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Room-temperature phosphorescence fiber-optic instrumentation for simultaneous multiposition analysis of dissolved oxygen

机译:室温磷光光纤仪器,可同时对溶解氧进行多位分析

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摘要

The design and analytical characterization of a fiber-optic instrument for simultaneous multiposition water-dissolved oxygen monitoring by room-temperature phosphorescence (RTP) measurements is presented. The sensing principle is based on the RTP quenching by oxygen of the phosphorescent light emitted by the metal chelate formed by Al with 8-hydroxy-7-iodo-5-quino-linesulfonic acid (Al-ferron) trapped in a sol—gel solid support. Four RTP oxygen sensor flow-cells are assembled in order to measure the oxygen content in four different water streams. A xenon flash-lamp is used as the single excitation source for the four sensing regions, while multichannel phosphorescence detection is achieved by using a cooled intensified charge-coupled device (ICCD). Four bifurcated optical fibers are used to carry the light from the excitation source to the sensing active surface in the flow-cell and to bring the emitted RTP to the detector. The RTP light coming from each of the optical fibers was focused onto different sites (rows of pixels) of the ICCD. In this way, the RTP signals from each of the four sensing materials packed in the flow-cells can be differentiated and measured. Simultaneous dissolved oxygen monitoring in several water streams containing different dissolved oxygen levels is demonstrated by using the proposed instrumentation.Also, the relatively long phosphorescence lifetime of the materials used allow the use of the developed instrumentation to perform lifetime room-temperature phosphorescence measurements.
机译:提出了一种通过室温磷光(RTP)测量同时监测多位置水溶解氧的光纤仪器的设计和分析特性。感测原理基于RTP通过铝对金属的螯合剂发出的磷光进行的氧猝灭,该金属螯合物由Al与陷于溶胶-凝胶固体中的8-羟基-7-碘-5-喹啉-磺酸(Al-ferron)形成支持。组装了四个RTP氧气传感器流通池,以测量四种不同水流中的氧气含量。氙气闪光灯用作四个感应区域的单个激发源,而多通道磷光检测是通过使用冷却的增强型电荷耦合器件(ICCD)实现的。四个分叉的光纤用于将来自激发源的光传输到流通池中的传感活性表面,并将发出的RTP传递到检测器。来自每根光纤的RTP光被聚焦到ICCD的不同位置(像素行)。这样,可以区分和测量来自流通池中填充的四种传感材料中每一种的RTP信号。通过使用所提出的仪器,可以同时监测几种含有不同溶解氧水平的水流中的溶解氧。此外,所用材料的磷光寿命相对较长,因此可以使用开发的仪器进行室温室温下磷光寿命的测量。

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