Works matching DE "EFFECT of climate on aquaculture"
Results: 55
Analysis and assessment of ground-level ozone measured at two stations in Tehran.
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- Environmental Monitoring & Assessment, 2010, v. 165, n. 1-4, p. 275, doi. 10.1007/s10661-009-0944-3
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- Article
Potential distribution models and the effect of climatic change on the distribution of Phengaris nausithous considering its food plant and host ants.
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- Journal of Insect Conservation, 2015, v. 19, n. 6, p. 1101, doi. 10.1007/s10841-015-9825-y
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Mixed responses of tropical Pacific fisheries and aquaculture to climate change.
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- Nature Climate Change, 2013, v. 3, n. 6, p. 591, doi. 10.1038/nclimate1838
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- Article
Response of Microbial Communities to Changing Climate Conditions During Summer Cyanobacterial Blooms in the Baltic Sea.
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- Frontiers in Microbiology, 2018, p. N.PAG, doi. 10.3389/fmicb.2018.01562
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Application of low-frequency sonophoresis and reduction of antibiotics in the aquatic systems.
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- Journal of Fish Diseases, 2017, v. 40, n. 11, p. 1635, doi. 10.1111/jfd.12631
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Staying cool, keeping strong: incubation temperature affects performance in a freshwater turtle.
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- Journal of Zoology, 2011, v. 285, n. 4, p. 266, doi. 10.1111/j.1469-7998.2011.00840.x
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Physiological effects of temperature and a herbicide mixture on the soft-shell clam Mya arenaria (Mollusca, Bivalvia).
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- Environmental Toxicology & Chemistry, 2011, v. 30, n. 1, p. 132, doi. 10.1002/etc.359
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Potential hydrometeorological threshold values of the coastal hazard-an example from the Polish Southern Baltic coast.
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- Russian Meteorology & Hydrology, 2014, v. 39, n. 9, p. 614, doi. 10.3103/S1068373914090064
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- Article
The response of phytoplankton, zooplankton and macrozoobenthos communities to change in the water supply from surface to groundwater in aquaculture ponds.
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- Annales de Limnologie, 2014, v. 50, n. 2, p. 131, doi. 10.1051/limn/2014005
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Bivalve aquaculture-environment interactions in the context of climate change.
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- Global Change Biology, 2016, v. 22, n. 12, p. 3901, doi. 10.1111/gcb.13346
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Ozone Application in Recirculating Aquaculture System: An Overview.
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- Ozone: Science & Engineering, 2011, v. 33, n. 5, p. 345, doi. 10.1080/01919512.2011.604595
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- Article
Bangladesh Needs a 'Blue-Green Revolution' to Achieve a Green Economy.
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- AMBIO - A Journal of the Human Environment, 2012, v. 41, n. 2, p. 211, doi. 10.1007/s13280-011-0160-6
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Economic impacts of climate change: profitability of freshwater aquaculture in China.
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- Aquaculture Research, 2016, v. 47, n. 5, p. 1537, doi. 10.1111/are.12614
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- Article
Global scale of freshwater prawn farming.
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- Aquaculture Research, 2012, v. 43, n. 8, p. 960, doi. 10.1111/j.1365-2109.2011.03008.x
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Climate Change Impacts on Freshwater Ecosystems - Edited by Martin, Kernan, Richard W., Battarbee, Brian and Moss.
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- 2012
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- Book Review
Site fidelity of intertidal fish to rockpools.
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- Journal of Applied Ichthyology, 2018, v. 34, n. 3, p. 535, doi. 10.1111/jai.13553
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Quantitative Impacts of Climate Change and Human Activities on Water-Surface Area Variations from the 1990s to 2013 in Honghu Lake, China.
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- Water (20734441), 2015, v. 7, n. 6, p. 2881, doi. 10.3390/w7062881
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Evolution of Marine Organisms under Climate Change at Different Levels of Biological Organisation.
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- Water (20734441), 2014, v. 6, n. 11, p. 3545, doi. 10.3390/w6113545
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Come rain or come shine: environmental effects on the infective stages of Sparicotyle chrysophrii, a key pathogen in Mediterranean aquaculture.
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- Parasites & Vectors, 2018, v. 11, n. 1, p. N.PAG, doi. 10.1186/s13071-018-3139-3
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Harbour dredging and fish mortality in an aquaculture zone: assessment of changes in suspended particulate matter using multi-sensor remote-sensing data.
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- International Journal of Remote Sensing, 2014, v. 35, n. 11/12, p. 4383, doi. 10.1080/01431161.2014.916446
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The regional impacts of climate change on coastal environments and the aquaculture of Japanese scallops in northeast Asia: case studies from Dalian, China, and Funka Bay, Japan.
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- International Journal of Remote Sensing, 2014, v. 35, n. 11/12, p. 4422, doi. 10.1080/01431161.2014.916435
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- Article
Pelagic larval duration is similar across 23° of latitude for two species of butterflyfish (Chaetodontidae) in eastern Australia.
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- Coral Reefs, 2011, v. 30, n. 4, p. 1071, doi. 10.1007/s00338-011-0815-6
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Vulnerability of coastal ecosystems to changes in harmful algal bloom distribution in response to climate change: projections based on model analysis.
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- Global Change Biology, 2014, v. 20, n. 12, p. 3845, doi. 10.1111/gcb.12662
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Warming temperatures and smaller body sizes: synchronous changes in growth of North Sea fishes.
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- Global Change Biology, 2014, v. 20, n. 4, p. 1023, doi. 10.1111/gcb.12514
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A decade of climate change experiments on marine organisms: procedures, patterns and problems.
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- Global Change Biology, 2012, v. 18, n. 5, p. 1491, doi. 10.1111/j.1365-2486.2012.02656.x
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- Article
Stochastic optimization model of aquacultured fish for sale and ecological education.
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- Journal of Mathematics in Industry, 2017, v. 7, n. 1, p. 1, doi. 10.1186/s13362-017-0038-8
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- Article
Within-season variation in sexual selection in a fish with dynamic sex roles.
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- Molecular Ecology, 2014, v. 23, n. 14, p. 3587, doi. 10.1111/mec.12826
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Helping Aquaculture Cope with Rising Ocean Temperatures.
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- Australian Maritime Digest, 2011, n. 200, p. 7
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- Article
Growth Dynamics of Three Trout Species (Oncorhynchus mykiss, Salvelinus fontinalis and Salvelinus alpinus), in Accordance with Environmental Parameters.
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- Bulletin of the University of Agricultural Sciences & Veterinary Medicine Cluj-Napoca. Animal Science & Biotechnologies, 2014, v. 71, n. 2, p. 285, doi. 10.15835/buasvmcn-asb:10789
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- Article
Near Future Ocean Acidification Increases Growth Rate of the Lecithotrophie Larvae and Juveniles of the Sea Star Crossaster papposus.
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- Journal of Experimental Zoology Part B: Molecular & Developmental Evolution, 2010, v. 314B, n. 5, p. 382, doi. 10.1002/jez.b.21342
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Benthic community changes following the 2010 Hainan flood: Implications for reef resilience.
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- Marine Biology Research, 2014, v. 10, n. 6, p. 601, doi. 10.1080/17451000.2013.841942
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Dangerous climate change and water resources in Australia.
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- Regional Environmental Change, 2011, v. 11, p. 197, doi. 10.1007/s10113-010-0176-7
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Neuropeptides in the cerebral ganglia of the mud crab, Scylla paramamosain: transcriptomic analysis and expression profiles during vitellogenesis.
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- Scientific Reports, 2015, p. 17055, doi. 10.1038/srep17055
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The northern Baltic Sea phytoplankton communities in 1903-1911 and 1993-2005: a comparison of historical and modern species data.
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- Hydrobiologia, 2013, v. 707, n. 1, p. 109, doi. 10.1007/s10750-012-1414-4
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Climate Change Effects on Aquatic Ecosystems and the Challenge for Fishery Management: Pink Shrimp of the Southern Gulf of Mexico.
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- Fisheries, 2015, v. 40, n. 1, p. 15, doi. 10.1080/03632415.2015.988075
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ANNOUNCEMENT: AFS SEEKS COMMENT ON TWO NEW RESOURCE POLICIES.
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- Fisheries, 2010, v. 35, n. 6, p. 294
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What happens to glass eels after restocking in upland rivers? A long‐term study on their dispersal and behavioural traits.
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- Aquatic Conservation, 2019, v. 29, n. 3, p. 374, doi. 10.1002/aqc.3062
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Impacts of climate change on fish, fisheries and aquaculture.
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- Aquatic Conservation, 2012, v. 22, n. 3, p. 331, doi. 10.1002/aqc.2230
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- Article
Environmental factors influencing aggregation of manta rays ( Manta birostris) off the northeastern coast of the Yucatan Peninsula.
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- Marine Ecology, 2017, v. 38, n. 3, p. n/a, doi. 10.1111/maec.12432
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Scales of recruitment variability in warming waters: Comparing native and introduced oysters in Hood Canal, Washington, USA.
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- Marine Ecology, 2017, v. 38, n. 3, p. n/a, doi. 10.1111/maec.12435
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Using species distribution modelling to predict future distributions of phytoplankton: Case study using species important for the biological pump.
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- Marine Ecology, 2017, v. 38, n. 3, p. n/a, doi. 10.1111/maec.12427
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- Article
Spatial and temporal variation of diverse inter-tidal algal assemblages in Southwest O'ahu.
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- Marine Ecology, 2017, v. 38, n. 3, p. n/a, doi. 10.1111/maec.12429
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Effect of carbon dioxide-induced water acidification and seasonality on the physiology of the sea-bob shrimp Xiphopenaeus kroyeri (Decapoda, Penaeidae).
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- Crustaceana, 2018, v. 91, n. 8, p. 947, doi. 10.1163/15685403-00003807
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Demodulation of time series highlights impacts of hydrologic drivers on the Everglades ecosystem.
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- Ecohydrology, 2015, v. 8, n. 2, p. 204, doi. 10.1002/eco.1500
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- Article
Biophysical Vulnerability Impact Assessment of Climate Change on Aquaculture Sector Development in Sarawak, Malaysia.
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- DLSU Business & Economics Review, 2015, v. 24, n. 2, p. 32
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LCA of aquaculture systems: methodological issues and potential improvements.
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- International Journal of Life Cycle Assessment, 2019, v. 24, n. 2, p. 324, doi. 10.1007/s11367-018-1517-x
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Potential aquatic environmental risks of trifloxystrobin: Enhancement of virus susceptibility in zebrafish through initiation of autophagy.
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- Zoological Research, 2021, v. 42, n. 3, p. 339, doi. 10.24272/j.issn.2095-8137.2021.056
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Projected impacts of climate change on marine fish and fisheries.
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- ICES Journal of Marine Science / Journal du Conseil, 2013, v. 70, n. 5, p. 1023, doi. 10.1093/icesjms/fst081
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- Article
Implementation of the lake parameterisation saheme FLake into the numerical weather prediction model COSMO.
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- Boreal Environment Research, 2010, v. 15, n. 2, p. 218
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- Article
Planning for Production of Freshwater Fish Fry in a Variable Climate in Northern Thailand.
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- Environmental Management, 2015, v. 56, n. 4, p. 859, doi. 10.1007/s00267-015-0547-4
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- Article