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Degradation of Pb-EDTA complex by a H_2O_2/UV process

机译:H_2O_2 / UV工艺降解Pb-EDTA复合物

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The degradation of PbEDTA in aqueous solution by a H_2O_2/UV process was studied. The effect of H_2O_2 content, pH of the solution and the presence of nitrate were investigated. PbEDTA degradation by a H_2O_2/UV process was shown to be accompanied by simultaneous lead precipitation. PbEDTA was decomposed rapidly in acidic solutions while lead precipitation was achieved only when the pH of the solution was higher than 6. The presence of nitrate in significant amounts (0.04 M) inhibited remarkably the degradation of the complex and metal precipitation. The degradation of CdEDTA and ZnEDTA was also studied. It was found that the decomposition of metal-EDTA complex and metal removal by the H_2O_2/UV process depend greatly on the nature of the metal. CdEDTA and ZnEDTA were decomposed rapidly but metal precipitation was not achieved. The major by-products of the degradation of metal-EDTA complexes observed were nitrilotriacetic acid (NTA), iminodiacetic acid (IDA), oxalic acid and nitrate.
机译:研究了H_2O_2 / UV法降解水溶液中PbEDTA的过程。研究了H_2O_2含量,溶液pH值和硝酸盐存在的影响。通过H_2O_2 / UV工艺降解PbEDTA会同时导致铅沉淀。 PbEDTA在酸性溶液中会迅速分解,而仅当溶液的pH值高于6时才发生铅沉淀。大量硝酸盐(0.04 M)的存在显着抑制了配合物和金属沉淀的降解。还研究了CdEDTA和ZnEDTA的降解。发现金属-EDTA配合物的分解和通过H_2O_2 / UV工艺去除金属在很大程度上取决于金属的性质。 CdEDTA和ZnEDTA迅速分解,但未实现金属沉淀。观察到的金属-EDTA络合物降解的主要副产物是次氮基三乙酸(NTA),亚氨基二乙酸(IDA),草酸和硝酸盐。

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