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首页> 外文期刊>Journal of AOAC International >Advances in the Analysis of Water and Wastewater Samples Using Various Sensing Protocols and Microfluidic Devices Based on PAD and mu TAS Systems
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Advances in the Analysis of Water and Wastewater Samples Using Various Sensing Protocols and Microfluidic Devices Based on PAD and mu TAS Systems

机译:基于垫和MU TAS系统的各种传感协议和微流体装置分析水和废水样品的进步

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摘要

The main goal of this review is to summarize practical approaches concerning the application of microfluidic systems for the analysis of various biomarkers and pollutants, as well as microbes, in water and wastewater matrixes. This problem involves multidisciplinary expertise combining research knowledge from various areas, including wet chemistry, biochemistry, physical chemistry, molecular biology, genetics, signal processing, microelectronics material science, and separation science. It has been documented that fairly primitive but fast and inexpensive screening methods involving paper-based analytical devices (PADs) and micro total analytical systems (mu TAS) can be considered as serious alternatives to their more advanced counterparts such as GC, HPLC, and capillary electrophoresis coupled to various sophisticated detectors (e.g., multiwavelength spectrophotometers such as UV-Vis/DAD and mass spectrometers). The main advantage of PAD- and mu TAS-driven technology is that such sensing devices may work under on-site and real-time conditions and measure a number of physical parameters and chemical factors simultaneously. Moreover, hybrid miniaturized analytical systems may combine sensing and data acquisition modules with common mobile phones and electronic devices working with global positioning systems and communicating through the Internet.
机译:本综述的主要目的是总结了关于在水和废水基质中分析各种生物标志物和污染物的微流体系统的实际方法,以及水和废水基质中的微流体系统。这个问题涉及多学科专业知识与各种领域的研究知识相结合,包括湿化学,生物化学,物理化学,分子生物学,遗传学,信号处理,微电子材料材料科学和分离科学。已经记录了涉及纸质的分析装置(垫)和微量分析系统(MU TAS)的相当原始但快速且廉价的筛选方法可以被认为是他们更先进的对应物(如GC,HPLC和毛细管)的严重替代方案电泳耦合到各种复杂的检测器(例如,多波长分光光度计,例如UV-VIS / DAD和质谱仪)。垫和MU TAS驱动技术的主要优点是,这种传感装置可以在现场和实时条件下工作,并同时测量许多物理参数和化学因素。此外,混合小型化分析系统可以将感应和数据采集模块与共同的移动电话和电子设备与全球定位系统一起结合,并通过互联网进行通信。

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