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K+对Fe(Ⅵ)生成的稳定促进作用和机理研究
引用本文:张彦平,许国仁,李圭白.K+对Fe(Ⅵ)生成的稳定促进作用和机理研究[J].环境科学,2008,29(3):677-682.
作者姓名:张彦平  许国仁  李圭白
作者单位:哈尔滨工业大学市政环境工程学院,哈尔滨 150090;哈尔滨工业大学市政环境工程学院,哈尔滨 150090;哈尔滨工业大学市政环境工程学院,哈尔滨 150090
摘    要:研究了在生成高铁酸盐反应过程中K+对Fe(Ⅵ)的稳定促进作用和机理.结果表明,当反应温度大于50℃时,K+比Na+更有利于高铁酸盐的生成.K+促进高铁酸盐溶液生成的最佳反应温度为65℃.在生成高铁酸盐反应过程中,增加K+浓度能提高高铁酸盐的产率,并且随着硝酸铁投加量的增加,K+影响显著.在硝酸铁投加量为85 g/L时,采用4.4 mol/L KOH制备的Fe(Ⅵ)浓度为0.05 mol/L;加入2 mol/L K+后,Fe(Ⅵ)浓度增加到0.15 mol/L.K+对高铁酸盐溶液生成浓度的影响在硝酸铁投加量大于75 g/L,反应温度低于55℃,ClO-浓度低于1.16 mol/L时较为显著.K+在一定程度上可替代部分碱度,降低OH-用量.在反应过程中K+能包裹在FeO2-4周围,减少Fe3+与FeO2-4接触,从而减缓Fe3+对FeO2-4的催化分解作用;同时K+能与FeO2-4生成K2FeO4晶体沉淀析出,降低溶液中FeO2-4浓度,Fe(Ⅵ)分解速率减缓,稳定性增加,Fe(Ⅵ)生成浓度增加.

关 键 词:Fe(Ⅵ)  高铁酸盐  K+  氧化剂
文章编号:0250-3301(2008)03-0677-06
收稿时间:2007-05-24
修稿时间:2007-09-14

Mechanism and promotion effect of K+ on yield of Fe(VI)
ZHANG Yan-ping,XU Guo-ren and LI Gui-bai.Mechanism and promotion effect of K+ on yield of Fe(VI)[J].Chinese Journal of Environmental Science,2008,29(3):677-682.
Authors:ZHANG Yan-ping  XU Guo-ren and LI Gui-bai
Institution:School of Municipal and Environmental Engineering, Harbin Institute of Technology, Harbin 150090, China. zyphit@163.com
Abstract:The mechanism and promotion effects of K+ on the yield of Fe(VI) were studied during the reaction of forming ferrate. The experiment results showed that K+ is far better than Na+ for the preparation of Fe(VI) at temperatures higher than 50 degrees C. The optimal temperature for the preparation of Fe(VI) with K+ is 65 degrees C. During the reaction, the yield of ferrate increases with the concentration of K+, and the promotion effect of K+ is obviously with ferric nitrate dosage increase. The Fe(VI) concentration prepared with 4.4 mol/L KOH is 0.05 mol/L at 85 g/L ferric nitrate; and which achieves 0.15 mol/L when added 2 mol/L K+. The promotion effect of K+ on the yield of ferrate is remarkable when ferric nitrate dosage is higher than 75 g/L, reaction temperature is below 55 degrees C and ClO(-) concentration is lower than 1.16 mol/L. The K+ can substitute for partly alkalinity and reduce the concentration of OH(-) in the reaction solution. During the reaction, the K+ can enwrap around FeO4(2-) that can reduce the contact between Fe(3+) and FeO4(2-), and decrease the catalysis effect of Fe(3+) on FeO4(2-). At the same time, K+ can react with FeO4(2-) to form solid K4FeO4, whichwill lower the Fe(VI) concentration, decrease the decomposition rate of Fe(VI), enhance the stability and improve the yield of Fe(VI).
Keywords:Fe(VI)  ferrate  potassium ion  oxidant
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