Can Agricultural Management Induced Changes in Soil Organic Carbon Be Detected Using Mid-Infrared Spectroscopy?

A major limitation to building credible soil carbon sequestration programs is the cost of measuring soil carbon change. Diffuse reflectance spectroscopy (DRS) is considered a viable low-cost alternative to traditional laboratory analysis of soil organic carbon (SOC). While numerous studies have show...

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Veröffentlicht in:Remote sensing (Basel, Switzerland) Switzerland), 2021-06, Vol.13 (12)
Hauptverfasser: Sanderman, Jonathan, Savage, Kathleen, Dangal, Shree R. S., Duran, Gabriel, Rivard, Charlotte, Cavigelli, Michel A., Gollany, Hero T., Jin, Virginia L., Liebig, Mark A., Omondi, Emmanuel Chiwo, Rui, Yichao, Stewart, Catherine
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container_title Remote sensing (Basel, Switzerland)
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creator Sanderman, Jonathan
Savage, Kathleen
Dangal, Shree R. S.
Duran, Gabriel
Rivard, Charlotte
Cavigelli, Michel A.
Gollany, Hero T.
Jin, Virginia L.
Liebig, Mark A.
Omondi, Emmanuel Chiwo
Rui, Yichao
Stewart, Catherine
description A major limitation to building credible soil carbon sequestration programs is the cost of measuring soil carbon change. Diffuse reflectance spectroscopy (DRS) is considered a viable low-cost alternative to traditional laboratory analysis of soil organic carbon (SOC). While numerous studies have shown that DRS can produce accurate and precise estimates of SOC across landscapes, whether DRS can detect subtle management induced changes in SOC at a given site has not been resolved. Here, we leverage archived soil samples from seven long-term research trials in the U.S. to test this question using mid infrared (MIR) spectroscopy coupled with the USDA-NRCS Kellogg Soil Survey Laboratory MIR spectral library. Overall, MIR-based estimates of SOC%, with samples scanned on a secondary instrument, were excellent with the root mean square error ranging from 0.10 to 0.33% across the seven sites. In all but two instances, the same statistically significant (p < 0.10) management effect was found using both the lab-based SOC% and MIR estimated SOC% data. Despite some additional uncertainty, primarily in the form of bias, these results suggest that large existing MIR spectral libraries can be operationalized in other laboratories for successful carbon monitoring.
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source Directory of Open Journals (DOAJ); MDPI - Multidisciplinary Digital Publishing Institute; EZB-FREE-00999 freely available EZB journals
subjects Environmental Sciences & Ecology
Geology
Imaging Science & Photographic Technology
Remote Sensing
title Can Agricultural Management Induced Changes in Soil Organic Carbon Be Detected Using Mid-Infrared Spectroscopy?
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