Evaluation of Minnesota raptors, in rehabilitation and free ranging settings, for current or previous exposure to highly pathogenic avian influenza virus to better understand outbreak impacts to raptor populations.
To strengthen a large partnership, including American Indian partners, as they improve and make available more historic information about the Minnesota River Valley.
This project will complete the development of two watershed HSPF models for the Mustinka River and Bois de Sioux River watersheds. These calibrated and validated executable models will simulate hydrology at the 12-digit HUC subbasin scale.
The goal of this project is to construct, calibrate, and validate a watershed model using HSPF. RESPEC will produce a HSPF model that can readily be used to provide information to support conventional parameter TMDLs.
The goal of this project is to continue and finalize Hydrological Simulation Program FORTRAN (HSPF) watershed model construction and complete the calibration/validation process for the Minnesota River–Headwaters and Lac qui Parle watersheds that can readily be used to provide information to support conventional parameter Total Maximum Daily Load (TMDL) reports.
With only 1% of Minnesota’s native prairie remaining, many prairie plant and animal species have dramatically declined. Of the 12 butterfly species native to Minnesota prairies, two species, the Poweshiek skipperling and the Dakota skipper, have already largely disappeared from the state and are proposed for listing under the U.S. Endangered Species Act despite being historically among the most common prairie butterflies and having their historic ranges concentrated in Minnesota.
With only 1% of Minnesota’s native prairie remaining, many prairie plant and animal species have dramatically declined. Of the 12 butterfly species native to Minnesota prairies, two species, the Poweshiek skipperling and the Dakota skipper, have already largely disappeared from the state and are proposed for listing under the U.S. Endangered Species Act despite being historically among the most common prairie butterflies and having their historic ranges concentrated in Minnesota.
This project will enhance the current program, integrating new invasive carp control and detection methods to monitor and remove invasive carp to avoid establishment in Minnesota.
Autonomous robots, powered by green hydrogen and solar power, designed to remove weeds in row crop fields can improve agricultural ecosystems with reduced herbicide application and fossil fuel use.
We will compile all available data for Minnesota Trumpeter Swans and use these sources to model historical population abundance and predict future population dynamics.
The Minnesota River Basin Hydrological Simulation Program FORTRAN (HSPF) models, which simulate flow and pollutant transport, need to be refined to be consistent with the most recent external sources of land use, hydrologic response, and surface flow attributions. The primary goal of this work is to refine the hydrologic calibration in the Minnesota River basin.
Funds for RIM conservation easements build on Clean Water Fund (CWF) investments for restoration and protection projects that "stack" habitat and clean water benefits. Projects will be identified in watershed plans developed through BWSR's One Watershed, One Plan program, in which local governments strategically set priorities for clean water and habitat, target implementation, and set measurable goals. BWSR currently distributes CWF dollars to partnerships with approved plans for water quality projects.
Jackson SWCD will collect water chemistry data at three sites; West Fork Little Sioux River, Little Sioux River, and the Loon Lake Outlet. A full suite of lab and field parameters will be collected May - September in 2011 and 2012 at all three sites.
The Kairos Alive! Cultural Wisdom Immersion and Sharing Project collaborates with Centro Tyrone Guzman, Augustana Open Circle, Walker West Music Academy and outstate Developmental Achievement Centers to explore and exchange joyful cultural meaning through music, dance, song and story via 2-way Zoom webcast. Project explores cultural heritage and identity expression, and how it relates to the universality of human experience, in an environment of creative safety and intercultural exchange.
This project collaborates with 1) Minneapolis Hawthorne Neighborhood Council (multi-cultural/intergenerational); 2) Minnesota Independence College and Community (MICC), Richfield (neuro-divergent young adults); 3) an established network of 20+ senior centers and organizations serving people with developmental disabilities statewide (multi-cultural and intergenerational), such as Centro Tyrone Guzman (Latinx), Ecumen Prairie Lodge, Brooklyn Park, Wabasha County Developmental Achievement Center, Wabasha, and Adult Day Services, Bemidji; 4) community collaborations in Bemidji and New Ulm servi
In September of 2009 and January of 2010, the Federal Government allocated $300,000 worth of Federal Funds to the Kanaranzi-Little Rock Watershed District through the American Recovery and Reinvestment Act. The Funds were to be utilized as cost-share assistance for conservation practices such as terraces, waterways and water and sediment control basins. All practices are designed to reduce erosion and also help mitigate flood damages. The program received more requests for funds than what was available.
In September of 2009 and January of 2010, the Federal Government allocated $300,000 worth of Federal Funds to the Kanaranzi-Little Rock Watershed District through the American Recovery and Reinvestment Act. The Funds were to be utilized as cost-share assistance for conservation practices such as terraces, waterways and water and sediment control basins. All practices are designed to reduce erosion and also help mitigate flood damages.
The goal of this project is to establish load reduction requirements for impaired waters and to develop restoration strategies to improve water quality for impaired waters and protection strategies to maintain the quality of water for water bodies meeting standards.
The Lake Ocheda Shoreline Improvement Project will restore and provide long term protection of 1,600 feet of lake shoreline resulting in improved drinking water supplies, improved water quality for fishery and upland habitat and historical preservation. A large portion of this shoreline currently has a 10 to 20 foot vertical wall of shoreline that has been sloughing for the past 50 to 100 years.