Minnesota's Legacy

All Projects

Showing 1 - 16 of 16 | Export projects
Recipient
Peer Engineering
2014 Fiscal Year Funding Amount
$115,910
Fund Source

Peer Engineering, Inc. (Peer) will evaluate and recommend to MPCA groundwater monitoring staff prospective sites/locations for the installation of groundwater monitoring wells to evaluate contaminant/pollutant concentrations from various sources. Peer will oversee the installation of monitoring wells by retaining a state drilling contractor or preparing bid documents to retain well driller through the Department of Administration. Superfund staff will assist in the project by providing oversight of contractual requirements and provide technical assistance as needed.

Dakota
Hennepin
Mower
Rice
Washington
Recipient
Mower County Soil and Water Conservation District
2012 Fiscal Year Funding Amount
$99,929
Fund Source

This project will place the Cedar River watershed on a sustainable and clearly understood implementation process for comprehensive water management. All people living in the watershed and all groups operating and managing land in the watershed, are responsible stakeholders in the effort. Objectives for this phase of the project include:
1. Develop a comprehensive watershed restoration and protection strategy.
2. Continue development of a more coordinated and comprehensive citizen participation process.

Dodge
Freeborn
Mower
Steele
Recipient
Mower County Soil and Water Conservation District
2011 Fiscal Year Funding Amount
$182,020
Fund Source

This project will build upon existing planning and implementation efforts already taken on in the project area. The collection of existing information will be used to complement water information in support of a more successful and sustainable water quality improvement and protection implementation program. This will be achieved by active civic engagement activities throughout Phase I of this project.

Dodge
Freeborn
Mower
Steele
Recipient
Houston Engineering Inc
2019 Fiscal Year Funding Amount
$46,510
Fund Source

This project will develop a watershed wide Total Maximum Daily Load (TMDL) study and River Eutrophication Standard (RES) TMDL report for water quality impairments in the Des Moines River basin, which includes the Des Moines River Headwaters, Lower Des Moines River, and East Fork Des Moines River watersheds.

Cottonwood
Jackson
Lyon
Martin
Murray
Nobles
Pipestone
Recipient
Minnesota Department of Health
2019 Fiscal Year Funding Amount
$1,100,000
2018 Fiscal Year Funding Amount
$1,100,000
2017 Fiscal Year Funding Amount
$1,100,000
2016 Fiscal Year Funding Amount
$1,100,000
2015 Fiscal Year Funding Amount
$1,150,000
2014 Fiscal Year Funding Amount
$1,150,000
2013 Fiscal Year Funding Amount
$1,020,000
2012 Fiscal Year Funding Amount
$1,020,000
2011 Fiscal Year Funding Amount
$744,717
2010 Fiscal Year Funding Amount
$250,291
Fund Source

The Drinking Water Contaminants of Emerging Concern (CEC) program identifies environmental contaminants for which current health-based standards currently do not exist or need to be updated, investigate the potential for human exposure to these chemicals, and develop guidance values for drinking water. Contaminants evaluated by CEC staff include contaminants that have been released or detected in Minnesota waters (surface water and groundwater) or that have the potential to migrate to or be detected in Minnesota waters.

Statewide
Recipient
Aqua Terra Consultants
2013 Fiscal Year Funding Amount
$36,848
Fund Source

This project will maximize the utility and usefulness of three HSPF models that have been constructed and calibrated for hydrology. The contractor will identify and reduce parameterization errors in the following three HSPF models: 1) Buffalo River Watershed, 2 ) Thief River Watershed, 3) Bois de Sioux-Mustinka Watersheds. This will result, not only in a better hydrology calibration, but will also improve each of the models’ ability to more accurately estimate sediment and pollutant loads and concentrations.

Becker
Beltrami
Big Stone
Clay
Grant
Marshall
Otter Tail
Pennington
Roseau
Stevens
Traverse
Wilkin
Recipient
Houston Engineering
2012 Fiscal Year Funding Amount
$67,996
Fund Source

This project will continue to develop, and calibrate/validate the hydrology of an HSPF watershed model for the Thief 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. The consultant will produce an HSPF watershed model that can readily be used to provide information to support conventional parameter TMDLs.

Beltrami
Marshall
Pennington
Roseau
Recipient
Ag Resource Strategies, LLC
2010 Fiscal Year Funding Amount
$300,000
Fund Source

LEQA is a Minnesota Department of Agriculture (MDA) program to help livestock producers address, using a non-regulatory approach, the unique water quality issues on their farms. The MDA has contracted with Ag Resource Strategies, LLC, to recruit farmers to enroll in the LEQA program. The company trains technicians to assess different areas of each farms, such as the farmstead, livestock facilities, fields and wooded areas. The technicians then develop an environmental assessment and identify financial assistance for these projects.

Recipient
Emmons & Olivier Resources, Inc.
2019 Fiscal Year Funding Amount
$38,292
Fund Source

This project will develop the Pomme de Terre Watershed Total Maximum Daily Load (TMDL) study for the second round of the 10-year watershed approach cycle in the Pomme de Terre watershed. This phase of the project will address 4 stream impairments and 3 lake impairments and produce a draft TMDL document. A second phase may be needed as the stressor ID report identifies more stream reaches with TMDL relevant stressors.

Big Stone
Douglas
Grant
Otter Tail
Stevens
Swift
Recipient
Stevens Soil and Water Conservation District
2011 Fiscal Year Funding Amount
$132,120
Fund Source

Certain stretches of the Pomme de Terre River have been identified as impaired. This project will quantify the reductions in pollutant loading that would be necessary to bring water quality in the impaired stretches to an acceptable level. It will also identify strategies that would improve water quality in these impaired stretches. Some funds will support public input activities into the Pomme de Terre River watershed management plan.

Big Stone
Douglas
Grant
Otter Tail
Stevens
Swift
Recipient
Buffalo-Red River Watershed District
2016 Fiscal Year Funding Amount
$19,860
Fund Source

The purpose of this project is to improve understanding of primary productivity in the Red River and the diversity and population structure of the algal communities occurring along the river system. This will be accomplished through taxonomic identification of periphyton and phytoplankton assemblages necessary for characterizing responses to nutrient gradients along the Red River of the North.

Becker
Beltrami
Clay
Clearwater
Douglas
Grant
Kittson
Mahnomen
Marshall
Norman
Otter Tail
Pennington
Polk
Pope
Red Lake
Roseau
Stevens
Traverse
Wilkin
Recipient
International Water Institute
2012 Fiscal Year Funding Amount
$272,267
2014 Fiscal Year Funding Amount
$359,367
Fund Source

International Water Institute (IWI) staff will monitor 24 sites in the Bois de Sioux, Mustinka (2 sites), Buffalo (8 sites), Red Lake (4 sites), Sandhill (3 sites), Thief (2 sites), and Tamarac River (3 sites) Watersheds intensively over a 2 year period in an attempt to collect 25 samples per year at each site. If conditions allow for the collection of all planned samples, 1200 stream samples will be collected over the time period. Monitoring will include field measurements, observations, and at least three photographs during each site visit.

Becker
Beltrami
Big Stone
Clay
Clearwater
Grant
Kittson
Mahnomen
Marshall
Norman
Otter Tail
Pennington
Polk
Red Lake
Roseau
Stevens
Traverse
Wilkin
Recipient
Red River Watershed Management Board
2012 Fiscal Year Funding Amount
$200,000
Fund Source

MN Legislative Clean Water Fund funding to engage citizens in local watershed monitoring, work with regional partners to promote understanding and protection of watersheds, and organize and facilitate gathering of scientific data all for the benefit of water quality in the Red River Basin.

Becker
Beltrami
Big Stone
Clay
Clearwater
Grant
Kittson
Lake of the Woods
Mahnomen
Marshall
Norman
Otter Tail
Pennington
Polk
Red Lake
Roseau
Stevens
Traverse
Wilkin
Recipient
LimnoTech
2014 Fiscal Year Funding Amount
$29,932
Fund Source
The goal of this project is the continued development of an overall strategy for reduction of turbidity/TSS, with sets of sediment reduction initiatives and actions for various sources, to address the Minnesota River Turbidity TMDL and the South Metro Mississippi River TSS TMDL. The overall strategy will be used to help establish a path towards achieving the required reductions of turbidity/TSS.
Aitkin
Anoka
Becker
Beltrami
Benton
Big Stone
Blue Earth
Brown
Carlton
Cass
Chippewa
Chisago
Clearwater
Cottonwood
Crow Wing
Dakota
Douglas
Faribault
Freeborn
Goodhue
Grant
Hennepin
Hubbard
Isanti
Itasca
Recipient
Houston Engineering
2013 Fiscal Year Funding Amount
$33,096
Fund Source

This project will finalize the Hydrologic Simulation Program FORTRAN (HSPF) watershed model construction and complete the calibration/validation process. The consultant will produce an HSPF watershed model that can readily be used to provide information to support conventional parameter TMDLs.

Beltrami
Marshall
Pennington
Roseau
Recipient
USGS North Dakota Water Science Center
2017 Fiscal Year Funding Amount
$20,000
Fund Source

This is a joint project between the United States Geological Survey (USGS), Minnesota Pollution Control Agency (MPCA), North Dakota, and Manitoba. The project is a basin-wide, up-to-date water quality trend analysis using the "QWTrend" program for approximately 40 bi-national river sites to review nutrients, total suspended solids, total dissolved solids, sulfate and chloride from 1980 - 2015.

Clay
Kittson
Marshall
Norman
Polk
Wilkin