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Beijing Friendship Danno Technology Co., Ltd

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Hitachi Vertical Heating Graphite Cone

NegotiableUpdate on 03/31
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Overview
Hitachi's longitudinally heated graphite cone is suitable for the atomic absorption spectrometer series graphite furnace atomizers produced by Hitachi in Japan, as well as for the same type of atomic absorption spectrometer series graphite furnace atomizers produced by various domestic instrument manufacturers.
Product Details

Hitachi Vertical Heating Graphite Cone

This graphite cone is suitable for the transverse heating graphite furnace atomizers of the atomic absorption spectrometer series produced by Puxi General Company, as well as for the graphite furnace atomizers of the same type produced by other instrument manufacturers in China.

Hitachi Vertical Heating Graphite Cone

Suitable for various models both domestically and internationallyAtomic absorption spectrometer, graphite atomizer, graphite cone, special modelsGraphite coneCustomization based on pictures is available.

Suitable for various models of atomic absorption spectrometers, graphite atomizers, and graphite cones at home and abroad. Special models of graphite cones can be customized according to drawings.

Graphite tubeThe role of

Atomic absorption spectroscopy is established based on the strong absorption of atomic resonance radiation by the ground state atoms of the measured element in the gaseous state. This method has the advantages of low detection limit, high accuracy, good selectivity, and fast analysis speed.

When the experimental conditions such as temperature absorption path length and injection method are fixed, the ground state atoms of the tested element generated by the sample absorb the monochromatic light radiated by the hollow cathode lamp of the element as a sharp line light source, and its absorbance (A) is directly proportional to the concentration (C) of the element in the sample. In the formula A=KC, K is a constant. Based on this, by measuring the absorbance of standard solution and unknown solution, and knowing the concentration of the standard solution, a standard curve can be drawn to obtain the concentration of the element to be measured in the unknown solution.