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The role of perched aquifers in hydrological connectivity and biogeochemical processes in vernal pool landscapes, Central Valley, California. Hydrological Processes. 20, 1157–1175.(2005).
Hydro-economic analysis of groundwater pumping for irrigated agriculture in California’s Central Valley, USA. Hydrogeology Journal. 23(6), 1205-1216.(2015).
Geological control of physical and chemical hydrology in California vernal pools. Wetlands. 28, 347–362.(2008).
Economic Feasibility of Irrigated Agricultural Land Use Buffers to Reduce Groundwater Nitrate in Rural Drinking Water Sources. Water. 7(1),(2014).
Economic Analysis of Crop Nitrate Source Reductions. International Water Resources: Challenges for the 2151 Century and Water Resources Education.(2012).
California's agricultural regions gear up to actively manage groundwater use and protection. California Agriculture. 69(3), 11.(2015).
Assessing Potential Impacts of Livestock Management on Groundwater. Nicholas Institute for Environmental Policy Solutions. 20pp.(2014).
Agro-Economic Analysis of Nitrate Crop Source Reductions. Journal of Water Resources Management and Planning ASCE. 139(5), 11.(2013).
Agro-Economic Analysis of Management of Nitrogen Load of Groundwater in California. Fall Conference American Geophysical Union.(2011).
Addressing Nitrate in California’s Drinking Water with a Focus on Tulare Lake Basin and Salinas Valley Groundwater. Report for the State Water Resources Control Board Report to the Legislature. 80.(2012).
Addressing Nitrate in California’s Drinking Water: Technical Report 5 - Remediation of Groundwater Nitrate.(2012).
Addressing Nitrate in California’s Drinking Water: Technical Report 4 - Nitrate Occurrence in Groundwater.(2012).
Addressing Nitrate in California’s Drinking Water: Technical Report 3 - Reducing Sources of Nitrate in Groundwater.(2012).
Addressing Nitrate in California’s Drinking Water: Technical Report 2 - Sources of Nitrate in Groundwater.(2012).