2020
DOI: 10.1126/science.abb8819
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Canada's mines pose transboundary risks

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Cited by 12 publications
(14 citation statements)
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“…Concentration in the lower reaches of the Fording River must be below 10 mg/L of nitrate by 2019, with the rest of the watershed below 3 mg/L by the same date (Teck, 2016). Current permitting regulations are not adequate in ensuring protection of aquatic ecosystems (Sexton et al, 2020;Skinner, 2017), and our results suggest that the N:P ratio in the Kootenai watershed is highly skewed due to excessive N loading in this large oligotrophic river. Protection, 2015).…”
Section: Discussionmentioning
confidence: 75%
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“…Concentration in the lower reaches of the Fording River must be below 10 mg/L of nitrate by 2019, with the rest of the watershed below 3 mg/L by the same date (Teck, 2016). Current permitting regulations are not adequate in ensuring protection of aquatic ecosystems (Sexton et al, 2020;Skinner, 2017), and our results suggest that the N:P ratio in the Kootenai watershed is highly skewed due to excessive N loading in this large oligotrophic river. Protection, 2015).…”
Section: Discussionmentioning
confidence: 75%
“…Human driven cultivation will continue to alter land cover and consequently nutrient loading in aquatic systems (Du et al, 2014;Jordan et al, 1997;Peterjohn & Correll, 1984). Future work will need to consider the specific contributions of specific land cover types, like mining, and efficiencies of biological processes with elevated nitrate levels (Sexton et al, 2020;Starnes & Gasper, 1995). Establishing a consortium of records for a transboundary river system will be important in understanding spatial and temporal differences at the watershed scale along with documentation of the influence of land cover change.…”
Section: Discussionmentioning
confidence: 99%
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“…Therefore, the migratory life cycle of salmon poses additional challenges to sustainability by creating mismatches between management decisions, fishery opportunities, and the biologically relevant processes that support salmon populations (e.g., river disturbance, rainfall and temperature, and ocean climate and productivity; Bottom et al 2009 , Malick et al 2017 ). These mismatches have created adverse downstream consequences for people, ecosystems, and salmon through intensive mixed-stock harvest, resource development, land use, and overproduction of hatchery salmon by industrial nations around the Pacific Rim (e.g., Moore et al 2015 , Sexton et al 2020 , Vierros et al 2020 ). Supporting greater engagement and participation in monitoring and management among Indigenous peoples and local communities is one avenue toward alleviating the negative impacts of these scale mismatches (Herse et al 2020 ).…”
Section: Contemporary Salmon Management: History and Challenges To Sumentioning
confidence: 99%
“…Although salmon colonization of recently deglaciated streams has been well documented in individual watersheds 8 , predicting future shifts in the distribution of productive salmon habitat remains a challenge, and there are no regional projections for the creation of new salmon habitat in response to retreating glaciers. Forecasting the location of emerging salmon habitat is imperative because, while declining glacier ice can present local opportunities for salmon, it is also creating new prospects for large-scale resource extraction industries such as mining, which have the potential to degrade these salmon habitat frontiers [13][14][15][16] . Understanding the timing and location of emerging salmon habitat frontiers throughout the Pacific Mountain ranges of western North America can inform forward-looking management decision-making and conservation planning.…”
mentioning
confidence: 99%