Chemical oxygen demand detection method research and portable instrument development based on microfluidic chip

Jinlong Shi, Ping Fu, Wenbin Zheng, Hongtao Yin, Lei Feng, Jiaqing Qiao
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Abstract

This paper presents a novel portable chemical oxygen demand (COD) detection method and instrument design based on the microfluidic chip technology. The oxidation reaction and temperature detection are integrated in a microfluidic chip. The principle is that there is heat released during the oxidation of organic compounds and the heat is proportional to the amount of organic compounds contained in water sample. The heat variation can be converted to voltage signal which has linear relationship with COD value. In this research, the NaClO solution is employed as oxidizer and the glucose solution is served as analyte. Three different geometric microfluidic chips are designed in order to choose the most suitable microfluidic chip scheme, the oxidizer concentration and injection rates. The flows characteristics, mixing behavior and heat release of fluids within the microfluidic chip are simulated and investigated by COMSOL multi-physics simulation software. The results show that the most suitable NaClO concentration, injection rates and microfluidic chip scheme are 28mol/L, lmm/s and Y sharp with block. A portable COD detection instrument based on the microfluidic chip technology is developed. There is a simple experiment for proving the feasibility of the instrument, the experiment results show that the experiment device is work well.
基于微流控芯片的化学需氧量检测方法研究及便携式仪器研制
提出了一种新型便携式化学需氧量(COD)检测方法及基于微流控芯片技术的仪器设计。氧化反应和温度检测集成在微流控芯片中。原理是有机化合物氧化时放出热量,热量与水样中所含有机化合物的量成正比。热变化可以转换成电压信号,电压信号与COD值呈线性关系。本研究以NaClO溶液为氧化剂,葡萄糖溶液为分析物。为了选择最合适的微流控芯片方案、氧化剂浓度和注射速率,设计了三种不同几何形状的微流控芯片。利用COMSOL多物理场仿真软件对微流控芯片内流体的流动特性、混合行为和放热进行了模拟和研究。结果表明,最适宜的NaClO浓度、注射速率和微流控芯片方案分别为28mol/L、lmm/s和Y尖带块。研制了一种基于微流控芯片技术的便携式COD检测仪。通过简单的实验验证了该仪器的可行性,实验结果表明该实验装置工作良好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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