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Benzothiazole heterogeneous photodegradation in nano α-Fe2O3/oxalate system under UV light irradiation

机译:紫外光下纳米α-Fe2O3/草酸酯体系中苯并噻唑的非均相光降解

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摘要

The photodegradation of benzothiazole (BTH) in wastewater with the coexistence of iron oxides and oxalic acid under UV light irradiation was investigated. Results revealed that an effective heterogeneous photo-Fenton-like system could be set up for BTH abatement in wastewater under UV irradiation without additional H2O2, and 88.1% BTH was removed with the addition of 2.0 mmol l−1 oxalic acid and 0.2 g l−1 α-Fe2O3 using a 500 W high-pressure mercury lamp (365 nm). The degradation of BTH in the photo-Fenton-like system followed the first-order kinetic model. The photoproduction of hydroxyl radicals (·OH) in different systems was determined by high-performance liquid chromatography. Identification of transformation products by using liquid chromatography coupled with high resolution tandem mass spectrometry provided information about six transformation products formed during the photodegradation of BTH. Further insight was obtained by monitoring concentrations of the sulfate ion (SO42−) and nitrate ion (NO3), which demonstrated that the intermediate products of BTH could be decomposed ultimately. Based on the results, the potential photodegradation pathway of BTH was also proposed.
机译:研究了紫外光下苯并噻唑(BTH)在氧化铁和草酸共存的条件下的光降解。结果表明,可以建立一种有效的非均质光Fenton样体系,用于在紫外线辐射下无需额外的H2O2消除废水中的BTH,并通过添加2.0 andmmol l -1 去除了88.1%的BTH。草酸和0.2 g l −1 α-Fe2O3使用500 W高压汞灯(365 nm)。在类似光芬顿系统中,BTH的降解遵循一阶动力学模型。高效液相色谱法测定了不同体系中羟基自由基(·OH)的光产生。通过使用液相色谱结合高分辨率串联质谱对转化产物的鉴定提供了有关BTH光降解过程中形成的六种转化产物的信息。通过监测硫酸根离子(SO4 2-)和硝酸根离子(NO3 -)的浓度获得了进一步的见解,这表明BTH的中间产物最终可以分解。根据结果​​,还提出了潜在的BTH光降解途径。

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