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Freshwater Microplastics - Emerging Environmental Contaminants?
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Seite - 177 - in Freshwater Microplastics - Emerging Environmental Contaminants?

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Bild der Seite - 177 - in Freshwater Microplastics - Emerging Environmental Contaminants?

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40.OliveiraM, Ribeiro A, HyllandK, Guilhermino L (2013) Single and combined effects of microplastics and pyrene on juveniles (0þ group) of the common goby Pomatoschistus microps (Teleostei,Gobiidae).Ecol Indic34:641–647.doi:10.1016/j.ecolind.2013.06.019 41.Besseling E, Wang B, Lurling M, Koelmans AA (2014) Nanoplastic affects growth of S. obliquus and reproduction ofD.magna. Environ Sci Technol 48:12336–12343. doi:10. 1021/es503001d 42.Sjollema SB, Redondo-Hasselerharm P, Leslie HA et al (2016) Do plastic particles affect microalgal photosynthesis andgrowth?AquatToxicol 170:259–261. doi:10.1016/j.aquatox. 2015.12.002 43.ZhangC,ChenX,WangJ,TanL(2017)Toxiceffectsofmicroplasticonmarinemicroalgae Skeletonema costatum: interactions between microplastic and algae. Environ Pollut 220: 1282–1288. doi:10.1016/j.envpol.2016.11.005 44.GliwiczZM,SiedlarE(1980)Foodsize limitationandalgae interferingwith foodcollection inDaphnia.ArchHydrobiol 88:155–177 45.Kirk KL (1991) Inorganic particles alter competition in grazing plankton: the role of selective feeding.Ecology72:915–923. doi:10.2307/1940593 46.PetersW (1968) Occurrence, composition and fine structure of peritrophic membranes in animals. ZMorpholTiere 62:9–57. doi:10.1007/BF00401488 47.GeorgiO(1969)Fine structureofperitrophicmembranes inCrustacea.ZMorpholTiere65: 225–273 48.RosenkranzP,ChaudhryQ,StoneV,FernandesTF(2009)Acomparisonofnanoparticleand fineparticle uptakebyDaphniamagna. EnvironToxicolChem28:2142–2149 49.TervonenK,WaissiG, PetersenEJ et al (2010)Analysis of fullerene-c60 and kineticmea- surementsfor itsaccumulationanddepurationinDaphniamagna.EnvironToxicolChem29: 1072–1078. doi:10.1002/etc.124 50.KhanFR,KennawayGM,CroteauM-Netal (2014) Invivo retentionof ingestedAuNPsby Daphnia magna: no evidence for trans-epithelial alimentary uptake. Chemosphere 100: 97–104. doi:10.1016/j.chemosphere.2013.12.051 51.DevrieseLI, vanderMeulenMD,MaesTet al (2015)Microplastic contamination inbrown shrimp(Crangoncrangon,Linnaeus1758)fromcoastalwatersoftheSouthernNorthSeaand Channel area.MarPollutBull 98:179–187. doi:10.1016/j.marpolbul.2015.06.051 52.MurrayF,CowiePR(2011)Plastic contamination in thedecapodcrustaceanNephropsnor- vegicus (Linnaeus, 1758).MarPollutBull 62:1207–1217. doi:10.1016/j.marpolbul.2011.03. 032 53.Lee K, ShimWJ, Kwon OY, Kang J (2013) Size-dependent effects of micro polystyrene particles in themarine copepodTigriopus japonicus. EnvironSciTechnol 47:11278–11283. doi:10.1021/es401932b 54.BundyMH,GrossTF,VanderploegHA,Strickler JR (1998)Perceptionof inert particles by calanoid copepods: behavioral observations and a numerical model. J Plankton Res 20: 2129–2152. doi:10.1093/plankt/20.11.2129 55.Cole M, Lindeque P, Fileman E et al (2013) Microplastic ingestion by zooplankton. EnvironSciTechnol 47:6646–6655. doi:10.1021/es400663f 56.BrenneckeD, Ferreira EC,Costa TMMet al (2014) Ingestedmicroplastics (<100 μm) are translocated to organs of the tropical fiddler crabUca rapax.Mar Pollut Bull 96:491–495. doi:10.1016/j.marpolbul.2015.05.001 57.WattsAJR,LewisC,GoodheadRMetal (2014)Uptakeandretentionofmicroplasticsbythe shore crabCarcinusmaenas. EnvironSciTechnol 48:8823–8830. doi:10.1021/es501090e 58.WattsAJR,UrbinaMA,GoodheadRMetal (2016)Effectofmicroplasticon thegills of the shore crab Carcinus maenas. Environ Sci Technol 50:5364–5369. doi:10.1021/acs.est. 6b01187 Interactions ofMicroplasticswithFreshwaterBiota 177
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Freshwater Microplastics Emerging Environmental Contaminants?
Titel
Freshwater Microplastics
Untertitel
Emerging Environmental Contaminants?
Autoren
Martin Wagner
Scott Lambert
Verlag
Springer Open
Datum
2018
Sprache
englisch
Lizenz
CC BY 4.0
ISBN
978-3-319-61615-5
Abmessungen
15.5 x 24.1 cm
Seiten
316
Kategorien
Naturwissenschaften Chemie
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Freshwater Microplastics