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Determination of Nitrate Nitrogen in Soil Based on K Ratio Spectrophotometry

机译:基于K比分光光度法的土壤中硝酸盐氮的测定

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The content of nitrate nitrogen in soil directly reflects the short-term supply ability of soil nitrogen, which is the crucial factor affecting the growth of crops. For the correction factor method of ultraviolet spectrophotometry can't effectively remove the interference of nitrite, this paper proposes a dual wavelength of K ratio spectrophotometry to detect nitrate nitrogen in soil in order to effectively eliminate the interference of the nitrite. The spectrum scanning was made for soil extract obtained by saturated calcium sulfate solution, selecting 205 nm and 230 nm as measuring wavelength and reference wavelength, to determine the coefficient K. Furthermore, the linear regression equation of standard curve on the relationship between concentrations of nitrate nitrogen and the corrected absorbance could be derived by regression analysis. Therefore, the quantitative model of nitrate nitrogen was established using dual-wavelength of K ratio spectrophotometry. Compared with correction factor method of ultraviolet spectrophotometry by soil sample experiments, the fitting correlation coefficient (R = 0.9996) of this method is higher than the latter (R = 0.9988), which showed its repeatability precision was better than the latter and the feasibility and validity of this method were proved.
机译:土壤中硝酸盐氮的含量直接反映了土壤氮的短期供应能力,这是影响作物生长的关键因素。对于紫外分光光度法的校正因子方法不能有效地除去亚硝酸盐的干扰,本文提出了双波长的K比分光光度法,以检测土壤中的硝酸盐氮气,以有效地消除亚硝酸盐的干扰。用于通过饱和硫酸钙溶液获得的土壤提取物,选择205nm和230nm作为测量波长和参考波长,以确定系数k的频谱扫描。此外,标准曲线的线性回归方程对硝酸盐浓度之间的关系通过回归分析可以衍生氮和校正的吸光度。因此,使用双波长的K比分光光度法建立硝酸盐氮的定量模型。与紫外分光光度法的校正因子方法通过土壤样品实验相比,该方法的配合相关系数(R = 0.996)高于后者(r = 0.9988),其展示其可重复性精度优于后者和可行性和可行性证明了这种方法的有效性。

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