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METHOD FOR OPTICAL DETERMINATION OF COMPONENT, MAINLY HYDROGEN SULFIDE, AND ITS CONCENTRATION IN GAS FLOW

机译:光度法测定主要硫化氢组分及其在气流中的浓度

摘要

FIELD: physics.;SUBSTANCE: method for optical determination of a component, mainly hydrogen sulfide, and its concentration in a gas flow involves irradiating a sample of the test gas using laser radiation with different wavelengths, at which luminescent radiation in the UV or visible range is combined with the laser radiation in the near IR range to achieve threshold of intensity at which stimulated Brillouin scattering effect arises with the formation of Stokes components. Then, the spectral distribution of the intensity of the radiation passing through the sample is recorded, the excess of the received signal is determined above the threshold noise level and the absolute values of the obtained peaks and the main maximum corresponding to the laser radiation are compared. The sample of the test gas is irradiated in a gas analyzer chamber filled with water, which temperature is maintained in the range of 80-85°C. The presence of the component is identified by the frequency of the radiation maximum obtained as a result of stimulated Brillouin scattering, and its concentration is defined as the intensity logarithm of the Stokes component. The gas analyzer is placed directly in the gas flow zone, and at least one solid-state laser with semiconducting pumping built into the gas analyzer chamber is used as the laser irradiation source. The wavelength of the laser radiation in the UV and visible range is chosen within 200-530 nm, and in the near IR range - 810-1200 nm.;EFFECT: possibility to determine the component, mainly hydrogen sulphide, and its concentration in the gas flow with high accuracy, and continuous process monitoring.;4 cl, 4 dwg
机译:物质:主要测定硫化氢及其在气流中的浓度的光学测定方法,涉及使用不同波长的激光辐射照射测试气体样品,在该波长下,紫外线或可见光中的发光辐射该范围与近红外范围内的激光辐射相结合,以达到强度阈值,在该阈值处随着斯托克斯分量的形成而产生受激布里渊散射效应。然后,记录穿过样品的辐射强度的光谱分布,确定接收信号的剩余量是否超过阈值噪声水平,并比较所获得峰的绝对值和与激光辐射对应的主最大值。在充满水的气体分析仪腔室中照射测试气体样品,该温度保持在80-85°C的范围内。通过受激布里渊散射获得的最大辐射频率来确定组分的存在,其浓度定义为斯托克斯组分的强度对数。气体分析仪直接放置在气体流动区域中,并且至少一个内置在气体分析仪腔室内的带有半导体泵浦的固态激光器用作激光照射源。紫外和可见光范围内的激光辐射波长选择在200-530 nm之间,近红外范围内-810-1200 nm .;效果:可以确定主要是硫化氢的成分及其在水中的浓度高精度的气体流量,并持续进行过程监控。; 4 cl,4 dwg

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