• <table class="infobox" style="border:3px; border-style:solid; border-color:#FF0000 ...and_practices_for_climate_resilience#Enhancing_harvest_and_reuse Enhancing harvest and reuse]
    66 KB (9,188 words) - 16:22, 7 May 2024
  • The following table provides a summary of data from the literature. Maximum concentrations are ...sewers; and infiltration of groundwater when the MS4 lies below the water table (Sercu et al. 2011). Upgrading, repairing, or slip-lining faulty sanitary s
    31 KB (4,336 words) - 13:13, 7 February 2023
  • *<span title="Bioretention, also called rain gardens, is a terrestrial-based (up-land as opposed to wetland) water quali *<span title="Stones placed at the entrance to a rain garden to help slow the speed at which runoff enters the gardens> '''“dro
    103 KB (15,376 words) - 14:34, 22 January 2023
  • #REDIRECT [[Stormwater and rainwater harvest and use/reuse]] ...ns and costs. Additionally, the MIDS calculator will be updated to include harvest and use. See [http://stormwater.pca.state.mn.us/index.php/Stormwater_and_ra
    87 KB (12,743 words) - 18:45, 2 February 2023
  • circle 270 125 30 [[Bioretention|Bioretention (rain garden) is a terrestrial-based (up-land as opposed to wetland) water qualit circle 920 125 30 [[Stormwater and rainwater harvest and use/reuse|A stormwater harvesting and use system is a constructed syste
    24 KB (3,277 words) - 15:12, 19 July 2023
  • circle 270 125 30 [[Bioretention|Bioretention (rain garden) is a terrestrial-based (up-land as opposed to wetland) water qualit circle 920 125 30 [[Stormwater and rainwater harvest and use/reuse|A stormwater harvesting and use system is a constructed syste
    24 KB (3,277 words) - 15:20, 19 July 2023
  • ...www.epa.gov/soakuptherain/soak-rain-new-england-webinar-series Soak Up the Rain New England Webinar Series] *Blue Thumb [http://www.blue-thumb.org/events/ offers ongoing classes on rain gardens and shoreline stabilization]
    42 KB (5,832 words) - 18:59, 3 December 2022
  • <table class="infobox" style="border:3px; border-style:solid; border-color:#FF0000 </table>
    44 KB (6,189 words) - 13:56, 11 February 2023
  • circle 270 125 30 [[Bioretention|Bioretention (rain garden) is a terrestrial-based (up-land as opposed to wetland) water qualit circle 920 125 30 [[Stormwater and rainwater harvest and use/reuse|A stormwater harvesting and use system is a constructed syste
    56 KB (8,201 words) - 14:14, 2 April 2024
  • {{alert|Stormwater and rainwater harvest and use systems can improve or maintain watershed hydrology, reduce polluta ...m ultra-urban settings to new development. The scale and complexity of any harvest and use project depends on several factors, including source water quality,
    113 KB (16,329 words) - 17:02, 29 December 2022
  • ...ome water will infiltrate through the bottom and sidewalls of the BMP as a rain event proceeds. The instantaneous volume method therefore may underestimate ...computing volume, TSS, and/or TP removal for biofiltration BMPs. Sort the table by ''Infiltrator BMPs'' to identify BMPs that may include infiltration prac
    42 KB (5,899 words) - 14:22, 26 July 2022
  • ...om re-suspension when additional runoff enters the pond during and after a rain event (WEF, ASCE/EWRI, 2012). ...appropriate for constructed ponds and wetlands, use the sort arrow on the table and sort by ''Constructed Basin BMPs''. Models identified with an ''X'' may
    59 KB (8,449 words) - 18:13, 1 August 2022
  • ...appropriate for constructed ponds and wetlands, use the sort arrow on the table and sort by ''Constructed Basin BMPs''. Models identified with an ''X'' may ...ncies from the National Pollutant Removal Database (2007) & Acceptable BMP Table for Virginia]
    36 KB (5,160 words) - 22:22, 23 November 2022
  • ...ome water will infiltrate through the bottom and sidewalls of the BMP as a rain event proceeds. The instantaneous method therefore may underestimate actual ...as materially decreased, which usually takes place within 2–3 days after a rain or irrigation in pervious soils of uniform structure and texture."> '''fiel
    58 KB (8,708 words) - 02:30, 15 December 2022
  • [[Table of Contents test page]] ...el_3_-_Best_management_practices/Nonstructural_practices/Harvest_and_reuse Harvest and reuse]
    48 KB (6,516 words) - 21:10, 10 April 2023
  • ...experienced, the total unknown information may be a roadblock itself. The table below is intended to categorize the key questions and topics that should be Example goals and objectives are illustrated in the accompanying table.
    66 KB (9,074 words) - 22:00, 21 February 2023
  • ...x.php/Annual_volume_treated_as_a_function_of_soil_and_water_quality_volume table above]). The TSS EMC is 54.5 milligrams per liter and the removal efficienc ...x.php/Annual_volume_treated_as_a_function_of_soil_and_water_quality_volume table above]). The TP EMC is 0.3 milligrams per liter and the removal efficiency
    51 KB (7,365 words) - 20:08, 22 November 2022
  • ...x.php/Annual_volume_treated_as_a_function_of_soil_and_water_quality_volume table above]). The TSS EMC is 54.5 milligrams per liter and the removal efficienc ...x.php/Annual_volume_treated_as_a_function_of_soil_and_water_quality_volume table above]). The TP EMC is 0.3 milligrams per liter and the removal efficiency
    51 KB (7,398 words) - 14:29, 2 February 2023
  • ...php/Phosphorus_credits_for_bioretention_systems_with_an_underdrain link to table] ...php/Phosphorus_credits_for_bioretention_systems_with_an_underdrain link to table]
    70 KB (10,269 words) - 20:36, 17 November 2022
  • ...php/Phosphorus_credits_for_bioretention_systems_with_an_underdrain link to table] ...php/Phosphorus_credits_for_bioretention_systems_with_an_underdrain link to table]
    75 KB (11,201 words) - 18:43, 13 December 2022

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