3.9 Article

The prediction of soil carbon fractions using mid-infrared-partial least square analysis

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AUSTRALIAN JOURNAL OF SOIL RESEARCH
卷 45, 期 2, 页码 73-81

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CSIRO PUBLISHING
DOI: 10.1071/SR06083

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mid infrared; MIR; PLS; organic carbon; TOC; carbon fractions; charcoal

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This paper describes the application of mid-infrared (MIR) spectroscopy and partial least-squares (PLS) analysis to predict the concentration of organic carbon fractions present in soil. The PLS calibrations were derived from a standard set of soils that had been analysed for total organic carbon (TOC), particulate organic carbon (POC), and charcoal carbon (char-C) using physical and chemical means. PLS calibration models from this standard set of soils allowed the prediction of TOC, POC, and char-C fractions with a coefficient of determination (R-2) of measured v. predicted data ranging between 0.97 and 0.73. For the POC fraction, the coefficient of determination could be improved (R-2 = 0.94) through the use of local calibration sets. The capacity to estimate soil fractions such as char-C rapidly and inexpensively makes this approach highly attractive for studies where large numbers of analyses are required. Inclusion of a set of soils from Kenya demonstrated the robustness of the method for total organic carbon and charcoal carbon prediction.

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