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Fiber Optic Adaptive Probe as a Cuvette Substitution for UV-Vis Spectrophotometer (Genesis 10S)

机译:光纤自适应探针作为UV-VIS分光光度计(基因10S)的比色皿替代

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摘要

Fiber optic adaptive probe UV-Vis for Genesis 10S has been fabricated to substitute cuvette for real time analysis. Most of standard spectrophotometers UV-Vis (the common type) use cuvette to place sample which is being analyzed. The light pass through the sample in the cuvette to detector then the intensity of the absorption of the solution is measured. Most of the cuvette system requires to transferring sample solution to cuvette from its original vessel, so the real time analysis cannot be conducted. The probe with special design using fiber optic cable FT-Au tonics 420-10 has been made to substitute the cuvette system. The light from the source moved inside fiber optic cable, which has been cut in the middle of the cable (the sample can passes through at this gap), to the detector. The end (entrance and exit) of the fiber optic was designed so that it fit to the compartment of the Genesis 10S spectrophotometer without any modification from the standard instrument condition. The spectrum results from the probe in varies gap, in the range 0.2 – 1 cm, was observed. The gap in the middle of the fiber optic was equal to the length of the pathway in the cuvette system. Rhoda mine B was used as the sample with variation concentration 4.175 × 10-5 M, 3.34 × 10-5 M, 2.5 × 10-5 M, and 1.67 × 10-5 M. The spectrum result of adaptive fiber optic probe was compared to the spectrum of standard cuvette system. The optimum result was provided using 0.2 cm gap. The maximum wavelength absorbance of adaptive fiber optic probe was at 533 nm which similar to the cuvette system.
机译:已经制造了Genesis 10s的光纤自适应探针UV-Vis以替代比色皿进行实时分析。大多数标准分光光度计UV-Vis(公共类型)使用比色皿放置正在分析的样品。光通过比色皿中的样品在比色皿中进行检测器,然后测量溶液吸收的强度。大多数比色皿系统需要从其原始容器将样品溶液转移到比色皿中,因此无法进行实时分析。采用光纤电缆FT-AU调谐420-10的具有特殊设计的探头已经取代了比色皿系统。来自光纤电缆的源头的光,在电缆中间切割(样品可以通过该间隙可以通过该间隙),到检测器。光纤的端部(入口和出口)设计成使其适合于起草10S分光光度计的隔室,而无需从标准仪器条件的任何修改。观察到来自探针的探针的光谱结果在0.2-1cm的范围内。光纤中间的间隙等于比色皿系统中途径的长度。 rhoda Mine B被用作变化浓度的样品4.175×10-5 m,3.34×10-5 m,2.5×10-5 m,比较自适应光学探针的频谱结果到标准比色皿系统的光谱。使用0.2cm间隙提供最佳结果。自适应光纤探针的最大波长吸收率为533nm,其类似于比色皿系统。

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