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Combined Fenton-MF process increases acrylonitrile removal

机译:Fenton-MF联合工艺可提高丙烯腈的去除率

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The Fenton oxidation process is possessed of the advantages of both oxidation and coagulation processes. In addition to these functions, Fenton's reagent is also a typical initiator of polymerization. The application of the Fenton-microfiltration process for removal of acrylonitrile (AN), which is the major raw material for manufacturing ABS resins, was investigated. As for Fenton oxidation, in the range of pH 2 to pH 4, AN removal efficiency increased as the pH increased. In experiments of the same initial molar ratio of [FeSO4](0)/[H2O2](0), the higher dosage can obtain the higher removal efficiency. At pH 4, the AN removal increased as the [H2O2](0) increased for each [FeSO4](0). Acrylic acid and acrylamide were detected in the solution after Fenton oxidation. On the other hand, acrylamide, polyacrylamide, and polyacrylic acid exist in the precipitate after the Fenton oxidation of AN solution. Moreover, It was also found that the operational mode is an important factor of the combined Fenton-MF process. [References: 13]
机译:Fenton氧化过程具有氧化和凝结过程的优点。除了这些功能之外,芬顿试剂也是典型的聚合引发剂。研究了芬顿微滤工艺在去除丙烯腈(AN)中的应用,丙烯腈是制造ABS树脂的主要原料。关于芬顿氧化,在pH 2至pH 4的范围内,随着pH增加,AN去除效率增加。在相同的[FeSO4](0)/ [H2O2](0)初始摩尔比的实验中,较高的剂量可以获得较高的去除效率。在pH 4下,对于每种[FeSO4](0),随着[H2O2](0)的增加,AN的去除量也随之增加。 Fenton氧化后在溶液中检测到丙烯酸和丙烯酰胺。另一方面,在AN溶液的芬顿氧化后,沉淀物中存在丙烯酰胺,聚丙烯酰胺和聚丙烯酸。此外,还发现操作模式是结合Fenton-MF工艺的重要因素。 [参考:13]

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