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Flow cell within an LED: a proposal for an optical absorption detector

机译:LED内的流通池:光学吸收检测器的建议

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Droplets formed at the tip of a tube under the same conditions possess extreme uniformity of form, volume and weight. These properties of liquid drop formation have been known for a long time and consequently many applications for the drop have been found in instrumentation and chemical analysis methods. In the present paper, we report on the analytical use of a dynamic LED-based flow-through optical absorption detector with optical path length controlled by continuous dropping of a solution. This arrangement consists of a flow cell built within a high-intensity red LED (λ max = 630 nm). The feasibility of the detector is demonstrated by colorimetric determination of methylene blue, and ammonium by Berthelot’s reaction, in a flow-injection system. For ammonium, the reaction forms a blue dye (indophenol) with a maximum absorption at 630–650 nm. The detection limit, considered as 3 times the signal of the blank, is better than 125 μg l-1. The small flow cell represents a good combination of optical path length, low volume and fast washout. This detector can be used advantageously in automated methods and can represent a solution to problems of optical detection involving gas bubbles and precipitation of particles in turbidimetric applications.
机译:在相同条件下,在管尖处形成的液滴具有极其均匀的形状,体积和重量。液滴形成的这些特性已为人所知,因此在仪器和化学分析方法中发现了许多液滴的应用。在本文中,我们报告了基于动态LED的流通式光吸收检测器的分析用途,该检测器的光程长度由溶液的连续滴入控制。这种布置由内置在高强度红色LED(λmax = 630 nm)中的流通池组成。在流动注射系统中,通过Berthelot反应通过比色法测定亚甲基蓝和铵,证明了该检测器的可行性。对于铵,反应形成蓝色染料(吲哚酚),在630-650 nm处具有最大吸收。被认为是空白信号的3倍的检出限优于125μgl-1 。小流通池代表了光程长,体积小和冲洗快的良好组合。该检测器可以有利地用于自动化方法中,并且可以代表解决浊度应用中涉及气泡和颗粒沉淀的光学检测问题的解决方案。

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