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纸质出版日期:2011,
网络出版日期:2010-7-13,
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孙维义,苏仕军,丁桑岚,蒋文举,徐莹.软锰矿浆烟气同步脱硫脱硝尾液中连二硫酸锰分解特性的研究[J].工程科学与技术,2011,43(3):166-170.
Decomposition Characteristics of Manganese Dithionate in Absorption Solution of Flue Gas Desulfurization and Denitration with Pyrolusite Slurry[J]. Advanced Engineering Sciences, 2011,43(3):166-170.
中文摘要: 针对软锰矿浆烟气脱硫脱硝尾液中MnS2O6的存在会影响副产品质量的问题,对MnS2O6在液相中的分解特性进行了研究。基于液相中MnS2O6的分解产物及碘量法测定SO2的原理,通过测定SO2生成速率表征MnS2O6的分解速率,探讨了H2SO4浓度、MnS2O6浓度、温度及MnSO4、Mn(NO3)2浓度对MnS2O6分解速率的影响。结果表明,MnS2O6分解速率随H2SO4浓度、MnS2O6浓度和温度的升高而增大,随MnSO4浓度的增大而减小,与Mn(NO3)2浓度无关。本征动力学研究结果表明,MnS2O6、H2SO4浓度的反应级数分别为0.8、1.2,活化能为96.9 kJ·mol-1,指前因子为1.61×10^10 s-1
研究结果可为软锰矿浆烟气脱硫脱硝尾液中MnS2O6的去除提供理论依据。
Abstract:In order to solve the problem that MnS2O6 formed in the process of flue gas desulfurization and denitration with pyrolusite slurry will lower the purity of byproduct
the decomposition characteristics of MnS2O6 in liquid phase were studied. The decomposition rate of MnS2O6 was measured instead of the formation rate of SO2 based on the decomposition products of MnS2O6 and iodometry principle for SO2 determination. Factors affecting decomposition rate were investigated
which included manganese dithionate concentration
sulfuric acid concentration
manganese sulfate concentration
manganese nitrate concentration and reaction temperature. Experiment results indicated that the MnS2O6 decomposition rate increases with the increasing of manganese dithionate concentration
sulfuric acid concentration and reaction temperature
but decreases with manganese sulfate concentration increasing
and is independent of manganese nitrate concentration. The reaction is 0.8 order for manganese dithionate and 1.2 order for sulfuric acid
the activation energy is 96.9 kJ·mol-1 and the pre-exponential factor is 1.61×10^10 s-1.The study provided theoretical basis for the removal of MnS2O6 in the absorption solution of flue gas desulfurization and denitrificaiton with pyrolusite slurry.
软锰矿脱硫脱硝MnS2O6分解速率动力学
pyrolusite slurrydesulfurization and denitrationmanganese dithionatedecomposition ratereaction kinetics
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