...
首页> 外文期刊>Sensors and Actuators >A visible colorimetric sensor based on nanoporous polypropylene fiber membranes for the determination of trihalomethanes in treated drinking water
【24h】

A visible colorimetric sensor based on nanoporous polypropylene fiber membranes for the determination of trihalomethanes in treated drinking water

机译:基于纳米多孔聚丙烯纤维膜的可见比色传感器,用于测定处理后的饮用水中的三卤甲烷

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Water is an integral part of our society, and it is of the utmost importance that this water is clean and safe for potable use. Drinking water sources can become contaminated with halogenated organic compounds (HOCs) via improper disposal of refrigeration or air conditioning units, industrial usage, and even through the disinfection of our drinking water (chlorination). One class of these HOCs regulated by the U.S. Environmental Protection Agency (USEPA) is trihalomethanes (THMs). THMs have been found to cause adverse health effects and can even be carcinogenic, they are limited to 80 ppb in treated water by the USEPA. Currently THM concentrations are detected in treated water using expensive analytical equipment, which have high sensitivity, but lack any portability or ease-of-use. Here we show a syn-diotactic polypropylene (sPP) nanoporous electrospun fiber membrane capable of visible colorimetric detection of trihalomethanes (THMs) at environmentally relevant levels (ppb-scale), without a separate preconcentration step. The developed detection method includes a two-fold preconcentration technique coupled with a colorimetric detection reaction, integrated into a single sensor device. Here, the utilization of the colorimetric Fujiwara reaction serves as the detection reaction. This long-studied reaction has a response that is normally limited to a beaker scale visible detection range on the order of 80 ppm THMs, when a separate preconcentration step is not present. The two-fold integrated preconcentration technique consists of a thermodynamic method based on the utilization of the THM: water equilibrium in the vapor phase of the system as well as a physical method using a sPP nanoporous membrane capable of concentrating THMs in a contaminated aqueous sample. The developed device has successfully lowered the portable single-step visible THM detection concentration by an order of magnitude (80 ppm → 80 ppb). This sensor was also successfully applied for the determination of the total THM (t-THM) concentration in spiked and actual treated water samples, and these results correlated well with the CC/MS results of the corresponding sample, showing its real world applicability.
机译:水是我们社会不可或缺的组成部分,最重要的是,这种水要清洁,安全,可饮用。通过不当处置制冷或空调设备,工业用途以及甚至对我们的饮用水进行消毒(氯化),饮用水源可能会被卤代有机化合物(HOC)污染。由美国环境保护署(USEPA)监管的这类HOC中的一类是三卤甲烷(THM)。已发现THM对健康有不良影响,甚至可能具有致癌性,美国环境保护局(USEPA)将其限制在处理水中的80 ppb。当前,使用昂贵的分析设备在处理过的水中可检测出THM浓度,该设备具有高灵敏度,但缺乏便携性或易用性。在这里,我们展示了一种间同立构聚丙烯(sPP)纳米多孔电纺纤维膜,该膜能够在环境相关水平(ppb级)下进行三卤甲烷(THMs)的可见比色检测,而无需单独的预浓缩步骤。开发的检测方法包括结合了比色检测反应的双重预浓缩技术,并集成到单个传感器设备中。在此,利用比色的藤原反应作为检测反应。当不存在单独的预浓缩步骤时,这种经过长期研究的反应的响应通常限于烧杯规模的可见检测范围,约为80 ppm THMs。双重集成的预浓缩技术包括基于THM利用的热力学方法:系统气相中的水平衡,以及使用能够将THM浓缩在受污染的水样中的sPP纳米多孔膜的物理方法。开发的设备已成功将便携式单步可见THM检测浓度降低了一个数量级(80 ppm→80 ppb)。该传感器还成功地用于测定加标水和实际处理过的水样品中总THM(t-THM)浓度,这些结果与相应样品的CC / MS结果具有很好的相关性,表明其在现实世界中的适用性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号