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A Reversible Spectrophotometric Method Based on a Coupled Microfluidic Chip for Highly Selective Ammonium Detection

机译:基于耦合微流体芯片的可逆分光光度法,用于高选择性铵检测

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摘要

A coupled chip aiming at economical and highly selective ammonium detection was fabricated. It consisted of a reaction chip, a gas-diffusion chip, and a detection chip. Zinc tetraphenylporphyrin dyed on the cation-exchange resin microbeads was used as the indicating material to avoid excess consumption for its reversibility. PDMS was selected as the material of the gas-diffusion membrane. A portable spectrometer was applied for spectrum analysis. By analysis of spectrum change, the high selectivity was confirmed because no component had interference on detection effect. Good performance was shown for all the tested concentrations (0.2–50 mg·L−1). The stability and reversibility were also judged by the spectrum data obtained from the indicating process and the recovering process. Finally, real samples containing ammonium were tested and the results were compared to those came from a standard method to confirm the accuracy of our method.
机译:旨在制造旨在经济和高选择性铵检测的耦合芯片。它包括反应芯片,气体扩散芯片和检测芯片。锌四苯基卟啉染色在阳离子交换树脂微珠上用作指示材料,以避免过量消耗的可逆性。选择PDMS作为气体扩散膜的材料。应用便携式光谱仪进行频谱分析。通过分析光谱变化,确认了高选择性,因为没有组分对检测效果有干扰。所有测试浓度(0.2-50mg·L-1)显示出良好的性能。还通过从指示过程和回收过程获得的频谱数据来判断稳定性和可逆性。最后,测试了含铵的真实样品,并将结果与​​来自标准方法的结果进行比较,以确认我们方法的准确性。

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