首页> 外文OA文献 >Online solid phase extraction liquid chromatography tandem mass spectrometry (SPE-LC-MS/MS) method for the determination of sucralose in reclaimed and drinking waters and its photo degradation in natural waters from South Florida
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Online solid phase extraction liquid chromatography tandem mass spectrometry (SPE-LC-MS/MS) method for the determination of sucralose in reclaimed and drinking waters and its photo degradation in natural waters from South Florida

机译:在线固相萃取液相色谱 - 串联质谱(spE-LC-ms / ms)测定再生水和饮用水中三氯蔗糖的方法及其在南佛罗里达州天然水中的光降解

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摘要

BackgroundSucralose has gained popularity as a low calorie artificial sweetener worldwide. Due to its high stability and persistence, sucralose has shown widespread occurrence in environmental waters, at concentrations that could reach up to several μg/L. Previous studies have used time consuming sample preparation methods (offline solid phase extraction/derivatization) or methods with rather high detection limits (direct injection) for sucralose analysis. This study described a faster and sensitive analytical method for the determination of sucralose in environmental samples. ResultsAn online SPE-LC–MS/MS method was developed, being capable to quantify sucralose in 12 minutes using only 10 mL of sample, with method detection limits (MDLs) of 4.5 ng/L, 8.5 ng/L and 45 ng/L for deionized water, drinking and reclaimed waters (1:10 diluted with deionized water), respectively. Sucralose was detected in 82% of the reclaimed water samples at concentrations reaching up to 18 μg/L. The monthly average for a period of one year was 9.1 ± 2.9 μg/L. The calculated mass loads per capita of sucralose discharged through WWTP effluents based on the concentrations detected in wastewaters in the U. S. is 5.0 mg/day/person. As expected, the concentrations observed in drinking water were much lower but still relevant reaching as high as 465 ng/L. In order to evaluate the stability of sucralose, photodegradation experiments were performed in natural waters. Significant photodegradation of sucralose was observed only in freshwater at 254 nm. Minimal degradation (u3c20%) was observed for all matrices under more natural conditions (350 nm or solar simulator). The only photolysis product of sucralose identified by high resolution mass spectrometry was a de-chlorinated molecule at m/z 362.0535, with molecular formula C12H20Cl2O8. ConclusionsOnline SPE LC-APCI/MS/MS developed in the study was applied to more than 100 environmental samples. Sucralose was frequently detected (u3e80%) indicating that the conventional treatment process employed in the sewage treatment plants is not efficient for its removal. Detection of sucralose in drinking waters suggests potential contamination of surface and ground waters sources with anthropogenic wastewater streams. Its high resistance to photodegradation, minimal sorption and high solubility indicate that sucralose could be a good tracer of anthropogenic wastewater intrusion into the environment.
机译:背景三氯蔗糖作为一种低热量的人造甜味剂已在世界范围内得到普及。由于三氯蔗糖的高稳定性和持久性,它在环境水中已显示出广泛的存在,其浓度最高可达几微克/升。先前的研究已经使用了费时的样品制备方法(离线固相萃取/衍生化)或具有较高检测限的方法(直接进样)进行三氯蔗糖分析。这项研究描述了一种快速,灵敏的分析方法,用于测定环境样品中的三氯蔗糖。结果开发了在线SPE-LC-MS / MS方法,仅用10 mL样品即可在12分钟内定量三氯半乳蔗糖,方法检出限(MDL)为4.5 ng / L,8.5 ng / L和45 ng / L分别用于去离子水,饮用水和再生水(用去离子水稀释的1:10)。在82%的再生水样品中检测到三氯蔗糖的浓度高达18μg/ L。一年的月平均值为9.1±±2.9μg/ L。根据在美国废水中检测到的浓度,通过污水处理厂废水排放的三氯蔗糖的人均质量负荷为5.0毫克/天/人。正如预期的那样,在饮用水中观察到的浓度要低得多,但仍高达465 ng / L。为了评估三氯蔗糖的稳定性,在天然水中进行了光降解实验。仅在254nm的淡水中观察到三氯蔗糖的显着光降解。在更自然的条件下(350 nm或太阳模拟器),所有基质均观察到最小的降解( u3c20%)。通过高分辨率质谱法鉴定的三氯蔗糖唯一的光解产物是m / z 362.0535的脱氯分子,分子式为C12H20Cl2O8。结论研究中开发的在线SPE LC-APCI / MS / MS已应用于100多个环境样品。经常检测到三氯蔗糖(约80%),表明污水处理厂采用的常规处理工艺对其去除效率不高。饮用水中三氯蔗糖的检测表明人为废水会潜在污染地表水和地下水源。它具有很高的抗光降解性,最小的吸附性和高溶解度,表明三氯蔗糖可能是人为废水入侵环境的良好示踪剂。

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