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Mid-infrared Spectroscopic Determination of Soil Nitrate Content

机译:中红外光谱法测定土壤硝酸盐含量

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摘要

Mid-infrared (mid-IR) spectroscopy experiments were conducted to detect added nitrate in various soil types both in the laboratory and field. Soil pastes from ten different soils, including sandy loam, clay, and peat soils, were analysed for soil nitrate contents using the Fourier transform infrared (FTIR) attenuated total reflectance (ATR) technique. Nitrate concentrations for the laboratory experiments varied from approximately 0-1000 ppm. NO{sub}3-N while concentrations for the field experiments varied from approximately 0-140 ppm. NO{sub}3-N. Three-dimensional plots were created by graphing the wavelet deconvoluted values at 32 scales for each sample. From each plot, the volume of the nitrate peak was determined and correlated to nitrate concentrations. Results of the laboratory experiments indicated values for the coefficient of determination R{sup}2 as high as 0.99 and standard errors as low as 24 ppm. NO{sub}3-N for soil-specific calibrations. Results of the field experiments gave values for R{sup}2 as high as 0.98 and standard errors as low as 5 ppm NO{sub}3-N for soil-specific calibrations. An alternative technique to determine nitrate content was developed in which wavelet analysis was used to identify a few wavenumbers at which interferences from other ions were minimal. This method produced calibration equations that were soil independent and gave superior results to those obtained based on correlating wavelet deconvoluted volumes to nitrate concentrations.
机译:进行了中红外(mid-IR)光谱实验,以检测实验室和野外各种土壤类型中添加的硝酸盐。使用傅立叶变换红外(FTIR)衰减全反射(ATR)技术分析了十种不同土壤(包括沙壤土,粘土和泥炭土)的土壤糊中的硝酸盐含量。实验室实验中的硝酸盐浓度约为0-1000 ppm。 NO {sub} 3-N,而现场实验的浓度则在大约0-140 ppm之间变化。否{sub} 3-N。通过对每个样本以32个比例绘制小波去卷积值来创建三维图。从每个图中,确定硝酸盐峰的体积并将其与硝酸盐浓度相关联。实验室实验的结果表明,测定系数R {sup} 2的值高达0.99,标准误差低至24 ppm。 NO {sub} 3-N用于特定于土壤的校准。田间实验的结果表明,对于土壤特定的校准,R {sup} 2的值高达0.98,NO

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