HR: 1340h
AN: U43C-1405 [Abstracts]
TI: Soil Organic Carbon Estimation and Mapping Using "on-the-go" VisNIR Spectroscopy
AU: * Brown, D J
EM: david_brown@wsu.edu
AF: Dept. of Crop and Soil Sciences, Washington State University, 201 Johnson Hall, Pullman,
WA 99164, United States
AU: Bricklemyer, R S
EM: rsb@wsu.edu
AF: Dept. of Crop and Soil Sciences, Washington State University, 201 Johnson Hall, Pullman,
WA 99164, United States
AU: Christy, C
EM: christyc@geoprobe.com
AF: Veris Technologies, 601 N. Broadway, Salina, KS 67401, United States
AB:
Soil organic carbon (SOC) and other soil properties related to carbon sequestration (eg. soil clay content and
mineralogy) vary spatially across landscapes. To cost effectively capture this variability, new technologies, such
as Visible and Near Infrared (VisNIR) spectroscopy, have been applied to soils for rapid, accurate, and
inexpensive estimation of SOC and other soil properties. For this study, we evaluated an "on the go" VisNIR
sensor developed by Veris Technologies, Inc. (Salinas, KS) for mapping SOC, soil clay content and mineralogy.
The Veris spectrometer spanned 350 to 2224 nm with 8 nm spectral resolution, and 25 spectra were integrated
every 2 seconds resulting in 3 -5 m scanning distances on the ground. The unit was mounted to a mobile sensor
platform pulled by a tractor, and scanned soils at an average depth of 10 cm through a quartz-sapphire window.
We scanned eight 16.2 ha (40 ac) wheat fields in north central Montana (USA), with 15 m transect intervals.
Using random sampling with spatial inhibition, 100 soil samples from 0-10 cm depths were extracted along
scanned transects from each field and were analyzed for SOC. Neat, sieved (<2 mm) soil sample materials
were also scanned in the lab using an Analytical Spectral Devices (ASD, Boulder, CO, USA) Fieldspec Pro FR
spectroradiometer with a spectral range of 350-2500 and spectral resolution of 2-10 nm.
The analyzed samples were used to calibrate and validate a number of partial least squares regression (PLSR)
VisNIR models to compare on-the-go scanning vs. higher spectral resolution laboratory spectroscopy vs.
standard SOC measurement methods.
DE: 1094 Instruments and techniques
DE: 1631 Land/atmosphere interactions (1218, 1843, 3322)
DE: 1694 Instruments and techniques
SC: Union [U]
MN: 2007 Fall Meeting