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Incentives, Frameworks, and a Path to Habitat Restoration in Alberta
Resource
Presentation from the Seismic Line Restoration Technical Session Edmonton, AB December 1 st , 2016 Organized by the Canadian Institute of Forestry This technical session will facilitate discussion and...
Increasing Contributions of Peatlands to Boreal Evapotranspiration in a Warming Climate
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The response of evapotranspiration (ET) to warming is of critical importance to the water and carbon cycle of the boreal biome, a mosaic of land cover types dominated by forests and peatlands. The...
Intra- and Interspecific Variation in Spectral Properties of Dominant Sphagnum Moss Species in Boreal Peatlands
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Boreal peatlands store ~25 % of global soil organic carbon and host many endangered species; however, they face degradation due to climate change and anthropogenic drainage. In boreal peatlands...
Linear Feature Restoration in Caribou Habitat: A Summary of Current Practices and a Roadmap for Future Programs
Resource
Why would a user need this: Seismic line restoration, legacy well site restoration, linear disturbance restoration, reforestation, silviculture boreal best practice, industry solutions land...
Modeled Production, Oxidation, and Transport Processes of Wetland Methane Emissions in Temperate, Boreal, and Arctic Regions
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This resource is available on an external database and may require a paid subscription to access it. It is included on the CCLM to support our goal of capturing and sharing the breadth of all...
Plow-in Pipeline Construction Improves Recovery of Rough Fescue Grassland
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Plow-in pipeline approach resulted in a fescue-bluegrass vegetation community that had the best rough fescue recovery and greatest similarity to undisturbed natural grassland
Prioritization can Improve Cost Effectiveness of Seismic Line Restoration
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Upland mesic sites showed a relatively strong ability to regenerate on their own (passive restoration), while lowland (bogs and fens) and upland dry sites were slow to recover.
Proposed Criteria and Indicators of Ecosystem Function for Reclaimed Oils Sands Sites
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Report describes a comprehensive, meaningful and cost-effective list of indicators of forest ecosystem function, including a description of how they might be used to assess reclamation success
Rat Root Plants May Not be Suitable for Reclaiming Oil Sands Tailing Ponds
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This study tested the ability of rat root to grow in a high pH/high salinity environment, similar to that of a constructed oil sands tailings pond wetland.
Recent Climate Change has Driven Divergent Hydrological Shifts in High-latitude Peatlands
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High-latitude peatlands are changing rapidly in response to climate change, including permafrost thaw. Here, we reconstruct hydrological conditions since the seventeenth century using testate amoeba...
Reclamation Monitoring in the Athabasca Oil Sands Region of Canada Using a Long-term Plot Network
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A long-term plot network would allow the monitoring data to describe the ecological condition of the reclaimed lands and define appropriate management strategies for achieving revegetation goals
Reconstructed Soils in Alberta Oil Sands Limit Fine Root Growth of Trees
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Tailings sand sites: fine root biomass decreased with depth and proximity to the textural interface. Overburden sites: fine root biomass decreased abruptly at the textural interface and EC increased
Restoration and Reclamation Virtual Tours and Silviculture Toolkit
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The Forest Restoration Virtual Tours and Silviculture Toolkit provides resources to support successful forest restoration practices on oil sands sites. This site was first developed by Canada’s Oil...
Review of Alberta's Integrated Land Management Policies, Practices and Legislation
Project
Organization:
This initiative evaluated several cases of the latest efforts in resource and land policy integration, combined with a literature review, and interviews with 32 subject matter experts (SME’s) from...
Satellite Determination of Peatland Water Table Temporal Dynamics by Localizing Representative Pixels of A SWIR-Based Moisture Index
Resource
The OPtical TRApezoid Model (OPTRAM) is a physically-based approach for remote soil moisture estimation. OPTRAM is based on the response of short-wave infrared (SWIR) reflectance to vegetation water...
Seismic Lines in the Boreal and Arctic Ecosystems of North America: Environmental Impacts, Challenges, and Opportunities
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The oil and gas industry has grown significantly throughout the boreal and arctic ecosystems of North America. A major feature of the ecological footprint of oil and gas exploration is seismic lines...
Soil Salvage Depth is Key to Aspen Root Fragment Survival and Sucker Regeneration in Forest Reclamation
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Aspen sucker production from root fragments was 3X higher at salvage/placement depth of 40 cm compared to 15 cm. Successful suckering occurred in root fragments with little damage in upper 20 cm soil