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碱性活性炭吸附H2S的动力学及机理

Kinetics and mechanisms of H2S adsorption by alkaline activated carbon.

作者信息

Yan Rong, Liang David Tee, Tsen Leslie, Tay Joo Hwa

机构信息

Institute of Environmental Science and Engineering, Nanyang Technological University, Innovation Centre, Singapore.

出版信息

Environ Sci Technol. 2002 Oct 15;36(20):4460-6. doi: 10.1021/es0205840.

Abstract

Activated carbon adsorption is widely used to remove hydrogen sulfide (H2S), one of the major odorous compounds, from gas streams. In this study, the mechanisms of H2S adsorption by alkaline activated carbon were systematically studied. Two brands of commercial activated carbons were used as H2S adsorbents. A series of designed experiments were carried outto understand on a fundamental basis the differences in H2S removal capacity observed for the two types of carbons and samples for the same carbon obtained from different batches. The physicochemical and structural characteristics of the original and exhausted activated carbons were identified using several analytical approaches (i.e., XRF, SEM, XRD, and BET). The relationships between the adsorption performances of activated carbon for H2S and its physicochemical characteristics were discussed. The kinetics of the H2S adsorption was also studied using TGA/DSC system. Both physical adsorption and chemisorption played an important role in the H2S adsorption mechanisms with the studied carbons. Chemisorption was rapid and occurred mostly at the carbon surface whereas physical adsorption was relatively slow and mostly took place at the inner pores of carbon. Carbon II demonstrated the best performance of H2S removal due to its high capacity of both physical adsorption and chemisorption. Catalytic effects of transition metals might also contribute to enhancing the H2S oxidation.

摘要

活性炭吸附被广泛用于从气流中去除硫化氢(H₂S),硫化氢是主要的有气味化合物之一。在本研究中,系统地研究了碱性活性炭吸附H₂S的机制。使用两个品牌的商业活性炭作为H₂S吸附剂。进行了一系列设计实验,以便从根本上了解两种类型的碳以及同一批碳不同批次样品在H₂S去除能力上的差异。使用几种分析方法(即XRF、SEM、XRD和BET)确定原始和耗尽活性炭的物理化学和结构特征。讨论了活性炭对H₂S的吸附性能与其物理化学特征之间的关系。还使用TGA/DSC系统研究了H₂S吸附的动力学。在所研究的碳的H₂S吸附机制中,物理吸附和化学吸附都起着重要作用。化学吸附速度快,主要发生在碳表面,而物理吸附相对较慢,主要发生在碳的内孔中。由于其物理吸附和化学吸附能力都很高,碳II表现出最佳的H₂S去除性能。过渡金属的催化作用也可能有助于增强H₂S的氧化。

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