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*Li, H. and A. P. Davis. 2009. ''Water Quality Improvement through Reductions of Pollutant Loads Using Bioretention''. Journal of Environmental Engineering 135, no. 8:567-576. | *Li, H. and A. P. Davis. 2009. ''Water Quality Improvement through Reductions of Pollutant Loads Using Bioretention''. Journal of Environmental Engineering 135, no. 8:567-576. | ||
*Li, L. and A. P. Davis. 2014. ''Urban Stormwater Runoff Nitrogen Composition and Fate in Bioretention Systems''. Environmental Science and Technology 48, no. 6: 3403-3410. | *Li, L. and A. P. Davis. 2014. ''Urban Stormwater Runoff Nitrogen Composition and Fate in Bioretention Systems''. Environmental Science and Technology 48, no. 6: 3403-3410. | ||
− | *Lin, C., Greenwald, D., & Banin, A. 2003. | + | *Lin, C., Greenwald, D., & Banin, A. 2003. ''Temperature dependence of infiltration rate during large scale water recharge into soils''. Soil Science Society of America Journal, 67, no. 2, 487-493. |
*Low Impact Development, Inc. 2007. [http://www.lid-stormwater.net/greenroofs_benefits_ncycle.htm Nitrogen Cycle in Soil]. Image. Urban Design Tools. | *Low Impact Development, Inc. 2007. [http://www.lid-stormwater.net/greenroofs_benefits_ncycle.htm Nitrogen Cycle in Soil]. Image. Urban Design Tools. | ||