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首页> 外文期刊>Environmental Technology >Oxidative degradation stability and hydrogen sulfide removal performance of dual-ligand iron chelate of Fe-EDTA/CA
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Oxidative degradation stability and hydrogen sulfide removal performance of dual-ligand iron chelate of Fe-EDTA/CA

机译:Fe-EDTA / CA双配位铁螯合物的氧化降解稳定性和硫化氢去除性能

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摘要

Catalytic oxidation desulfurization using chelated iron catalyst is an effective method to remove H2S from various gas streams including biogas. However, the ligand of ethylenediaminetetraacetic acid (EDTA), which is usually adopted to prepare chelated iron catalyst, is liable to be oxidative degraded, and leads to the loss of desulfurization performance. In order to improve the degradation stability of the iron chelate, a series of iron chelates composed of two ligands including citric acid (CA) and EDTA were prepared and the oxidative degradation stability as well as desulfurization performance of these chelated iron catalysts were studied. Results show that the iron chelate of Fe-CA is more stable than Fe-EDTA, while for the desulfurization performance, the situation is converse. For the dual-ligand iron chelates of Fe-EDTA/CA, with the increase of mol ratio of CA to EDTA in the iron chelate solution, the oxidative degradation stability increased while the desulfurization performance decreased. The results of this work showed that Fe-EDTA/CA with a mol ratio of CA:EDTA = 1:1 presents a relative high oxidative degradation stability and an acceptable desulfurization performance with over 90% of H2S removal efficiency.
机译:使用螯合铁催化剂的催化氧化脱硫是从包括沼气在内的各种气流中去除H2S的有效方法。但是,通常用于制备螯合铁催化剂的乙二胺四乙酸(EDTA)的配体易于氧化降解,导致脱硫性能的损失。为了提高螯合铁的降解稳定性,制备了由柠檬酸(CA)和EDTA这两个配体组成的一系列螯合铁,研究了这些螯合铁催化剂的氧化降解稳定性以及脱硫性能。结果表明,Fe-CA的铁螯合物比Fe-EDTA稳定,而脱硫性能则相反。对于Fe-EDTA / CA的双配位铁螯合物,随着CA / EDTA摩尔比在铁螯合物溶液中的增加,其氧化降解稳定性增加而脱硫性能下降。这项工作的结果表明,摩尔比为CA:EDTA = 1:1的Fe-EDTA / CA具有较高的氧化降解稳定性和可接受的脱硫性能,且H2S去除效率超过90%。

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