2017
DOI: 10.1016/j.scitotenv.2016.12.056
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Assessing the environmental impacts of freshwater thermal pollution from global power generation in LCA

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Cited by 31 publications
(24 citation statements)
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“…Relative to seas and oceans, freshwater habitats are more drastically impacted by changes to climate, especially due to changes to temperature and flow, and climate change is projected to strongly affect freshwater fish communities (Buisson, Thuiller, Lek, Lim, & Grenouillet, ; Graham & Harrod, ; Harrod, ; O'Reilly, Alin, Plisnier, Cohen, & McKee, ; Radinger et al, ). Combined with other anthropogenic impacts (e.g., land use change and thermal pollution; Radinger et al, ; Raptis, Boucher, & Pfister, ), climate change will restrict or redraw thermal envelopes, contribute to population declines and local extinctions, and result in shifts in the distribution of species (Booth, Bond, & Macreadie, ; Ficke, Myrick, & Hansen, ; Filipe, Lawrence, & Bonada, ; Woodward, Perkins, & Brown, ). Riverine fish species losses due to climate change and reduced water discharge are predicted to reach 75% in some river basins, such as those of rivers Parnaíba (Brazil), Saloum (Senegal), and Cauvery (India; Xenopoulos et al, ).…”
Section: Introductionmentioning
confidence: 99%
See 1 more Smart Citation
“…Relative to seas and oceans, freshwater habitats are more drastically impacted by changes to climate, especially due to changes to temperature and flow, and climate change is projected to strongly affect freshwater fish communities (Buisson, Thuiller, Lek, Lim, & Grenouillet, ; Graham & Harrod, ; Harrod, ; O'Reilly, Alin, Plisnier, Cohen, & McKee, ; Radinger et al, ). Combined with other anthropogenic impacts (e.g., land use change and thermal pollution; Radinger et al, ; Raptis, Boucher, & Pfister, ), climate change will restrict or redraw thermal envelopes, contribute to population declines and local extinctions, and result in shifts in the distribution of species (Booth, Bond, & Macreadie, ; Ficke, Myrick, & Hansen, ; Filipe, Lawrence, & Bonada, ; Woodward, Perkins, & Brown, ). Riverine fish species losses due to climate change and reduced water discharge are predicted to reach 75% in some river basins, such as those of rivers Parnaíba (Brazil), Saloum (Senegal), and Cauvery (India; Xenopoulos et al, ).…”
Section: Introductionmentioning
confidence: 99%
“…. Combined with other anthropogenic impacts (e.g., land use change and thermal pollution; Radinger et al, 2016;Raptis, Boucher, & Pfister, 2017), climate change will restrict or redraw thermal envelopes, contribute to population declines and local extinctions, and result in shifts in the distribution of species (Booth, Bond, & Macreadie, 2011;Ficke, Myrick, & Hansen, 2007;Filipe, Lawrence, & Bonada, 2013;Woodward, Perkins, & Brown, 2010). Riverine fish species losses due to climate change and reduced water discharge are predicted to reach 75% in some river basins, such as those of rivers Parnaíba (Brazil), Saloum (Senegal), and Cauvery (India; Xenopoulos et al, 2005).…”
mentioning
confidence: 99%
“…Besides shipping, LCA and LCC have a great area of utilization in various subjects. [13] used LCA to assess the environmental impacts of freshwater thermal pollution. [14] studied the implementation of LCA in Environmental Impact Assessment (EIA) procedures.…”
Section: Introductionmentioning
confidence: 99%
“…Power plants discharge very large volumes of cooling water that have accumulated much heat in the cooling process, raising the temperature of the water into which it is discharged [1][2][3]. Waste heat discharge from thermal power plants is one of the main causes of thermal pollution of water [4][5][6][7][8][9]. This thermal discharge pollution is becoming an increasingly serious environmental problem.…”
Section: Introductionmentioning
confidence: 99%
“…The results indicated that the numerical model is an effective tool for water environmental planning and management research. G is the turbulence generation term with the following forms: (8) Turbulent stresses τ ij are calculated by the k-ε turbulence model, which employs the following eddy viscosity relationship: (9) …where v e = v + v t . The other constants for the k-ε turbulence model are:…”
Section: Introductionmentioning
confidence: 99%