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Analysis on influencing factors of detecting chemical oxygen demand in water by ultraviolet absorption spectroscopy

机译:紫外吸收光谱法检测水中化学需氧量的影响因素分析

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Taking the standard solution and actual water samples as the research object, this paper studies the influence of various environmental factors (temperature, alkalinity (pH), inorganic salt ions and salinity) on the detection of chemical oxygen demand (COD) in water by ultra-violet (UV) spectrometry, analyzes the influence mechanism, and draws relevant conclusions. The results show that the UV absorbance of the COD standard solution and the actual river water samples varies very little with temperature. The value of pH has certain impact on both the standard solution and the actual water samples, but the pH values of the affected experimental samples are in different ranges. The effects of nitrogen salt ions (NO2- and NO3-) on the UV absorption spectra can be eliminated by intercepting the UV spectrum interval less affected for modeling. The influence of salinity values below 35 PTSTHOUSND; on the UV absorption spectrum of water is mainly concentrated in the spectral band of 200-250 nm, and the influence above 250 nm is very little. This paper provides a preliminary analysis and discussion on the influence mechanism and laws of various environmental factors in the detection of water quality parameters by UV spectrometry, which provides an experimental basis for selecting the optimal test conditions when establishing the COD prediction model.
机译:本文以标准溶液和实际水样为研究对象,研究了各种环境因素(温度、碱度(pH)、无机盐离子和盐度)对紫外(UV)光谱法检测水中化学需氧量(COD)的影响,分析了其影响机理,并得出了相关结论。结果表明,COD标准溶液和实际河水样品的紫外吸光度随温度变化很小;pH值对标准溶液和实际水样均有一定影响,但受影响实验样品的pH值在不同范围内。氮盐离子(NO2-和NO3-)对紫外吸收光谱的影响可以通过截留受影响较小的紫外光谱区间来消除。盐度值低于35和PTSTHOUSND的影响;对水的紫外吸收光谱主要集中在200-250nm的光谱波段,250nm以上的影响很小。本文对各种环境因子在紫外光谱法检测水质参数的影响机理和规律进行了初步分析和探讨,为建立COD预测模型时选择最佳试验条件提供了实验依据。

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