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Exposing water samples to ultraviolet light improves fluorometry for detecting human fecal contamination

机译:将水样暴露在紫外线下可改善荧光检测人体粪便污染的能力

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Fluorometry identifies human fecal contamination by detecting optical brighteners in environmental waters. Because optical brighteners are sensitive to sunlight, we determined if we could improve fluorometry by exposing water samples to ultraviolet (UV) light to differentiate between optical brighteners and other fluorescing organic compounds. Optical brighteners were likely present when the relative percentage difference in fluorometric value of the water before and after UV light exposure was >30% (glass cuvettes, 30 min exposure) or > 15% (polymethacrylate cuvettes, 5 min exposure). In a blind study, we correctly identified the presence or absence of optical brighteners in 178 of 180 (99%) of the samples tested with a more expensive field fluorometer and in 175 of 180 (97%) of the samples tested with a less expensive handheld fluorometer. In the field, the method correctly identified two negative and three positive locations for human fecal contamination. When combined with counts of fecal bacteria, the new fluorometric method may be a simple, quick, and easy way to identify human fecal contamination in environmental waters.
机译:荧光法通过检测环境水中的荧光增白剂来识别人粪便污染。由于荧光增白剂对阳光敏感,因此我们确定是否可以通过将水样品暴露于紫外线(UV)来区分荧光增白剂和其他荧光有机化合物来改善荧光法。当在紫外线照射前后,水的荧光值的相对百分比差异> 30%(玻璃比色皿,30分钟曝光)或> 15%(聚甲基丙烯酸酯比色皿,5分钟曝光)时,可能存在荧光增白剂。在一项盲目的研究中,我们正确地确定了使用较昂贵的现场荧光计测试的样品中有178个(占99%)中有178种荧光增白剂,而使用较便宜的测试样品中的180个(占97%)中的175个中有荧光增白剂手持式荧光计。在现场,该方法正确地确定了人类粪便污染的两个阴性和三个阳性位置。当与粪便细菌计数结合使用时,新的荧光法可能是一种识别环境水中人类粪便污染的简单,快速且简便的方法。

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