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用于 1-丁基吡啶盐酸盐降解的非均相电芬顿催化剂。

Heterogeneous electro-Fenton catalyst for 1-butylpyridinium chloride degradation.

机构信息

Department of Chemical Engineering, University of Vigo, Isaac Newton Building, Campus As Lagoas, Marcosende, 36310, Vigo, Spain.

出版信息

Environ Sci Pollut Res Int. 2019 Feb;26(4):3145-3156. doi: 10.1007/s11356-017-0403-6. Epub 2017 Oct 15.

Abstract

The application of the electro-Fenton process for organic compound mineralisation has been widely reported over the past years. However, operational problems related to the use of soluble iron salt as a homogeneous catalyst involve the development of novel catalysts that are able to operate in a wide pH range. For this purpose, polyvinyl alcohol-alginate beads, containing goethite as iron, were synthesised and evaluated as heterogeneous electro-Fenton catalyst for 1-butylpyridinium chloride mineralisation. The influence of catalyst dosage and pH solution on ionic liquid degradation was analysed, achieving almost total oxidation after 60 min under optimal conditions (2 g/L catalyst concentration and pH 3). The results showed good catalyst stability and reusability, although its effectiveness decreases slightly after three successive cycles. Furthermore, a plausible mineralisation pathway was proposed based on the oxidation byproducts determined by chromatographic techniques. Finally, the Microtox® test revealed notable detoxification after treatment which demonstrates high catalyst ability for pyridinium-based ionic liquid degradation by the electro-Fenton process.

摘要

电芬顿工艺在有机化合物矿化方面的应用近年来得到了广泛的报道。然而,使用可溶性铁盐作为均相催化剂所涉及的操作问题需要开发能够在较宽 pH 值范围内运行的新型催化剂。为此,合成了含有针铁矿的聚乙烯醇-海藻酸钠珠,并将其用作 1-丁基吡啶氯化物矿化的非均相电芬顿催化剂进行了评价。分析了催化剂用量和溶液 pH 值对离子液体降解的影响,在最佳条件(催化剂浓度 2 g/L 和 pH 值 3)下,60 分钟后几乎实现了完全氧化。结果表明,催化剂具有良好的稳定性和可重复使用性,尽管经过三个连续循环后其有效性略有下降。此外,根据色谱技术确定的氧化副产物提出了一种合理的矿化途径。最后,通过 Microtox®测试表明处理后具有显著的解毒作用,这证明电芬顿工艺对基于吡啶的离子液体的降解具有很高的催化剂能力。

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