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The development of an autonomous sensing platform for the monitoring of ammonia in water using a simplified Berthelot method

机译:使用简化的Berthelot方法开发用于监测水中氨的自动感应平台

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This study demonstrates that by combining a modified version of the Berthelot method with microfluidic technologies and LED based optical detection systems, a low cost monitoring system for detection of ammonia in fresh water and wastewater can be developed. The assay developed is a variation on the Berthelot method, eliminating several steps previously associated with the method to create a nontoxic and simple colorimetric assay. The previous Berthelot method required the addition of three reagents, mixed sequentially with the sample, which complicates the microfluidic system design. With the modified method, comparable results were attained using a single reagent addition step at a 1:1 v/v reagent to sample ratio, which significantly simplifies the fluidic handling requirement for integration into an autonomous sensing platform. The intense colour generated in the presence of ammonia is detected at a wavelength of 660 nm. The method allows for ammonia determination up to 12 mg La?’1 NH4+ with a limit of detection of 0.015 mg La?’1 NH4+. Validation was achieved by analysing split water samples by the modified method and by ion chromatography, resulting in an excellent correlation coefficient of 0.9954. The method was then implemented into a fully integrated sensing platform consisting of a sample inlet with filter, storage units for the Berthelot reagent and standards for self-calibration, pumping system which controls the transport and mixing of the sample, a microfluidic mixing and detection chip, and waste storage. The optical detection system consists of a LED light source with a photodiode detector, which enables sensitive detection of the coloured complex formed. The robustness and low cost of the microfluidic platform coupled with integrated wireless communications makes it an ideal platform for in situ environmental monitoring. This is the first demonstration of a fully functional microfluidic platform employing this modified version of the Berthelot method.
机译:这项研究表明,通过将Berthelot方法的改进版本与微流体技术和基于LED的光学检测系统相结合,可以开发出一种低成本的监测系统,用于检测淡水和废水中的氨。开发的测定法是Berthelot方法的一种变体,省去了以前与该方法相关的几个步骤,以创建无毒且简单的比色测定法。先前的Berthelot方法需要添加三种试剂,并依次与样品混合,这使微流体系统的设计复杂化。使用改进的方法,使用单个试剂添加步骤以1:1 v / v的试剂与样品的比率即可获得可比的结果,这大大简化了集成到自动传感平台中的流体处理要求。在660 nm的波长下检测到在氨存在下产生的强烈颜色。该方法可测定高达12 mg La?1 NH4 +的氨,检出限为0.015 mg La?1 NH4 +。通过使用改进的方法和离子色谱法对分水样进行分析来实现验证,得出的相关系数极佳,为0.9954。然后将该方法实施到一个完全集成的传感平台中,该平台包括带过滤器的样品入口,用于Berthelot试剂的存储单元和自校准标准品,控制样品运输和混合的泵送系统,微流体混合和检测芯片以及废物储存。光学检测系统由带光电二极管检测器的LED光源组成,该检测器能够对形成的有色配合物进行灵敏检测。微流体平台的鲁棒性和低成本加上集成的无线通信使其成为现场环境监测的理想平台。这是采用Berthelot方法修改版的全功能微流体平台的首次演示。

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