This project will improve surface water quality within the sediment degraded Trout Brook, a designated trout stream and tributary to the Cannon River. The project will focus on the installation of best management practices that will reduce the amount of sediment transport within the watershed. Approximately 20 practices will be installed through this project which will reduce an estimated 2,000 tons of sediment per year.
At almost 4,000 acres, Trout Brook is the largest subwatershed in the Capitol Region Watershed District and the City of Saint Paul. The restored stream is part of the 42 acre Trout Brook Nature Sanctuary project, whose goal is to return the area back to some resemblance of its pre-industrialized valley of stream floodplain and wetlands. Monitoring results within the corridor show that phosphorus, sediments, bacteria, lead and copper are the pollutants of most concern.
The Southwest Prairie Technical Service Area 5 (SWPTSA), located in the southwest corner of Minnesota, encompasses 11 Soil and Water Conservation Districts (SWCDs): Cottonwood, Jackson, Lac Qui Parle, Lincoln, Lyon, Murray, Nobles, Pipestone, Redwood, Rock, and Yellow Medicine. This project will protect natural resources within the three major river basins of Minnesota, Missouri and Des Moines Rivers. The SWPTSA will assist member SWCDs in locating and identifying priority subwatersheds that have soil erosion and water quality issues using terrain analysis.
This project will build off the success of the additional geographic information system (GIS) and water planning expertise the TSA8 added in 2016 to provide consistent mapping, water planning assistance and training to partners. This project will help soil and water conservation districts prepare for the 1W1P process before the planning starts. A unified protection methodology is essential for the 1W1P process to be successful. This project will include: unified GIS mapping and protection model for all nine counties respectively.
This project will assure that buffer strip compliance is being followed throughout the system. It will identify areas that will work to keep excess sediment and nutrients out of the water and provide a good strategy for cleaning the water and reducing costs to the system long term. More importantly, it provides an opportunity to have dialogue with landowners along the entire ditch and communicate the importance of buffers and conservation practices such as detainment areas and catchment Best Management Practices that keep the soil out of the system.
The final outcome of this project will be a chloride management plan which will lay out a strategy for addressing chloride impacts to our surface waters for the 7-county metropolitan area. This chloride management plan will satisfy EPA requirements for impaired waters, address waters not yet listed, and develop a strategy to protect waters that are currently meeting the water quality standards. This management plan will also include implementation activities for reducing chloride to TCMA waters as well as identify high priority areas to target implementation activities.
This project will complete a chloride management plan which will lay out a strategy for addressing chloride impacts to our surface waters for the 7-county metropolitan area. This chloride management plan will satisfy EPA requirements for impaired waters, address waters not yet listed, and develop a strategy to protect waters that are currently meeting the water quality standards.
This project will provide the MPCA and all local partners in the Twin Cities Metropolitan Area (TCMA) the information and tools necessary to improve and/or maintain water quality with respect to chloride for the 7-county metropolitan area during the winter maintenace period.
This project is the second phase of updating the Two Rivers watershed Hydrologic Simulation Program FORTRAN (HSPF) model. This project includes calibration of the model and including a proposed impoundment in the model. An analysis of possible downstream water quality impacts will also be done.
The primary objective of this project is to extend the simulation period of the Two Rivers Watershed Hydrological Simulation Program FORTRAN (HSPF) model through 2017 to support future simulation and assessment of the planned Klondike impoundment.
The goals of Phase I of the TRW WRAP are to: 1) gather or develop watershed data needed for the development of the Watershed Restoration and Protection Strategy; and 2) establish project and sub-basin work groups, develop a social outcomes strategy, and develop a civic engagement evaluation strategy to guide the WRAP project.
The Two Rivers Watershed is listed as a high priority in the Stearns County Comprehensive Water Management Plan. This project will inventory the existing public drainage systems and develop a targeting program to measure, prioritize and target the factors causing the water quality problems of Two Rivers Lake (impaired for nutrients) in Stearns County. With public access and a county park on the lake, it is a destination for fisherman in the area.
This project will provide modeling services to support the completion of the Typo Lake and Martin Lake Excess Nutrients TMDL report. A Total Maximum Daily Load (TMDL) report quantifies pollutant levels, identifies sources of pollution, and proposes ways to bring water quality back to an acceptable level.
The goal of this project is to assess groundwater sustainability in the I-94 corridor between the Twin Cities and St. Cloud due to the corridor's significant expected growth, the inerent natural limits of groundwater, and the vulnerability of groundwater to contamination.
The goal of this project is to develop knowledge on pollutant removal and fate in infiltration Best Management Practices (BMPs). Results of this study will enhance pollutant reduction estimates, inform BMP planning and performance assessments, address groundwater protection concerns, and increase our understanding of stormwater and stormwater BMPs in the water cycle.
The Natural Resource Research Institute at the University of Minnesota Duluth proposes to collect lake data in northeastern Minnesota. The sites selected are those the county water planners will not be monitoring. The project goal is to assist the MPCA with meeting the objectives of the SWAG to conduct water chemistry monitoring at three MPCA specified lake sampling locations.
Cognizant to the needs of the stormwater community, a group that has engaged in stormwater research at the University of Minnesota (UMN) has developed a research program for the biennium that addresses pressing needs: a stormwater research roadmap and framework for priority needs, research required to improve stormwater pond maintenance, and information transfer related to these needs.
This work order will provide the Minnesota Pollution Control Agency (MPCA) with assistance in assembling, graphics, geographic information system (GIS) maps, data synthesis, writing, formatting and editing the 5-year nutrient reduction strategy progress report and update and similar updates for the Sediment Reduction Strategy. The Sediment Strategy update also involves incorporation of modeling results and other technical information into the 2015 strategy document.
This project will result in updates to the Minimal Impact Design Standards (MIDS) Calculator, creation of a water quality calculator based on the MIDS Calculator, and recommended updates to the Minnesota Stormwater Manual. The updated MIDS Calculator will be called MIDS Calculator Version 4 and the water quality calculator will be called MPCA Water Quality Calculator Version 1.
The goal of this project is to obtain key information needed to update the Nutrient Reduction Strategy based on watershed approach experiences over the past five years.
This project will target three identified drainage systems contributing to one tributary outfall to Long Lake, an impaired water body of the Sauk River Chain of Lakes. These systems produce large volumes of stormwater runoff that degrades the tributary and compromise water quality.
Project goal is to develop Total Maximum Daily Loads (TMDLs) and Watershed Restoration and Protection Strategies (WRAPS) that will protect and improve water quality for the Minnesota portion of the Mississippi River–Reno and Upper Iowa River watersheds. This information paired with other tools (e.g. Hydrologic Simulation Program FORTRAN (HSPF) models and best management practice spreadsheets) and will support restoration and protection strategy development and prioritization efforts in the 1W1P area.
The purpose of this project is to gather data specific to developing a site-specific standard for phosphorus for Upper and Lower Red Lakes. These are large shallow lakes that are located in an area where no shallow lake standard exists. Because of these lakes' unique characteristics, it is believed that a site-specific standard is more appropriate than the deep lake standards that currently exist. This project will include additional chemistry and flow monitoring of tributaries to the lakes, as well as outflow of Lower Red Lake to the Red Lake River.
This project will provide the monitoring of reaches where there are data gaps, incorporate new data and analyze relevant data, identify pollutant sources, hold a stakeholder meeting, and gather information towards the future development of a Draft Restoration (TMDL) and Protection Plan.
Phase II of the Upper South Branch Project will continue a FY2011 CWF project with the strategic implementation of conservation practices within the Upper South Branch of the Buffalo River watershed. This second phase will result in approximately 305 acres of new filter strips, 50 side inlet sediment control structures, and 8 sediment control basins which will reduce sediment loading to the stream by 4,700 tons/year and phosphorus by 9,700 pounds/year.
This project will restore a sub-watershed by implementing a treatment train of practices. There are 275 acres in this sub-watershed, located directly upstream of the Upper Iowa River. The topography lends itself to flashy stormwater events which leave their mark on the upland gully erosion and severely degraded streambank. The watershed operates as a funnel, bringing the high velocity water to a concentrated area and shooting it through the banks, rather than over. This has lead to a site which is void of vegetation and six streambank blowouts within a 300 foot area of streambank.
The goal of this project is the completion of an Upper Mississippi River Bacteria Total Maximum Daily Load (TMDL) and Protection Plan. In addition, an Implementation Plan will be developed and finalized under this contract.
This project is part of a larger ‘Keep It Clean’ educational and waste disposal campaign organized by Beltrami Soil and Water Conservation District (SWCD) and involves local resorts, bait shops, and the Upper Red Lake Area Association (Association). The ‘Keep It Clean’ campaign is an attempt to educate ice fishermen that leaving trash and other waste on the lake ice is illegal and provide them with information and legal options for waste disposal, such as dumpsters placed near the ice road entrances.
The goal of this project is to conduct water chemistry monitoring at two subwatershed sites based on flow conditions, targeting runoff events using protocols defined in the Watershed Pollutant Load Monitoring Network (WPLMN) Standard Operating Procedures and Guidance. The data collected will be submitted to the Minnesota Pollution Control Agency (MPCA) and used in the FLUX32 model for calculating pollutant loads. This loading information, in turn, will be used at both the state and local level to guide policy and strategies for the restoration and protection of Minnesota’s waters.
The main outcome of the project will be the development of a Total Maximum Daily Load (TMDL) study that address total suspended solids/turbidity impairments of the Mississippi River (Swan River to Crow Wing River). Community outreach to communicate the results and strategies for restoration will also take place during this project.
The main outcome of the project will be development of a Total Maximum Daily Load (TMDL) study that address total suspended solids/turbidity impairments of the Mississippi River (Swan River to Crow Wing River). Community outreach to communicate the results and strategies for restoration will also take place during this project.
This project will implement specific projects that address strategies identified in the comprehensive local water management plan and will consist of stabilizing over 3,000 feet of eroding stream channel, eliminating a fish migration barrier, and improving aquatic and riparian habitat by increasing sinuosity, rebuilding the incised channel, and recreating the floodplain in Porter and Picha Creeks; Previous landowner discussions, alternative selection and design alternatives have been accomplished or are in process.
The goal of this project is to gather and collect necessary watershed data for the development of a Watershed Restoration and Protection Strategy (WRAPS) for the Upper/Lower Red Lakes Watershed that includes impairments, their causes, and plans for restoration. Implementation of the WRAPS will maintain or improve water quality for the watershed.