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An Integrated Optofluidic Platform Enabling Total Phosphorus On-Chip Digestion and Online Real-Time Detection

机译:集成的光流平台可进行总磷片上消化和在线实时检测

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摘要

This paper presents a total phosphorus online real-time monitoring system integrated with on-chip digestion based on the merits of optofluidic technology. The integrated optofluidic device contains a hollow optical fiber employed for pretreatment and digestion of phosphorus solution samples, a polydimethylsiloxane (PDMS)-based micromixer with convergent–divergent walls designed to enable sufficient mixing and chromogenic reaction, and a couple of optical fiber collimators attached with a Z-shaped flow cell for optical detection. Details of system design and fabrication are introduced in this paper. In the experiment, on-chip digestion of four typical phosphates in aqueous solution including organophosphorus and inorganic phosphorus is investigated under different reaction conditions, such as digestion temperature, concentration of oxidant and pH value, and the optimal reaction parameters are explored under different conditions. Meanwhile, we demonstrate the online real-time monitoring function of the optofluidic device, and the digestion mechanisms of four different phosphates are analyzed and discussed. Compared with the national standard method, we find that the measurement accuracy and sensitivity are acceptable when the concentration of total phosphorus is between 0.005–0.9 mg/L (by weight of P) in aqueous solution, which covers the range defined in the national standard. The traditional digestion time of several hours is greatly reduced to less than 10 s, and the content of total phosphorus can be obtained in a few minutes. The integrated optofluidic device can significantly shorten the test time and reduce the sample amount, and also provides a versatile platform for the real-time detection and analysis of many biochemical samples.
机译:本文基于光流技术的优点,提出了一种集成了片内消解的全磷在线实时监测系统。集成的光流控设备包含用于预处理和消解磷溶液样品的中空光纤,基于聚二甲基硅氧烷(PDMS)的微混合器,其会聚-发散壁设计成能够进行充分的混合和发色反应,另外还有两个与光导纤维相连的准直器用于光学检测的Z形流通池。本文介绍了系统设计和制造的详细信息。在实验中,研究了在不同反应条件下(如消化温度,氧化剂浓度和pH值)对四种典型磷酸盐在有机磷和无机磷水溶液中的片上消解,并探索了在不同条件下的最佳反应参数。同时,我们演示了光流控设备的在线实时监控功能,并分析和讨论了四种不同磷酸盐的消化机理。与国家标准方法相比,我们发现当水溶液中总磷的浓度在0.005-0.9 mg / L(以P重量计)时,测量精度和灵敏度是可以接受的,这覆盖了国家标准中定义的范围。传统的消解时间从几个小时大大减少到不到10 s,总磷含量可在几分钟内获得。集成的光流控设备可以大大缩短测试时间并减少样品量,并且还为多种生化样品的实时检测和分析提供了一个多功能平台。

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