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All-in-One Flow Injection Spectrophotometric System for Field Testing

机译:一体化流动注射分光光度法,用于现场测试

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To date one of the most significant innovative trends in chemical analysis is to develop analytical instruments that have processed to analyze on-site. Such an apparatus should minimize problems related to sample transports, sample handlings and sample storages. Currently, a traditional wet analysis in laboratories has been replaced with a portable device designed to minimize problems from sending samples to the lab. One of the practical chemical methods which can be developed as the mobile device is flow injection analysis (FIA) because the scaled-down FIA manifolds have been already presented. Regarding the detection, the rapid progress in material science and electronic technology consents the construction of portable detection devices, particularly light-emitting-diodes (LEDs) based-spectrometers. In this work, the FIA analyzer integrated with a built-in detector was designed for on-site chemical testing. A double syringes pump was assembled for transporting of the reagent carrier which were merged at the first mixing coil. A plug of a sample solution was inserted automatically by using a six-port-valve and was mixed with the carrier stream at the second mixing coil before directed to the detector. The heart of the developed analyzer is the built-in spectrophotometric sensor, made of the LEDs as a light source and a photodiode as a detector. The continuous stream of the final product was pushed into a quartz flow-through cuvette and then was exposed to the LED light. Finally, the absorbance of the product solution was calculated according to the Beer-Lambert law.
机译:迄今为止,化学分析中最重要的创新趋势之一是开发已处理以分析现场的分析仪器。这种装置应尽量减少与样本传输,样品处理和样品存储有关的问题。目前,在实验室中的传统湿法分析已被替换为便携式设备,该便携式设备被替换为最小化向实验室发送样品的问题。作为移动设备开发的实用化学方法之一是流动注射分析(FIA),因为已经呈现了缩小的FIA歧管。关于检测,材料科学和电子技术的快速进步同应了基于便携式检测装置,特别是发光二极管(LED)的光谱仪的构造。在这项工作中,设计了与内置探测器集成的FIA分析仪用于现场化学测试。组装双注射器泵以输送在第一混合线圈处合并的试剂载体。通过使用六端口阀自动插入样品溶液中,并在第二混合线圈处与载体流混合,然后指向检测器。开发分析器的核心是内置分光光度传感器,由LED制成为光源和作为检测器的光电二极管。将最终产物的连续流推到石英流过色皿中,然后暴露于LED光。最后,根据啤酒兰伯特法计算产物溶液的吸光度。

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