Publications
2016
Soil Degradation Under Minimum Tillage Systems
(2016) W. H. Thompson, D.R. Huggins
Citation:
Thompson, W.H. and D.R. Huggins. Soil Degradation Under Minimum Tillage Systems. . ASA, CSSA, and SSSA International Meetings, Nov. 6-9, 2016, Phoenix, AZ.
Assessing Carbon Dynamics at High and Low Rainfall Agricultural Sites in the Inland Pacific Northwest US Using the Eddy Covariance Method
(2016) Waldo, S., Chi, J., Pressley, S.N., O’Keeffe, P., Pan, W.L., Brooks, E.S., Huggins, D.R., Stöckle, C.O., Lamb, B.K. | External Link
Citation:
Waldo, S., Chi, J., Pressley, S.N., O’Keeffe, P., Pan, W.L., Brooks, E.S., Huggins, D.R., Stöckle, C.O., Lamb, B.K. Assessing Carbon Dynamics at High and Low Rainfall Agricultural Sites in the Inland Pacific Northwest US Using the Eddy Covariance Method. Agricultural and Forest Meteorology 218–219:25–36. 2016.
Assessing carbon dynamics at high and low rainfall agricultural sites in the inland Pacific Northwest US using the eddy covariance method
(2016) Waldo, S., Chi, J., Pressley. S., O'Keeffe, P., Pan, W. L., Brooks, E., Huggins, D. R., Stöckle, C., and Lamb, B. K. | External Link
Citation:
Waldo, S., Chi, J., Pressley. S., O'Keeffe, P., Pan, W. L., Brooks, E., Huggins, D. R., Stöckle, C., and Lamb, B. K. (2016): Assessing carbon dynamics at high and low rainfall agricultural sites in the inland Pacific Northwest US using the eddy covariance method, Agriculture and Forest Meteorology 218-219, 25-36, doi.org/10.1016/j.agrformet.2015.11.018.
Assessing carbon dynamics at high and low rainfall agricultural sites in the inland Pacific Northwest United States using the eddy covariance method
(2016) Waldo, S., J. Chi, S. Pressley, P. O'Keeffe, W.L. Pan, E. Brooks, D.R. Huggins, C. Stöckle, and B.K. Lamb | External Link
Citation:
Waldo, S., J. Chi, S. Pressley, P. O'Keeffe, W.L. Pan, E. Brooks, D.R. Huggins, C. Stöckle, and B.K. Lamb. 2016. Assessing carbon dynamics at high and low rainfall agricultural sites in the inland Pacific Northwest United States using the eddy covariance method. Agriculture and Forest Meteorology 218-219, 25-36. doi.org/10.1016/j.agrformet.2015.11.018.
Earthworm distribution and density across a climatic gradient within the Inland Pacific Northwest cereal production region
(2016) Walsh, C.L. and J.L. Johnson-Maynard | External Link
Citation:
Walsh, C.L. and J.L. Johnson-Maynard. 2016. Earthworm distribution and density across a climatic gradient within the Inland Pacific Northwest cereal production region. Applied Soil Ecology 104:104-110.
A grower case study approach for transdisciplinary integration and technology transfer
(2016) Yorgey, G., K. Painter, H. Davis, K. Borrelli, E. Brooks, C. Kruger
Citation:
Yorgey, G., K. Painter, H. Davis, K. Borrelli, E. Brooks, C. Kruger. 2016. A grower case study approach for transdisciplinary integration and technology transfer. Poster. Agriculture in a Changing Climate Workshop, March 9-11, 2016, Kennewick, WA.
2015
AgMIP’s Trans-disciplinary Approach to Regional Integrated Assessment of Climate Impact, Vulnerability and Adaptation of Agricultural Systems
(2015) Antle, J.M. et al. | External Link
Citation:
Antle, J.M. et al. 2014 (in press). AgMIP's Trans-disciplinary Approach to Regional Integrated Assessment of Climate Impact, Vulnerability and Adaptation of Agricultural Systems. In Handbook of Climate Change and Agroecosystems, ed. D.Hillel and C. Rosenzweig.
Nitrogen loss from windblown agricultural soils in the Columbia Plateau
(2015) B. Sharratt, L. Strom, S. Pressley | External Link
Citation:
Sharratt, B., Strom, L., Pressley, S., Nitrogen loss from windblown agricultural soils int he Columbia Plateau. 2015. Aeolian Research 18: 47-53
Transition cropping system impact on organic wheat yield and quality. Renewable Agriculture and Food Systems
(2015) Borrelli, K., Koenig, R., Burke, I., Gallagher, R.S., Pittmann, D., Snyder, A. and Fuerst, E.P. | External Link
Citation:
Borrelli, K., Koenig, R., Burke, I., Gallagher, R.S., Pittmann, D., Snyder, A. and Fuerst, E.P. 2015. Transition cropping system impacts on organic wheat yield and quality. Renewable Agriculture and Food Systems, 30(5), pp. 461–472. doi: 10.1017/S1742170514000283.
Valuing Supporting Soil Ecosystem Services in Agriculture: a Natural Capital Approach
(2015) Brady, M.V., K. Hedlund, R-G. Cong, L. Hemerik, S. Hotes, S. Machado, L. Mattsson, E. Schulz and I. K. Thomsen | External Link
Citation:
Brady, M.V., K. Hedlund, R-G. Cong, L. Hemerik, S. Hotes, S. Machado, L. Mattsson, E. Schulz and I. K. Thomsen. 2015. Valuing Supporting Soil Ecosystem Services in Agriculture: a Natural Capital Approach. Agron. J.107(5):1809-1821.