Closed · W81EWF-23-SOI-0010 · CFDA 12.630 · Discretionary

Determining drivers of floodplain forest regeneration success and failure on the Upper Mississippi River in Minnesota and Wisconsin

Federal grant opportunity posted by Engineer Research and Development Center, cataloged on Grants.gov.

up to $62K
Award range
Closed
Status
June 20, 2023
Close date
1
Expected awards

The verdict

Determining drivers of floodplain forest regeneration success and failure on the Upper Mississippi River in Minnesota and Wisconsin is a closed discretionary listing from Engineer Research and Development Center that offered Up to $61,592 across 1 expected award. Future funding cycles may be published under the same CFDA number.

up to $62K
award range
Closed
application status
1
expected award
12.630
CFDA program

Opportunity snapshot. This Grants.gov announcement - Determining drivers of floodplain forest regeneration success and failure on the Upper Mississippi River in Minnesota and Wisconsin - is cataloged under number W81EWF-23-SOI-0010 and tied to CFDA assistance listing 12.630, posted by Engineer Research and Development Center. Grants.gov currently shows the opportunity as closed, first posted on April 19, 2023. The funding category is Discretionary, delivered as a cooperative agreement.

Award economics. The award range on file is Up to $61,592. The agency has projected $273,000 in total estimated funding for this announcement. It expects to issue 1 award. If the agency funds the expected 1 award from the $273,000 estimated pool, the average award works out to roughly $273,000. Cost sharing is not required, so applicants do not need to commit matching funds to be competitive on this opportunity. Federal award ranges are often upper bounds; actual allocations reflect program appropriations, the strength of the applicant pool, and the evaluation committee's scoring.

Deadline and action path. This opportunity closed on June 20, 2023. Future funding cycles may be published under the same CFDA number, so monitoring the parent program page is the most reliable way to catch re-announcements. Every Grants.gov submission requires an active SAM.gov registration and a Unique Entity ID. Review the Eligibility section below carefully, federal eligibility categories (nonprofit, state or local government, tribal, individual, educational institution, small business) have distinct registration and reporting requirements. Pre-application outreach to the listed agency contact is permitted and often welcomed, it helps clarify scope and scoring priorities. Before acting on the deadline or award figures above, verify them directly on the official Grants.gov listing, amendments can change dates and amounts after this page was last refreshed.

Award Range

Up to $61,592

Close Date

June 20, 2023

Posted

April 19, 2023

Est. Total Funding

$272,871

Expected Awards

1

Instrument

Cooperative Agreement

Description

The floodplain forests of the Upper Mississippi River (UMR) Basin play a critical role in maintaining water quality, wildlife habitat, and recreational opportunities. However, these forests systems are not static. Interactions among shifting climatic patterns, invasive species (especially reed canarygrass (Phalaris arundinacea)), forest health (e.g. Dutch elm disease and emerald ash borer), herbivores, low tree species diversity, and aging stands with limited regeneration are threatening to push these forest communities past critical ecological “tipping points.” These tipping points lead to drastic shifts in community composition and structure (e.g. conversion to non-forest conditions), making ecosystem restoration and rehabilitation significantly more difficult and greatly reducing the resilience of these systems. Within the UMR floodplain in Minnesota, Wisconsin and northeast Iowa (UMR Pools 1-10), this problem is particularly acute – current forest inventory data indicates that forest regeneration is completely absent over 57% of inventory plots and of the areas. Of the remaining plots with documented regeneration, almost 25% of plots are dominated by ash or elm regeneration, but both of these species have minimal potential for long-term survival on the sites due to insects and diseases. Without viable regeneration, these forests will convert to non-forest cover types in coming decades as current canopy trees begin to die. Proactive management actions can aid in reducing the chance of future forest loss, but there is limited research or institutional knowledge along the Upper Mississippi available on the mechanisms driving regeneration of key floodplain forest tree species and, therefore, management actions to promote regeneration of trees often result in failure. The current study aims to identify key drivers of regeneration for a handful of currently widespread floodplain forest tree species and to test a set of management techniques to promote the establishment of regeneration from seed. This information is critical for developing management strategies to ensure long-term viability of UMR Floodplain Forests.The primary goal of this research is to identify factors in existing floodplain forests on the Upper Mississippi River in Minnesota, Wisconsin and northeast Iowa that are associated with establishment and growth of regeneration from seed and planted tree seedlings in the most northern reach of the navigable portion of the Upper Mississippi River. Understanding dynamics of light-seeded species, primarily eastern cottonwood (Populous deltoides), silver maple (Acer saccharinum) and river birch (Betula nigra) is critical to this study, but other floodplain species may be incorporated as well. The research will also aim to test a set of silvicultural approaches for promoting natural regeneration in this region based on the current understanding of the silvics of these species. Because light availability, flood inundation, and soil saturation are key drivers of tree species distribution in these floodplains, the research will focus on assessing regeneration conditions across gradients of these drivers. In particular, this study will focus on the following objectives:Objectives: Develop relationships between tree seedling survival and growth for key tree species across a gradient of site-level physical conditions that drive floodplain forest regeneration: light availability, flooding and soil moisture. These relationships should incorporate seedling size as a component of seedling growth and survival.2. Evaluate chemical and mechanical site preparation as a means to facilitate the establishment of light-seeded floodplain species from seed (natural and hand-seeded) across the same site-level gradients in Objective 1 and quantify the density of seed-origin regeneration. Establish long-term monitoring plots is study sites to develop baselines for development of stands of light-seeded species from stand initiation through stem exclusion. Desired Outcomes:Objective 1: 1. A set of preliminary quantitative guidelines for identifying suitable physical conditions for successful regeneration of key floodplain forest species in Pools 1 – 10 of the Upper Mississippi River 2. Quantitative relationships between tree seedling size, survival and growth across the assessed physical gradients to inform future development of target seedling characteristics for floodplain forest regenerationObjective 2:1. An assessment of the viability of mechanical and chemical silvicultural site preparation treatments in Upper Mississippi River floodplains to promote natural regeneration of light-seeded species across light and hydrologic gradients2. Baseline data for potential tree seedling densities and early growth rates for floodplain forest stands originating from seed.Objective 1 will focus on planting of seedlings of the key floodplain tree species across gradients of light availability, flooding and soil moisture. Survival and growth of these seedlings will be documented at multiple intervals across multiple growing seasons and across the environmental gradients to develop relationships between site conditions and seedling establishment. Particular emphasis will be placed on quantification of biophysical interactions associated with saturated soils within the rooting zone of tree seedlings to describe soil conditions necessary for seedling survival and growth. This portion of the research will focus on understanding basic seedling-site relationships. Resulting data will inform future development of management recommendations for site selection and target seedling characteristics for the key floodplain forest tree species.Objective 2 will be more applied and will directly test silvicultural site preparation treatments to create seedbeds for natural regeneration, with these treatments applied across the same gradients as in Objective 1. Treatments will include chemical site prep using herbicide, mechanical site prep to break up the soil surface, and a combination of chemical and mechanical site prep. Supplemental seeding of light-seeded species will also be implemented following site prep treatments. In this component of the research, monitoring will be focused on comprehensive vegetative assessments of the treatment areas rather than detailed measurements of individual seedlings as in Objective 1. Within each treatment area, an adequate number of plots will be established to assess tree seedling density by age and size classes and cover of other vegetation. Seedling density will then be evaluated in the context of site-level gradients and silvicultural treatment to determine the effectiveness of these treatments across light and hydrologic gradients.Field data will be collected over a minimum of three growing seasons for both components of the project. It is expected that interim data results will be analyzed, but final analyses will be conducted during the fourth year of the project.

Eligibility

Grants.gov lists this opportunity under eligibility category code 25. These codes correspond to applicant types (state/local government, tribal organization, nonprofit, educational institution, individual, small business, etc.) defined in Grants.gov's own eligibility reference. See the current Grants.gov eligibility categories or check the official listing below for this opportunity's exact eligibility statement.

Official Listing on Grants.gov

View full details, application forms, and submission instructions.

View on Grants.gov

Agency Contact

Phoebe V Fuller Grantor Phone 6016343793

Key Dates

Posted April 19, 2023
Close Date June 20, 2023
Archive Date July 20, 2023
Last Updated April 19, 2023

Frequently Asked Questions

What is this grant opportunity?
This is a federal funding opportunity titled "Determining drivers of floodplain forest regeneration success and failure on the Upper Mississippi River in Minnesota and Wisconsin", offered by Engineer Research and Development Center. It is associated with CFDA program 12.630. The floodplain forests of the Upper Mississippi River (UMR) Basin play a critical role in maintaining water quality, wildlife habitat, and recreational opportunities. However, these forests systems ar...
Is this opportunity still open?
No, this opportunity is closed. It closed on June 20, 2023. Check the parent program page for future funding cycles.
How much funding is available?
The award range for this opportunity is Up to $61,592. Total estimated funding: $272,871. Expected number of awards: 1.
How do I apply?
Applications for federal grant opportunities are typically submitted through Grants.gov. Visit the official listing at grants.gov for application instructions, required documents, and submission deadlines.

Disclaimer: This information is sourced from Grants.gov and SAM.gov and is for informational purposes only. Opportunity details, deadlines, and eligibility requirements change frequently. Always verify current information directly on Grants.gov before applying. PlainGrants is not affiliated with any federal agency.

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