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机构地区:[1]河南科技学院资环与环境学院,河南新乡453003 [2]河南科技学院新乡市农作物重大有害生物防控重点实验室,河南新乡453003 [3]新乡医学院基础医学院,河南新乡453003
出 处:《工业水处理》2018年第1期48-51,共4页Industrial Water Treatment
基 金:河南省科技攻关项目(172102310615;162102110018)
摘 要:文章研究了柠檬酸螯合Fe(Ⅲ)活化过硫酸盐体系对水中活性艳红X-3B的降解效果。考察了过硫酸盐浓度、Fe(Ⅲ)/柠檬酸(CA)、pH及阴离子(NO_3^-、NO_2^-、HCO_3^-、Cl^-)对X-3B降解效果的影响,并研究体系中产生自由基的贡献率。结果表明,过硫酸盐浓度为0.2 mmol/L时,X-3B降解率最大;X-3B的降解率随Fe(Ⅲ)/CA增大而增大;pH的增大不利于X-3B的降解;无机阴离子的加入抑制X-3B的降解。·OH和SO_4^(·-)在光解过程中的贡献率分别为58%和31%。The degradation effect of citric acid chelated Fe ( Ⅲ ) activated persulfate system on reaction brilliant red X-3B has been researched. The effects of the concentration of persulfate, ratio of Fe (Ⅲ)/citric acid (CA),pH and anions (NO3-,NO2-,HCO3-,CI-) on X-3B degradation have been investigated, and the contribution rate of free radicals produced in the system has been studied. The results show that when the concentration of persulfate is 0.2 mmol/L, the degradation rate of X-3B is the highest. The degradation rate of X-3B increases with the increase of ratio of Fe ( 111 )/CA. The increase of pH is not advantageous to the degradation of X-3B. The addition of inorganic anions inhibits the degradation of X-3B. The contribution rates of ' OH and SO4"-in the process of photolysis are 58% and 31%, respectively.
分 类 号:X703.1[环境科学与工程—环境工程]
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