All Projects

Showing 1 - 40 of 211 | Export projects
Recipient
Minnesota Department of Health
2016 Fiscal Year Funding Amount
$175,000
Fund Source

An interagency workgroup is developing recommendations for best practices and policies for water reuse in Minnesota. Recommendations will include both regulatory and non-regulatory approaches to successful implementation of water reuse. The workgroup will evaluate current regulations, practices, and barriers, and quantify and determine acceptable health risks associated with water reuse applications. The University of Minnesota is collecting and analyzing field data for use in targeting Minnesota-specific risks.

Recipient
Kanabec County Soil and Water Conservation District
2011 Fiscal Year Funding Amount
$112,265
2013 Fiscal Year Funding Amount
$2,000
2012 Fiscal Year Funding Amount
$3,000
Fund Source

This project will be a complete TMDL report for the Biota and Bacteria (E. coli) impairments for the Ann River Watershed. The water bodies associated with these impairments will then be removed from the MPCA’s impaired waters list, and implementation activities to restore the water bodies will begin.

Recipient
Minnesota Department of Agriclture and MN.IT Services
2015 Fiscal Year Funding Amount
$82,400
Fund Source

The Application Risk Advisory System is web‑based and provides alerts when conditions are favorable for nutrient loss to water, based on soil conditions and National Weather Service forecast models. This system enables farmers and commercial applicators to avoid applications of fertilizer and manure during conditions when the potential for loss to surface water is high.

2018 Fiscal Year Funding Amount
$1,375,000
2017 Fiscal Year Funding Amount
$1,375,000
2016 Fiscal Year Funding Amount
$1,375,000
2015 Fiscal Year Funding Amount
$1,375,000
2014 Fiscal Year Funding Amount
$1,375,000
2013 Fiscal Year Funding Amount
$1,500,000
2012 Fiscal Year Funding Amount
$1,500,000
2011 Fiscal Year Funding Amount
$525,000
2010 Fiscal Year Funding Amount
$600,000
Fund Source

The DNR is working with local communities and an interagency team to define, prioritize, and establish groundwater management areas in Minnesota. Groundwater management areas will have increased data collection and monitoring that allow the state and local communities to understand water supplies, uses, limitations, and threats to natural resources that depend on groundwater. This information will support detailed aquifer protection plans that ensure equitable and sustainable groundwater and drinking water use for the future.

Recipient
University of St. Thomas
2012 Fiscal Year Funding Amount
$95,000
2013 Fiscal Year Funding Amount
$95,000

PROJECT OVERVIEW

Recipient
University of Minnesota
2012 Fiscal Year Funding Amount
$5,739
2011 Fiscal Year Funding Amount
$148,900
Fund Source

This project will promulgate a nitrate water quality standard to address aquatic life toxicity, and gather information needed to support the development of total nitrogen (N) loading reduction strategies for Minnesota’s waters and also address Minnesota’s contribution to marine water hypoxia. Project will also develop a framework for a watershed nitrogen planning aid that can be used to optimize selection of Best Management Practice (BMP) systems for reducing nitrogen.

Recipient
RESPEC
2017 Fiscal Year Funding Amount
$62,485
Fund Source

This project involves the extension and update of the Hydrological Simulation Program FORTRAN (HSPF) model for the Bois de Sioux and Mustinka watersheds.

Recipient
Houston Engineering
2012 Fiscal Year Funding Amount
$70,921
Fund Source

This project will continue to develop, and calibrate/validate the hydrology of an Hydrological Simulation Program FORTRAN (HSPF) watershed model for the Buffalo River watershed. The consultant will add representation of point source discharges to the model. The consultant will compile flow data for the purposes of calibration and validation. An initial hydrologic calibration will be performed and submitted for approval.

Recipient
LimnoTech
2014 Fiscal Year Funding Amount
$134,427
Fund Source
The goal of this project is to construct, calibrate, and validate an HSPF watershed model for the Cannon River Watershed.
Recipient
LimnoTech
2015 Fiscal Year Funding Amount
$154,020
2016 Fiscal Year Funding Amount
$6,915
Fund Source

The goal of this project is to apply the Hydrological Simulation Program FORTRAN (HSPF) model to evaluate scenarios to support potential management actions and implementation in the watershed, construct Total Maximum Daily Load (TMDL) studies, and to develop a conceptual site model of the lakes for understanding phosphorus release.

Recipient
Washington Conservation District
2010 Fiscal Year Funding Amount
$103,598
Fund Source

Continued TMDL project to support next phases associated with completion of TMDL's for ten lakes in the Carnelian Marine Saint Croix Watershed District (CMSCWD). Ten lakes are; East Boot, Fish, Goose, Hay, Jellum’s, Long, Loon, Louise, Mud and South Twin.

Recipient
RESPEC
2014 Fiscal Year Funding Amount
$40,000
Fund Source
There are two main goals of this Cedar Basin HSPF project, A. Overall development of the HSPF model in the Cedar Basin of Minnesota; and B. Shell Rock River nutrient, DO , impairment modeling and TMDL completion.
Recipient
University of Minnesota
2012 Fiscal Year Funding Amount
$75,000
2013 Fiscal Year Funding Amount
$75,000

PROJECT OVERVIEW

Recipient
USDA-NASS, Douglas Hartwig, Director (651) 201-6030
2011 Fiscal Year Funding Amount
$58,826
Fund Source

The MDA partnered with the USDA National Agricultural Statistic Service (NASS) and University of Minnesota researchers to collect information about fertilizer use and farm management. Surveys were conducted over the phone. NASS staff are highly skilled at obtaining critical information over the phone with minimal time and burden on the producer.In 2011, the survey focused on the southeast region of Minnesota. The survey was designed to gather information about nitrogen fertilizer rates, timing of nitrogen application and use of nitrogen inhibitors.

Recipient
BWSR
2012 Fiscal Year Funding Amount
$250,000
2013 Fiscal Year Funding Amount
$250,000

PROJECT OVERVIEW

Recipient
MN DNR
2012 Fiscal Year Funding Amount
$250,000
2013 Fiscal Year Funding Amount
$250,000

PROJECT OVERVIEW

Recipient
BWSR
2012 Fiscal Year Funding Amount
$75,000
2013 Fiscal Year Funding Amount
$75,000

PROJECT OVERVIEW

Recipient
MN DNR
2010 Fiscal Year Funding Amount
$825,000

Deep, cold-water lakes have different physical properties and support different wildlife than their more numerous shallow counterparts. The Minnesota Department of Natural Resources (DNR) is using this appropriation to conduct a study that will help identify, monitor, and predict the consequences of climate change and land use changes on water quality, habitat dynamics, and fish populations in deep, cold-water lakes.

2018 Fiscal Year Funding Amount
$125,000
2017 Fiscal Year Funding Amount
$250,000
2016 Fiscal Year Funding Amount
$250,000
2015 Fiscal Year Funding Amount
$615,000
2014 Fiscal Year Funding Amount
$615,000
2013 Fiscal Year Funding Amount
$0
2012 Fiscal Year Funding Amount
$0
2011 Fiscal Year Funding Amount
$0
2010 Fiscal Year Funding Amount
$1,000,000
Fund Source

The DNR works with the Minnesota Geological Survey (MGS) to develop County Geologic Atlases to convey geologic and hydrogeologic (groundwater) information and interpretations to government units at all levels, but particularly to local governments, as well as private organizations and citizens. The MGS focuses on geology (Part A reports) and DNR focuses on groundwater (Part B reports).These studies provide information about the region’s geology and groundwater’s presence, direction of flow, natural quality, age, and pollution sensitivity.

Recipient
University of Minnesota - MN Geological Survey
2010 Fiscal Year Funding Amount
$820,000

The Minnesota County Geologic Atlas program is an ongoing effort begun in 1982 that is being conducted jointly by the University of Minnesota's Minnesota Geological Survey and the Minnesota Department of Natural Resources (DNR). The program collects information on the geology of Minnesota to create maps and reports depicting the characteristics and pollution sensitivity of Minnesota's ground-water resources.

Recipient
MN DNR
2010 Fiscal Year Funding Amount
$1,875,000

The Minnesota County Geologic Atlas program is an ongoing effort begun in 1982 that is being conducted jointly by the University of Minnesota's Minnesota Geological Survey and the Minnesota Department of Natural Resources (DNR). The program collects information on the geology of Minnesota to create maps and reports depicting the characteristics and pollution sensitivity of Minnesota's ground-water resources.

Recipient
Minnesota Geological Survey
2011 Fiscal Year Funding Amount
$1,130,000

PROJECT OVERVIEW

Recipient
University of Minnesota - MN Geological Survey
2012 Fiscal Year Funding Amount
$600,000
2013 Fiscal Year Funding Amount
$600,000

PROJECT OVERVIEW

Recipient
MN DNR
2012 Fiscal Year Funding Amount
$300,000
2013 Fiscal Year Funding Amount
$300,000

PROJECT OVERVIEW

Recipient
Chisago SWCD
2011 Fiscal Year Funding Amount
$31,579
Fund Source

This project will inventory active gully erosion sites along the St. Croix River escarpment from the entrance to Wild River State Park near Almelund, MN, and south to the Chisago County line. The resulting inventory will be utilized to contact landowners with actively eroding gully sites on their property and will begin the process of developing a plan to implement Best Management Practices (BMPs) to correct the problems.

Recipient
Tetra Tech
2017 Fiscal Year Funding Amount
$80,038
Fund Source

This project will conduct a 2017 revision of the South Fork Crow River, North Fork Crow River and Sauk River Watershed Hydrological Simulation Program FORTRAN (HSPF) models and review of the Pine River Watershed HSPF model.

Recipient
Emmons & Olivier Resources
2012 Fiscal Year Funding Amount
$15,041
Fund Source

This first year of the project will collect available data relevant to the TMDL development, determine the data sets best suited for the TMDL development. Gain a better understanding of the watershed and impaired lakes, and assessment of all potential sources (internal and external) of the causes of lake impairment. EOR will also review the data produced by the MPCA for the impairment assessment for each of the lakes during year 1 of the project.

Recipient
Wenck Associates, Inc.
2012 Fiscal Year Funding Amount
$29,872
Fund Source

This project willl complete a final TMDL document that will be submitted to EPA for approval. Document will include Lake Osakis, Clifford Lake, Faille Lake, and Smith Lake impairments. A final technical memorandum describing the elements of the model framework and any deviations from the recommended construction methodology will be also be provided with the submission of the watershed models.

Recipient
Buffalo-Red River Watershed District
2011 Fiscal Year Funding Amount
$249,968
Fund Source

The Buffalo River Watershed Pilot Project is one of two pilots in Minnesota designed to develop a watershed approach for managing Minnesota’s surface waters. The goal of this project is to develop a plan that will guide surface water quality management throughout the watershed.

Recipient
Tetra Tech, Inc.
2012 Fiscal Year Funding Amount
$4,999
Fund Source

This project will develop and execute three point source related scenarios for the Chippewa River watershed using an existing HSPF watershed model. This project will also support the review of the HSPF Modeling Guidance Document.

Recipient
RESPEC
2012 Fiscal Year Funding Amount
$67,972
Fund Source

This project will construct three watershed framework models built using the Hydrologic Simulation Program FORTRAN. These executable models will simulate hydrology at the 12-digit HUC subbasin scale. An HSPF model will be built for each of the following 8-HUC watersheds: Red Lake River (09020303) and the Clearwater River (09020305).

Recipient
RESPEC
2012 Fiscal Year Funding Amount
$49,996
Fund Source

This project will finalize HSPF watershed model construction by incorporating internal phosphorus loading in modeled lakes, run a suite of implementation scenarios and generate a GenScn project containing model output. The consultant will produce HSPF watershed models that can readily be used to provide information to support conventional parameter TMDLs. The consultant will deliver all modeling files for baseline and implementation scenarios and provide a GenScn project containing model output.

Recipient
St. Croix Watershed Research Station (Science Museum of MN)
2013 Fiscal Year Funding Amount
$425,000
Fund Source

This project will improve our understanding of the sources of sediment (turbidity), and the processes which deliver sediment to river channels. This project will address a suite of emerging questions regarding contributions and causes of non-field sediment, thereby providing watershed managers with a better understanding of how to manage these sediment sources.

Recipient
Emmons & Olivier Resources
2013 Fiscal Year Funding Amount
$99,355
Fund Source

This project will complete a pollutant source identification and subwatershed information report and support the development of a Draft Restoration and Protection Plan (RAPP). It will also support the devlopment of a Implementation Plan that will identify target areas for BMP implementation for bacteria reductions.

Recipient
Coon Creek Watershed District
2013 Fiscal Year Funding Amount
$252,200
Fund Source

This project will provide the MPCA, CCWD, and all other stakeholders the information and tools necessary to improve the water quality within Coon Creek Watershed District. The improvements will take place using targeted activities throughout the watershed to reduce the primary biological and chemical stressors. In turn, the reduction of these stressors will help to reduce overall loadings of sediment, turbidity, total phosphorus, and E. coli bacteria.

Recipient
Crow River Organization of Water
2013 Fiscal Year Funding Amount
$19,999
Fund Source

The primary focus of this project is the collection of lake core samples to aid in the completion of lake TMDLs for Dean, Malardi & Fountain lakes. This work will enable completing tasks included in the North Fork Crow River Watershed Restoration & Protection Project (WRPP). Additional data collection is needed to update lake response models. This new data will provide a cohesive and comprehensive data collection for Dean, Malardi and Fountain lakes.

Recipient
LimnoTech
2013 Fiscal Year Funding Amount
$121,916
Fund Source

This project will construct, calibrate, and validate an HSPF watershed model for the Zumbro River watershed. The consultant will produce HSPF watershed models that can readily be used to provide information to support conventional parameter Total Maximum Daily Load (TMDLs). The consultant will clearly demonstrate that the models generate predicted output timeseries for hydrology, sediment, nutrients, and dissolved oxygen that are consistent with available sets of observed data.

Recipient
RESPEC
2013 Fiscal Year Funding Amount
$89,967
Fund Source

This project will construct, calibrate, and validate an HSPF watershed model for the Lake of the Woods River watershed. The consultants will produce HSPF watershed models that can readily be used to provide information to support conventional parameter TMDLs. The consultants will clearly demonstrate that the models generate predicted output time series for hydrology, sediment, nutrients, and dissolved oxygen that are consistent with available sets of observed data.

Recipient
RESPEC
2013 Fiscal Year Funding Amount
$249,932
Fund Source

This project will construct, calibrate, a set of HSPF watershed models covering the entire area of the Lake of the Woods drainage, including the Rainy River watershed. The consultant will produce HSPF models that can readily be used to provide information to support conventional parameter TMDLs. The consultant will clearly demonstrate that these models generate predicted output timeseries for hydrology which are consistent with available sets of observed data.

Recipient
RESPEC
2013 Fiscal Year Funding Amount
$70,000
Fund Source

This project will complete spatial and temporal revisions , recalibration and validation of 7 watershed HSPF models. These fully functioning calibrated validated executable models will simulate hydrology, sediment (sand, silt, and clay), temperature, phosphorus, nitrogen, dissolved oxygen, biochemical oxygen demand, and algae at the 12-digit HUC subbasin scale (or finer).