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Fe(III)盐溶液吸收法处理H2S气体的研究
引用本文:鄂利海,雒怀庆,栾耕时. Fe(III)盐溶液吸收法处理H2S气体的研究[J]. 辽宁石油化工大学学报, 2001, 21(1)
作者姓名:鄂利海  雒怀庆  栾耕时
作者单位:抚顺石油学院石油化工分院,
摘    要:对一种新的用可溶性盐吸收硫化氢的方法进行了研究。采用填料塔对Fe3+盐溶液吸收H2 S的过程进行了初步的考察 ,通过正交实验选出了最佳的操作条件 ,实验证明 ,在最佳的条件下H2 S的去除率接近 1 0 0 %。反应中生成的硫磺可以通过过滤的方法除去。在对Fe3+再生时 ,采用了单极压滤机式电解槽 ,电解过程中阳极的电流效率初步达到 60 % ,基本满足要求 ,而且阴极析出氢气 ,减少了电解的费用。实验结果表明 ,这种H2 S气体处理方法是可行的

关 键 词:Fe3+盐  H2S  吸收  处理

Process of H2S Treatment Using Aqueous Ferric Salt Solution Ab sorption
E Lihai,Luo Huaiqing,Luan Gengshi. Process of H2S Treatment Using Aqueous Ferric Salt Solution Ab sorption[J]. Journal of Liaoning University of Petroleum & Chemical Technology, 2001, 21(1)
Authors:E Lihai  Luo Huaiqing  Luan Gengshi
Abstract:A new H 2S gas treatment process using ferric salt aqueous solution absorption was evaluated. The absorption of hydrogen sulfide into ferric salt aqueous solution was studied in a packed column. Through normal test the optimum operation conditions were obtained. Under these conditions, the removal efficient of H 2S nearly reached 100%.The separation of sulphur from the sulphur-containing suspended solution was made by filter-cake-filtration and this method meets the needs of this solid-liquid separation process. In the Fe 3+ ion electrolytic regeneration subsystem, the suitable electrolytic bath should be monopolar and filter-press-type. A bench-scale electrolytic cell of Fe 3+ ion regeneration was constructed and the electrolysis process was studied. In general, the anode current efficiency could reach above 60%,and H 2 evolved from cathode would reduce the cost of the whole treatment process. The results show the process using aqueous ferric salt solution to absorb H 2S gas is feasible.
Keywords:Ferric aqueous  H 2S  Treatment  Absorption
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