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Characterization of Total-Phosphorus (TP) Pretreatment Microfluidic Chip Based on a Thermally Enhanced Photocatalyst for Portable Analysis of Eutrophication

机译:基于热增强光催化剂的总磷(TP)预处理微流体芯片的鉴定富营养化分析

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摘要

To minimize conventional total-phosphorus (TP) analysis systems, TP pretreatment microfluidic chip is proposed and characterized in this paper. Phosphorus (P) is one of the most important elements in ecosystem but it causes the eutrophication due to its overdose. TP analysis systems are increasingly receiving attention as a means to prevent eutrophication. Even though conventional TP analysis systems have high accuracy and sensitivity, they are not frequently utilized outside the laboratory because of their bulky size, complicated pretreatment processes, long response times, and high cost. Thus, there is a growing need to develop portable TP analysis systems. The microfluidic chip in this study is proposed with the aim of simplifying and minimizing TP analysis by replacing the conventional pretreatment process with a new method employing a thermally enhanced photocatalytic reaction that can be applied directly to a microfluidic chip of small size. The fabricated TP pretreatment microfluidic chip with thermally enhanced photocatalyst (TiO2) was optimized compared to the conventional pretreatment equipment (autoclave). The optimum pretreatment conditions using the proposed chip were pretreatment time of 10 min and temperature of 75 °C. The optimized pretreatment process using the proposed microfluidic chip showed similar performance to the conventional pretreatment method, even with shorter pretreatment time. The shorter pretreatment time and small size are advantages that enable the TP analysis system to be minimized. Therefore, the proposed TP pretreatment microfluidic chip based on thermally enhanced photocatalytic reaction in this study will be utilized to develop a portable TP analysis system.
机译:为了使常规的总磷(TP)分析系统最小化,本文提出并表征了TP预处理微流体芯片。磷(p)是生态系统中最重要的元素之一,但它导致富营养化引起的过量。 TP分析系统越来越受到预防富营养化的手段的关注。尽管传统的TP分析系统具有高精度和灵敏度,但由于其庞大的尺寸,复杂的预处理过程,长响应时间和高成本,它们不会经常在实验室外使用。因此,越来越需要开发便携式TP分析系统。本研究中的微流体芯片提出了通过用具有热增强的光催化反应的新方法更换传统的预处理方法来简化和最小化TP分析,该方法可以直接施加到小尺寸的微流体芯片。与传统的预处理设备(高压釜)相比,优化了具有热增强光催化剂(TiO2)的制造的TP预处理微流体芯片。使用所提出的芯片的最佳预处理条件是10分钟的预处理时间和75℃的温度。使用所提出的微流体芯片的优化预处理方法表现出与传统预处理方法类似的性能,即使预处理时间较短。更短的预处理时间和小尺寸是使TP分析系统最小化的优点。因此,基于本研究中的基于热增强光催化反应的所提出的TP预处理微流体芯片将用于开发便携式TP分析系统。

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