Turning up the heat: Long‐term water quality responses to wildfires and climate change in a hypereutrophic lake
暂无分享,去创建一个
[1] A. P. Williams,et al. Growing impact of wildfire on western US water supply , 2022, Proceedings of the National Academy of Sciences of the United States of America.
[2] S. Doerr,et al. A global synthesis of fire effects on ecosystem services of forests and woodlands , 2021, Frontiers in Ecology and the Environment.
[3] N. Goto,et al. Effect of dissolved oxygen on nitrogen and phosphorus fluxes from lake sediments and their thresholds based on incubation using a simple and stable dissolved oxygen control method , 2021, Limnology and Oceanography: Methods.
[4] P. Soranno,et al. LAGOS‐US LOCUS v1.0: Data module of location, identifiers, and physical characteristics of lakes and their watersheds in the conterminous U.S. , 2021, Limnology and Oceanography Letters.
[5] Lesley B. Knoll,et al. Earlier winter/spring runoff and snowmelt during warmer winters lead to lower summer chlorophyll‐a in north temperate lakes , 2021, Global change biology.
[6] Lesley B. Knoll,et al. Widespread deoxygenation of temperate lakes , 2021, Nature.
[7] K. Rose,et al. Smoke from regional wildfires alters lake ecology , 2021, Scientific Reports.
[8] S. Schladow,et al. Quantifying Scales of Spatial Variability of Cyanobacteria in a Large, Eutrophic Lake Using Multiplatform Remote Sensing Tools , 2021, Frontiers in Environmental Science.
[9] E. Anderson,et al. Rapidly expanding lake heatwaves under climate change , 2021, Environmental Research Letters.
[10] David P. Hamilton,et al. Deeper waters are changing less consistently than surface waters in a global analysis of 102 lakes , 2020, Scientific Reports.
[11] A. Mishra,et al. Impact of land uses, drought, flood, wildfire, and cascading events on water quality and microbial communities: A review and analysis , 2020 .
[12] J. Lenters,et al. Global lake responses to climate change , 2020, Nature Reviews Earth & Environment.
[13] P. Tammeorg,et al. Internal phosphorus loading in a small shallow Lake: Response after sediment removal. , 2020, The Science of the total environment.
[14] F. Feyrer,et al. Dissolved oxygen controls summer habitat of Clear Lake Hitch ( Lavinia exilicauda chi ), an imperilled potamodromous cyprinid , 2020, Ecology of Freshwater Fish.
[15] J. Nunes,et al. The influence of wildfire on water quality and watershed processes: new insights and remaining challenges , 2019, International Journal of Wildland Fire.
[16] Alison P. Appling,et al. AquaSat: A Data Set to Enable Remote Sensing of Water Quality for Inland Waters , 2019, Water Resources Research.
[17] P. Soranno,et al. Do lakes feel the burn? Ecological consequences of increasing exposure of lakes to fire in the continental United States , 2019, Global change biology.
[18] C. Rhoades,et al. Wildfires Alter Forest Watersheds and Threaten Drinking Water Quality. , 2019, Accounts of chemical research.
[19] Limin Yang,et al. A new generation of the United States National Land Cover Database: Requirements, research priorities, design, and implementation strategies , 2018, ISPRS Journal of Photogrammetry and Remote Sensing.
[20] David L. R. Affleck,et al. Decreasing fire season precipitation increased recent western US forest wildfire activity , 2018, Proceedings of the National Academy of Sciences.
[21] A. Pollard,et al. The Promise and Potential of Continental‐Scale Limnology Using the U.S. Environmental Protection Agency's National Lakes Assessment , 2018 .
[22] J. McCray,et al. Post-fire water-quality response in the western United States , 2018 .
[23] Alexandra D. Syphard,et al. Rapid growth of the US wildland-urban interface raises wildfire risk , 2018, Proceedings of the National Academy of Sciences.
[24] W. W. Jones,et al. LAGOS-NE: a multi-scaled geospatial and temporal database of lake ecological context and water quality for thousands of US lakes , 2017, GigaScience.
[25] J. Venkiteswaran,et al. Internal phosphorus loading in Canadian fresh waters: a critical review and data analysis , 2017 .
[26] Jennifer K. Balch,et al. Human-started wildfires expand the fire niche across the United States , 2017, Proceedings of the National Academy of Sciences.
[27] H. Paerl,et al. It Takes Two to Tango: When and Where Dual Nutrient (N & P) Reductions Are Needed to Protect Lakes and Downstream Ecosystems. , 2016, Environmental science & technology.
[28] Rachel M. Pilla,et al. Sentinel responses to droughts, wildfires, and floods: Effects of UV radiation on lakes and their ecosystem services , 2016 .
[29] Renata E. Hari,et al. Global impacts of the 1980s regime shift , 2015, Global change biology.
[30] D. Jančula,et al. Controlling internal phosphorus loading in lakes by physical methods to reduce cyanobacterial blooms: a review , 2016, Aquatic Ecology.
[31] David P. Hamilton,et al. Rapid and highly variable warming of lake surface waters around the globe , 2015 .
[32] C. Dahm,et al. Extreme water quality degradation following a catastrophic forest fire , 2015 .
[33] Lisa M. Holsinger,et al. Wildland fire deficit and surplus in the western United States, 1984–2012 , 2015 .
[34] S. D. Cooper,et al. Fire effects on aquatic ecosystems: an assessment of the current state of the science , 2015, Freshwater Science.
[35] Peter H. Singleton,et al. Restoring fire-prone Inland Pacific landscapes: seven core principles , 2015, Landscape Ecology.
[36] J. Schmutz,et al. Multi-trophic resilience of boreal lake ecosystems to forest fires. , 2014, Ecology.
[37] M. Moritz,et al. Large wildfire trends in the western United States, 1984–2011 , 2014 .
[38] Lisa C. Thompson,et al. The native and introduced fishes of Clear Lake: A review of the past to assist with decisions of the future , 2013 .
[39] L. Molot,et al. Quantification of internal phosphorus load in large, partially polymictic and mesotrophic Lake Simcoe, Ontario , 2013 .
[40] E. Jeppesen,et al. Persistent internal phosphorus loading during summer in shallow eutrophic lakes , 2013, Hydrobiologia.
[41] D. Schindler. The dilemma of controlling cultural eutrophication of lakes , 2012, Proceedings of the Royal Society B: Biological Sciences.
[42] Charles C. Rhoades,et al. The influence of wildfire extent and severity on streamwater chemistry, sediment and temperature following the Hayman Fire, Colorado , 2011 .
[43] P. Nyman,et al. Wildfire effects on water quality in forest catchments: A review with implications for water supply , 2011 .
[44] M. Beklioğlu,et al. Drought-induced changes in nutrient concentrations and retention in two shallow Mediterranean lakes subjected to different degrees of management , 2010, Hydrobiologia.
[45] E. Harner,et al. Mine-derived mercury: effects on lower trophic species in Clear Lake, California. , 2008, Ecological applications : a publication of the Ecological Society of America.
[46] P. Richerson,et al. Anthropogenic stressors and changes in the Clear Lake ecosystem as recorded in sediment cores. , 2008, Ecological applications : a publication of the Ecological Society of America.
[47] B. Quayle,et al. A Project for Monitoring Trends in Burn Severity , 2007 .
[48] T. Swetnam,et al. Warming and Earlier Spring Increase Western U.S. Forest Wildfire Activity , 2006, Science.
[49] D. Livingstone,et al. Consequences of the 2003 European heat wave for lake temperature profiles, thermal stability, and hypolimnetic oxygen depletion: Implications for a warmer world , 2006 .
[50] Erik Jeppesen,et al. Role of sediment and internal loading of phosphorus in shallow lakes , 2003, Hydrobiologia.
[51] S. Monismith,et al. On the effects of topography on wind and the generation of currents in a large multi-basin lake , 2004, Hydrobiologia.
[52] E. Prepas,et al. Surface water chemistry of burned and undisturbed watersheds on the Boreal Plain: an ecoregion approach , 2003 .
[53] Y. Prairie,et al. Paleolimnological reconstruction of forest fire induced changes in lake biogeochemistry (Lac Francis, Abitibi, Quebec, Canada). , 2000 .
[54] René Gächter,et al. Ten Years of Artificial Mixing and Oxygenation: No Effect on the Internal Phosphorus Loading of Two Eutrophic Lakes , 1998 .
[55] E. Welch,et al. Internal Phosphorus Loading in Shallow Lakes: Importance and Control , 1995 .
[56] Gertrud K. Nürnberg,et al. Quantifying anoxia in lakes , 1995 .
[57] Rg jr. Lathrop. Impacts of the 1988 Wildfires on the Water-Quality of Yellowstone and Lewis Lakes, Wyoming , 1994 .
[58] Marco Aurélio Marques Ferreira,et al. Programa lares habitação popular: transformações na vida das mulheres beneficiadas , 1977 .