Relating apparent electrical conductivity to soil properties across the north-central USA
Relating apparent electrical conductivity to soil properties across the north-central USA
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DOI:
10.1016/j.compag.2004.11.010
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发表时间:
2005-03
影响因子:
8.3
通讯作者:
K. Sudduth;N. Kitchen;W. Wiebold;W. Batchelor;G. Bollero;D. Bullock;D. Clay;H. L. Palm;F. J. Pierce
中科院分区:
文献类型:
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作者:
K. Sudduth;N. Kitchen;W. Wiebold;W. Batchelor;G. Bollero;D. Bullock;D. Clay;H. L. Palm;F. J. Pierce
Apparent electrical conductivity (ECa) of the soil profile can be used as an indirect indicator of a number of soil physical and chemical properties. Commercially available ECasensors can efficiently and inexpensively develop the spatially dense datasets desirable for describing within-field spatial soil variability in precision agriculture. The objective of this research was to relate ECadata to measured soil properties across a wide range of soil types, management practices, and climatic conditions. Data were collected with a non-contact, electromagnetic induction-based ECasensor (Geonics EM38) and a coulter-based sensor (Veris 3100) on 12 fields in 6 states of the north-central United States. At 12–20 sampling sites in each field, 120-cm deep soil cores were obtained and used for soil property determination. Within individual fields, EM38 data collected in the vertical dipole orientation (0–150cm depth) and Veris 3100 deep (0–100cm depth) data were most highly correlated. Differences between ECasensors were more pronounced on more layered soils, such as the claypan soils of the Missouri fields, due to differences in depth-weighted sensor response curves. Correlations of ECawith clay content and cation exchange capacity (CEC) were generally highest and most persistent across all fields and ECadata types. Other soil properties (soil moisture, silt, sand, organic C, and paste EC) were strongly related to ECain some study fields but not in others. Regressions estimating clay and CEC as a function of ECaacross all study fields were reasonably accurate (r2≥0.55). Thus, it may be feasible to develop relationships between ECaand clay and CEC that are applicable across a wide range of soil and climatic conditions.