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首页> 外文期刊>Journal of environmental monitoring: JEM >Analysis of river water samples utilising a prototype industrial sensing system for phosphorus based on micro-system technology
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Analysis of river water samples utilising a prototype industrial sensing system for phosphorus based on micro-system technology

机译:基于微系统技术的原型磷工业传感系统分析河水样品

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摘要

The application of a phosphorus monitoring device based on microsystems technology (MST) to the analysis of river water is presented. An alternative to the standard molybdenum blue method known as the yellow vanadomolybdophosphoric acid method has been very effectively implemented. The method is simple, a reagent and sample are mixed in a 1:1 ratio forming a yellow complex that absorbs strongly below 400 nm in the UV spectrum. The kinetics of the reaction are rapid and sample turnaround is typically 3 min at room temperature. Therefore a very uncomplicated microfluidic design can be adopted. The working wavelength was chosen as 380 nm to coincide with the peak output of a UV-LED narrow bandwidth light source recently developed by Nichia. The limit of detection for the yellow method in the microfluidic system is 0.2 ppm with a dynamic linear range from 0-50 ppm. The method was applied to a measurement of phosphorus in a local river at specific sampling points along its course.
机译:介绍了基于微系统技术(MST)的磷监测装置在河水分析中的应用。已经非常有效地实现了一种标准的钼蓝方法的替代方法,称为黄色钒钼钼磷酸法。该方法很简单,将试剂和样品以1:1的比例混合,形成黄色复合物,该复合物在UV光谱下的400 nm以下强烈吸收。反应动力学很快,样品在室温下的周转时间通常为3分钟。因此,可以采用非常简单的微流体设计。选择工作波长为380 nm,以与Nichia最近开发的UV-LED窄带宽光源的峰值输出一致。黄色方法在微流体系统中的检出限为0.2 ppm,动态线性范围为0-50 ppm。该方法用于测量沿途特定采样点的局部河流中的磷。

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