC)饮用水深度净化工艺中的核心材料,准确评价活性炭的吸附性能是活性炭选型的基础.本研究采制我国4种典型商品煤基活性炭样品,同时选取一种木质炭作为对比,测定炭样的碘值、亚甲蓝值、焦糖脱色率等常规吸附性能指标以及对丹宁酸(TA)和腐殖酸(HA)的静态吸附容量;用快速小柱实验(RSSCT)...

关 键 词:煤基活性炭  饮用水深度处理  吸附性能  快速小柱穿透实验
收稿时间:2020-10-21

Adsorption capacity of coal-based activated carbon in advanced treatment of drinking water
Affiliation:School of Chemical & Environmental Engineering, China University of Mining and Technology-Beijing, Beijing 100083, China
Abstract:Activated carbon is the core material in the process of advanced treatment of drinking water. Evaluating the adsorption capacity of activated carbon accurately is the basis of its selection in practical applications. In this study, four typical commercial coal-based activated carbon samples were collected, and a wood-based activated carbon was selected as a comparison. The conventional adsorption performance indexes such as iodine value, methylene blue value, caramel decolorization rate and static adsorption capacity of tannic acid (TA) and humic acid (HA) were determined. Rapid Small-Scale Column Tests (RSSCT) was used to determine the breakthrough curves of activated carbon adsorption on water samples containing TA and HA to evaluate the dynamic adsorption performance of it. The pore structure and surface micro-topography of activated carbons were characterized by N2 adsorption isotherms and scanning electron microscopy energy dispersive X ray analysis (SEM-EDS). Frenkel-Halsey-Hill model was used to calculate the fractal of activate carbons. The results show that the iodine value, methylene blue value, caramel decolorization rate, tannin acid isothermal adsorption capacity and humic acid isothermal adsorption capacity are obviously correlated with the pore development degree of activated carbon. The anthracite-based activated carbon had the best dynamic adsorption performance in the RSSCT, indicating that the dynamic adsorption performance of activated carbon was less correlated with the pore structure of activated carbon and more correlated with the surface roughness. Therefore, the activated carbon samples can be initially selected by the surface roughness. And then the RSSCT result of the HA is used to select an activated carbon with optimized adsorption capacity under the practical conditions of advanced drinking water treatment.
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