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微生物法液相氧化SO2
引用本文:蒋文举,童小双,朱晓帆,朱联锡,金燕. 微生物法液相氧化SO2[J]. 环境科学, 2006, 27(5): 841-845
作者姓名:蒋文举  童小双  朱晓帆  朱联锡  金燕
作者单位:四川大学建筑与环境学院,国家烟气脱硫工程技术研究中心,成都,610065
基金项目:国家自然科学基金项目(50278059)
摘    要:通过对酸性水溶液、含Fe3+水溶液、含Fe2+水溶液、细菌菌液和细菌培养基水溶液脱除二氧化硫的实验,探讨了微生物液相氧化二氧化硫的途径.以液相中SO42-浓度考察了Fe3+浓度、Fe2+浓度、进口SO2浓度以及温度对脱硫成酸的影响.微生物脱硫有2种机制:一是直接氧化作用,即氧化亚铁硫杆菌(Thiobacillus ferrooxidans)将S(IV)氧化成S(VI);二是间接催化氧化,氧化亚铁硫杆菌在酸性条件下具有快速氧化Fe2+成Fe3+,增强Fe3+对SO2的液相催化氧化能力,研究表明微生物脱硫以间接催化氧化为主.在浓度0~1.2g/L之间,Fe3+和Fe2+浓度越高,脱硫效果越好,氧化亚铁硫杆菌表现出对Fe3+/Fe2+体系氧化SO2的强化效果.入口SO2浓度越高,细菌脱硫效率越低,但液相中SO42-浓度随进口SO2浓度增加变化不大.温度对微生物脱硫影响较大,最佳脱硫温度为30~40℃.

关 键 词:生物脱硫  二氧化硫  氧化亚铁硫杆菌  铁氧化
文章编号:0250-3301(2006)05-0841-05
收稿时间:2005-04-28
修稿时间:2005-07-05

Aqueous Oxidation of SO2 with Microbial Method
JIANG Wen-ju,TONG Xiao-shuang,ZHU Xiao-fan,ZHU Lian-xi and JIN Yan. Aqueous Oxidation of SO2 with Microbial Method[J]. Chinese Journal of Environmental Science, 2006, 27(5): 841-845
Authors:JIANG Wen-ju  TONG Xiao-shuang  ZHU Xiao-fan  ZHU Lian-xi  JIN Yan
Affiliation:National Engineering Research Center for Flue Gas Desulfurization, College of Architecture and Environment, Sichuan University, Chengdu 610065, China
Abstract:The desulfurizations in dilute sulfuric acid solution, acidic ferric solution, acidic ferrous solution, microbial solution (Thiobacillus ferrooridans) and microbial culture medium solution were conducted to discuss biodesulfurization mechanism. The effect of Fe3+ concentration, Fe2+ concentration, SO2 concentration and temperature on biodesulfurization was examined on SO4(2-) concentration in the solution. Biodesulfurization has two ways: direct oxidation and indirect oxidation. In direct oxidation, Thiobacillus ferrooxridans oxidize S(IV) to S(VI). In indirect oxidation, Thiobacillus ferrooxidans can fast transform Fe2+ to Fe3+ in acidic conditions and then increase aqueous catalytic oxidation capacity of Fe3+ on SO2. It shows that indirect oxidation is the dominant way in biodesulfurization process. The desulfurization efficiency increase with concentration of Fe3+ or Fe2+ in the range of 0-1.2 g/L. Thiobacillus ferrooxidans enforce oxidation of SO2 in Fe3+ /Fe2+ system. The removal of SO2 decrease as concentration of SO2 increase, however, concentrations of SO4(2-) in the solution do not vary much in different inlet concentrations of SO2. Temperature has important effect on biodesulfurization. The optimal operative temperature range is 30-40 degrees C.
Keywords:biodesulfurization  SO2  Thiobacillus ferrooxidans  iron oxidation
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