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*Agency for Toxic Substances and Disease Registry (ATSDR). 2012. [http://www.atsdr.cdc.gov/ToxProfiles/tp151-c1-b.pdf Toxicological Profile for Manganese]. N.p.: US EPA. | *Agency for Toxic Substances and Disease Registry (ATSDR). 2012. [http://www.atsdr.cdc.gov/ToxProfiles/tp151-c1-b.pdf Toxicological Profile for Manganese]. N.p.: US EPA. | ||
*Agency for Toxic Substances and Disease Registry. 2006. [http://www.atsdr.cdc.gov/toxprofiles/tp.asp?id=72&tid=19 Technical Factsheet on: CYANIDE]. N.p.: US EPA. | *Agency for Toxic Substances and Disease Registry. 2006. [http://www.atsdr.cdc.gov/toxprofiles/tp.asp?id=72&tid=19 Technical Factsheet on: CYANIDE]. N.p.: US EPA. | ||
+ | *Ahmed, F., R. Nestingen, J.L. Nieber, J.S. Gulliver, R.M. Hozalski. 2014. ''A Modified Philip-Dunne Infiltrometer for Measuring the Field-Saturated Hydraulic Conductivity of Surface Soil''. Vadose Zone Journal. 13(10). | ||
+ | *Ahmed, F., P. Natarajan, J.S. Gulliver, P.T. Weiss and J.L. Nieber, 2014. [http://www.lrrb.org/PDF/201430.pdf Final Report 2014-30]. Research Services and library, Office of Transportation System Management. Minnesota Department of Transportation. August. | ||
*Alachula County. [http://www.alachuacounty.us/Depts/EPD/Documents/WaterResources/Remediation%20BMP.pdf Best Management Practices for Controlling Runoff during Remediation at Contaminated Sites]. | *Alachula County. [http://www.alachuacounty.us/Depts/EPD/Documents/WaterResources/Remediation%20BMP.pdf Best Management Practices for Controlling Runoff during Remediation at Contaminated Sites]. | ||
*Alexander, Calvin E., Jr., and Geri L. Maki. 1988 [http://conservancy.umn.edu/bitstream/handle/11299/58436/sinkholes%5B1%5D.pdf?sequence=4&isAllowed=y Sinkholes and Sinkhole Probability Map, Olmsted County, MN]. University of Minnesota, MN USGS, Olmsted County Board of Commissioners. | *Alexander, Calvin E., Jr., and Geri L. Maki. 1988 [http://conservancy.umn.edu/bitstream/handle/11299/58436/sinkholes%5B1%5D.pdf?sequence=4&isAllowed=y Sinkholes and Sinkhole Probability Map, Olmsted County, MN]. University of Minnesota, MN USGS, Olmsted County Board of Commissioners. | ||
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*Alexander, E. Calvin, Jr.. 2006. [http://www.esci.umn.edu/sites/www.esci.umn.edu/files/user/user174/MN%20Karstlands%202006.jpg Minnesota Karst Lands. Map]. University of Minnesota, Department of Earth Sciences. | *Alexander, E. Calvin, Jr.. 2006. [http://www.esci.umn.edu/sites/www.esci.umn.edu/files/user/user174/MN%20Karstlands%202006.jpg Minnesota Karst Lands. Map]. University of Minnesota, Department of Earth Sciences. | ||
*Armstrong, D.E. and Llena, R. 1992. ''Stormwater Infiltration: Potential for Pollutant Removal''. Project Report to the U.S. Environmental Protection Agency. Wisconsin Department of Natural Resources, Water Chemistry Program. | *Armstrong, D.E. and Llena, R. 1992. ''Stormwater Infiltration: Potential for Pollutant Removal''. Project Report to the U.S. Environmental Protection Agency. Wisconsin Department of Natural Resources, Water Chemistry Program. | ||
+ | *Asleson, B.C., R.S. Nestingen, J.S. Gulliver, R.M. Hozalski, and J.L. Nieber. 2009. ''Assessment of Rain Gardens by Visual Inspection and Controlled Testing''. Journal of the American Water Resources Association. 45(4):1019-1031. | ||
+ | *Asleson, B.C.,, R.S. Nestingen, J.S. Gulliver, R.M. Hozalski, and J.L. Nieber. 2007. [http://home.safl.umn.edu/bmackay/pub/pr/pr501.pdf Development and Application of a Four-Level Rain Garden Assessment]. SAFL Project Report 494, July 2007. | ||
*ATSDR. 2002. [http://www.atsdr.cdc.gov/phs/phs.asp?id=79&tid=20#bookmark02 Public Health Statement for DDT, DDE, and DDD]. Agency for Toxic Substances & Disease Registry: Toxic Substances Portal. Last modified September 2002. | *ATSDR. 2002. [http://www.atsdr.cdc.gov/phs/phs.asp?id=79&tid=20#bookmark02 Public Health Statement for DDT, DDE, and DDD]. Agency for Toxic Substances & Disease Registry: Toxic Substances Portal. Last modified September 2002. | ||
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*Nimmer, M., A. Thompson, and D. Misra. 2010. ''Modeling Water Table Mounding and Contaminant Transport beneath Storm-water Infiltration Basins''. Journal of Hydrologic Engineering 15, no. 12:963-973. | *Nimmer, M., A. Thompson, and D. Misra. 2010. ''Modeling Water Table Mounding and Contaminant Transport beneath Storm-water Infiltration Basins''. Journal of Hydrologic Engineering 15, no. 12:963-973. | ||
*Novotny, Eric, Andrew Sander, Omid Mohseni, and Heinz Stefan. 2008. [http://conservancy.umn.edu/bitstream/handle/11299/115339/pr513.pdf?sequence=1 A Salt (Chloride) Balance for the Minneapolis/St. Paul Metropolitan Area Environment]. Report no. 513. St. Paul, MN: University of Minnesota St. Anthony Falls Laboratory. | *Novotny, Eric, Andrew Sander, Omid Mohseni, and Heinz Stefan. 2008. [http://conservancy.umn.edu/bitstream/handle/11299/115339/pr513.pdf?sequence=1 A Salt (Chloride) Balance for the Minneapolis/St. Paul Metropolitan Area Environment]. Report no. 513. St. Paul, MN: University of Minnesota St. Anthony Falls Laboratory. | ||
− | *NPRPD. 2007. [http://www.stormwaterok.net/CWP%20Documents/CWP-07%20Natl%20Pollutant%20Removal%20Perform%20Database.pdf National Pollutant Removal Performance Database Version 3]. Ellicott City, MD: Center for Watershed Protection. | + | *NPRPD. 2007. [http://www.stormwaterok.net/CWP%20Documents/CWP-07%20Natl%20Pollutant%20Removal%20Perform%20Database.pdf National Pollutant Removal Performance Database Version 3]. Ellicott City, MD: Center for Watershed Protection. |
+ | |||
+ | ==O== | ||
+ | *Olson, N.C., J.S. Gulliver, J.L. Nieber and M. Kayhanian. 2013. ''Remediation to Improve Infiltration into Compact Soils''. Journal of Environmental Management. 117:85-95 | ||
*OSWER. 2013. [http://www.epa.gov/superfund/sites/npl/index.htm National Priorities List (NPL)]. U.S. EPA Superfund Sites. Last modified October 16. | *OSWER. 2013. [http://www.epa.gov/superfund/sites/npl/index.htm National Priorities List (NPL)]. U.S. EPA Superfund Sites. Last modified October 16. | ||
==P== | ==P== | ||
*Passeport, E., W. F. Hunt, D. E. Line, R. A. Smith, and R. A. Brown. 2009. ''Field Study of the Ability of Two Grassed Bioretention Cells to Reduce Storm-Water Runoff Pollution''. Journal of Irrigation Drainage Engineering 135, no. 4:505-510. | *Passeport, E., W. F. Hunt, D. E. Line, R. A. Smith, and R. A. Brown. 2009. ''Field Study of the Ability of Two Grassed Bioretention Cells to Reduce Storm-Water Runoff Pollution''. Journal of Irrigation Drainage Engineering 135, no. 4:505-510. | ||
+ | *Paus, K.H., J. Morgan, J.S. Gulliver, T. Leiknes and R.M. Hozalski. 2014. ''Assessment of the Hydraulic and Toxic Removal Capacities of Bioretention Cells after 2 to 8 Years of Service''. Water, Soil and Air Pollution, 225 (1803). | ||
*Pitt, R and R. Field. 1999. ''Groundwater Contamination Potential from Stormwater Infiltration Practices''. Urban Water, 1, no. 3: 217-236. 1994. | *Pitt, R and R. Field. 1999. ''Groundwater Contamination Potential from Stormwater Infiltration Practices''. Urban Water, 1, no. 3: 217-236. 1994. | ||
*Pitt, R, S Clark, K Parmer, R Field, and T.P O'Connor. 1994. [http://infohouse.p2ric.org/ref/07/06744.pdf Potential Groundwater Contamination for International and Non-Intentional Stormwater Infiltration]. U.S. EPA. | *Pitt, R, S Clark, K Parmer, R Field, and T.P O'Connor. 1994. [http://infohouse.p2ric.org/ref/07/06744.pdf Potential Groundwater Contamination for International and Non-Intentional Stormwater Infiltration]. U.S. EPA. |