School of Chemistry and Materials Engineering, Xinxiang University, Xinxiang, 453003, China.
Institute of Forensic Science, Xinxiang Municipal Public Security Bureau, Xinxiang, 453003, China.
Photochem Photobiol Sci. 2021 Feb;20(2):303-313. doi: 10.1007/s43630-021-00019-9. Epub 2021 Feb 20.
Photocatalysis of dye degradation is one of green and cheap technologies for solving environmental pollution. Whereas it is rarely concerned that the degradation process varied with the change of solution condition, this work studied the influence of hydrion in the solution on the photodegradation process of Rhodamine B (RhB) over g-CN. The photocatalytic activity of RhB degradation was enhanced gradually with increased hydrion content in the system. The efficiency for RhB degradation over g-CN in weak acidic system with interference of multiple metal-ions still reached near 95% after 30 min of natural sunlight irradiation. A large amount of oxidation species and the hydroxylation mineralization process were induced by increasing the hydrion concentration. Two degradation processes for deethylation of four ethyl groups and the direct chromophoric degradation were discovered and proved by multifarious intermediates in different systems using the ESR technique, LC/MS and GC/MS analysis. In addition, the photosensitization played a critical role in the RhB degradation. A feasible degradation mechanism was proposed for the RhB degradation based on the experimental results.
光催化染料降解是解决环境污染的绿色、廉价技术之一。然而,人们很少关注到溶液条件的变化会改变降解过程,本工作研究了溶液中氢离子对 g-CN 上罗丹明 B(RhB)光降解过程的影响。随着体系中氢离子含量的增加,RhB 的光催化降解活性逐渐增强。在弱酸性体系中存在多种金属离子干扰的情况下,g-CN 对 RhB 的降解效率在自然光照射 30 分钟后仍接近 95%。增加氢离子浓度会诱导大量氧化物种和羟化矿化过程。通过不同体系中的多种中间体,利用 ESR 技术、LC/MS 和 GC/MS 分析,发现并证实了两个降解过程,即四个乙基的去乙基化和直接生色团降解。此外,光敏化在 RhB 降解中起着关键作用。根据实验结果,提出了一种可行的 RhB 降解机制。