Department of Environmental Science and Engineering, Xi' an Jiaotong University, Xi'an, China.
Water Environ Res. 2021 Apr;93(4):559-569. doi: 10.1002/wer.1458. Epub 2020 Oct 19.
In this study, the degradation of caffeine was investigated by UV/Fe /persulfate (PS) process. Caffeine (CAF) degradation in sole-UV, UV/Fe , UV/PS, and Fe /PS systems was also conducted to examine the contribution of isolated processes to CAF degradation. The effects of pH levels, the concentration of Fe and PS, inorganic anions, and initial concentration of CAF on the performance of UV/Fe /PS process were evaluated. Radical competitive reactions indicated both hydroxyl radicals and sulfate radicals played important roles in CAF degradation in UV/Fe /PS system. Nine intermediates, among which three were detected for the first time, were identified by ultra-performance liquid chromatography/electrospray-time-of-flight mass spectrometry (UPLC/ESI-TOF-MS) and SPME (solid-phase microextraction)/GC/MS. The possible degradation pathways of CAF were proposed, among which demethylation, hydroxylation, the oxidation of olefinic double bond, and the cleavage of pyrimidine ring and imidazole ring were involved in the degradation of CAF in UV/Fe /PS system. PRACTITIONER POINTS: Caffeine degradation by UV/Fe /PS process was investigated. Caffeine degradation did not follow a simple pseudo-first order kinetics Chloride ions promoted CAF degradation. The anions NO , SO , and H PO exerted a negative influence on caffeine degradation. Nine intermediates were detected, and decay pathways were proposed.
在这项研究中,通过 UV/Fe/过硫酸盐 (PS) 工艺来研究咖啡因的降解。还进行了单独的 UV、UV/Fe、UV/PS 和 Fe/PS 系统中咖啡因 (CAF) 的降解实验,以考察各个单独过程对 CAF 降解的贡献。评估了 pH 值、Fe 和 PS 的浓度、无机阴离子以及 CAF 的初始浓度对 UV/Fe/PS 工艺性能的影响。自由基竞争反应表明,在 UV/Fe/PS 体系中,羟基自由基和硫酸根自由基都对 CAF 的降解起着重要作用。通过超高效液相色谱/电喷雾-飞行时间质谱 (UPLC/ESI-TOF-MS) 和 SPME(固相微萃取)/GC/MS 鉴定了 9 种中间产物,其中 3 种是首次检测到的。提出了 CAF 的可能降解途径,其中包括在 UV/Fe/PS 体系中 CAF 的去甲基化、羟化、烯烃双键的氧化以及嘧啶环和咪唑环的断裂。
研究了 UV/Fe/PS 工艺对咖啡因的降解。
咖啡因的降解不符合简单的拟一级动力学。
氯离子促进 CAF 的降解。
阴离子 NO 、SO 、H PO 对 CAF 的降解有负面影响。
检测到 9 种中间产物,并提出了降解途径。