首页> 外文期刊>Water Science and Technology >Degradation of membrane concentrates of the textile industry by Fenton like reactions in iron-free solutions at biocompatible pH values (pH approx= 7-8)
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Degradation of membrane concentrates of the textile industry by Fenton like reactions in iron-free solutions at biocompatible pH values (pH approx= 7-8)

机译:在生物相容的pH值(pH约= 7-8)下,在无铁溶液中通过Fenton降解反应,从而使纺织工业的膜浓缩物降解。

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Degradative oxidation of membrane concentrates of textile waters were carried out in batch reactors in the dark and under visible light. H_2O_2 and Nafion-Fe~(3+)/H_2O_2 as an immobilized Fenton reagent were used as ecological oxidants. The results observed with the Nafion/Fe~(3+) system lead to a kinetically faster and more complete oxidation than H_2O_2 alone and comparable to the homogeneous Fenton reaction in solution. This study reports on the Fenton treatment of membrane concentrates resulting from nanofiltration of biologically treated secondary textile effluents produced in a large scale in Northern Italy. The degradation of the membrane concentrates is accelerated under light due to the recycling of the Fe~(3+)-ion in the Nafion avoiding the drawbacks of the homogeneous treatment. A reduction of approx 50% is seen in the TOC and of approx 20-50% in optical absorbance after 3 hours pretreatment under light for end of pipe membrane concentrates under light and the process was stable over many cycles. The observed degradation depended on the amount of H_2O_2, the intensity of the visible light applied. But it varied very little on the pretreatment pH which makes the Fenton immobilized systems suitable to pretreat membrane concentrates up to pH 8. The membrane concentrates showed a decrease in their toxicology when undergoing oxidative pretreatment under visible light mediated by Nafion-Fe~(3+) (1.78%) adding in solution H_2O_2 (10 mM). Mathematical modeling of the degradation parameters is presented by constructing a single exponential polynomial function.
机译:在黑暗中和可见光下,在间歇式反应器中进行纺织水膜浓缩物的降解氧化。以固定化的芬顿试剂H_2O_2和Nafion-Fe〜(3 +)/ H_2O_2为生态氧化剂。 Nafion / Fe〜(3+)体系观察到的结果比单独的H_2O_2动力学上更快,更完全,与溶液中的均相Fenton反应相当。这项研究报告了芬顿对膜浓缩物的处理,这是对意大利北部大规模生产的经生物处理的次生纺织品废水进行纳滤后得到的结果。由于Nafion中Fe〜(3+)离子的循环,在光下加速了膜浓缩液的降解,避免了均相处理的缺点。在光照下预处理3小时后,在光下对管膜浓缩液的末端处理后,TOC降低了约50%,光吸收降低了约20-50%,并且该过程在许多周期内都是稳定的。观察到的降解取决于H_2O_2的量,所施加可见光的强度。但是在预处理pH值上变化很小,这使得Fenton固定化系统适合于预处理膜浓缩液至pH8。当在Nafion-Fe〜(3+)介导的可见光下进行氧化预处理时,膜浓缩液的毒理学降低。 )(1.78%)添加到溶液H_2O_2(10 mM)中。通过构造单个指数多项式函数,可以对退化参数进行数学建模。

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