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Displacement of five metals sorbed on kaolinite during treatment with modified Fenton's reagent

机译:用改良的Fenton试剂处理过程中吸附在高岭石上的五种金属的置换

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The displacement of sorbed metals during the treatment of soils and groundwater with modified Fenton's reagent was investigated using five common metal contaminants (cadmium, copper, lead, nickel, and zinc) and kaolinite as a model sorbent. Modified Fenton's conditions included three H_2O_2 concentrations (0.9, 1.8, 2.7 M) and two catalysts: soluble iron (Ⅲ) at pH 3 and iron (Ⅲ)-NTA chelate at pH 6. Iron (Ⅲ)-catalyzed Fenton's reactions released significant amounts of zinc, cadmium, and copper. Modified Fenton's reactions catalyzed by iron (Ⅲ)-NTA released zinc, cadmium, copper, and lead, and resulted in greater amounts of metals release than the iron (Ⅲ)-catalyzed reactions. Metals release may have been mediated by transient oxygen species, such as superoxide, generated by propagation reactions, which become dominant at the relatively high hydrogen peroxide concentrations used. Metals release from kaolinite was undetectable when sufficiently low hydrogen peroxide concentrations were maintained to minimize propagation reactions. These results indicate that using dilute concentrations of hydrogen peroxide for Fenton's ISCO may minimize potential metals mobility when treating contaminated soils and groundwater containing a mixture of organic and metal contaminants.
机译:使用五种常见金属污染物(镉,铜,铅,镍和锌)和高岭土作为模型吸附剂,研究了用改良的Fenton试剂处理土壤和地下水时吸附金属的置换。改良的Fenton条件包括三种H_2O_2浓度(0.9、1.8、2.7 M)和两种催化剂:pH 3时的可溶性铁(Ⅲ)和pH 6时的铁(Ⅲ)-NTA螯合物。铁(Ⅲ)催化的Fenton反应释放了大量锌,镉和铜。铁(Ⅲ)-NTA催化的改良芬顿反应释放出锌,镉,铜和铅,并导致金属释放量大于铁(Ⅲ)催化的反应。金属的释放可能是由传播反应产生的瞬时氧(例如超氧化物)介导的,该氧在所用的相对较高的过氧化氢浓度下占优势。当维持足够低的过氧化氢浓度以最小化传播反应时,就无法检测到从高岭石释放的金属。这些结果表明,当处理受污染的土壤和含有有机和金属污染物混合物的地下水时,将稀浓度的过氧化氢用于Fenton的ISCO可使金属迁移率降至最低。

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