Page - 148 - in Freshwater Microplastics - Emerging Environmental Contaminants?
Image of the Page - 148 -
Text of the Page - 148 -
34. ImhofHK,LaforschC (2016)Hazardous or not- are adult and juvenile individuals of Pota-
mopyrgus antipodarumaffected bynon-buoyantmicroplastic particles?EnvironPollut 218:
383β391
35.BesselingE,QuikJTK,KoelmansAA(2014)Modelingthefateofnano-andmicroplastics in
freshwater systems. SETAC Annual Meeting, Basel, Switzerland. doi: 10.13140/RG.2.2.
20991.61602
36.Besseling E, Quik JTK, SunM, Koelmans AA (2017) Fate of nano- and microplastic in
freshwater systems: amodeling study.EnvironPollut 220:540β548
37.NizzettoL,BussiG, FutterMNet al (2016)A theoretical assessment ofmicroplastic trans-
port in river catchmentsand their retentionbysoils and river sediments.EnvironSciProcess
Impacts 18:1050β1059
38.Gasperi J,DrisR,BoninTetal (2014)Assessmentoffloatingplasticdebris in surfacewater
along theSeineRiver. EnvironPollut 195:163β166
39.MerrittWS, Letcher RA, JakemanAJ (2003) A review of erosion and sediment transport
models. EnvironModelSoftw18:761β799. doi:10.1016/S1364-8152(03)00078-1
40.Aksoy H, Kavvas ML (2005) A review of hillslope and watershed scale erosion and
sediment transportmodels.Catena64:247β271
41.Drewry JJ, NewhamLTH,GreeneRSB et al (2006)A review of nitrogen and phosphorus
export towaterways: context for catchmentmodelling.MarFreshwRes57:757β774
42.Vanderkruk K, Owen K, Grace M, Thompson R (2009) Review of existing nutrient,
SuspendedSolid andMetalModels
43.Whitehead PG, Howard A, Arulmani C (1997) Modelling algal growth and transport in
rivers: a comparisonof timeseries analysis, dynamicmassbalanceandneural network tech-
niques.Hydrobiologia 349:39β46
44.Vermeulen LC, Hofstra N, Kroeze C,MedemaG (2015) Advancingwaterborne pathogen
modelling: lessons from global nutrient export models. Curr Opin Environ Sustain 14:
109β120
45.Gottschalk F, SunT,NowackB (2013) Environmental concentrations of engineered nano-
materials: reviewofmodeling andanalytical studies.EnvironPollut 181:287β300
46.Baalousha M, Cornelis G, Kuhlbusch TAJ et al (2016) Modeling nanomaterial fate and
uptake in the environment: current knowledge and future trends. Environ Sci Nano 3:
323β345
47. JiZ-G(2008)Hydrodynamicsandwaterquality:modelingrivers, lakes,andestuaries.Wiley,
Hoboken
48.Fischer HB, List JE, Koh CR et al (2013)Mixing in inland and coastal waters. Elsevier,
Amsterdam
49.Wallis S (2007) The numerical solution of the advection-dispersion equation: a review of
somebasic principles.ActaGeophys55:85β94
50.AniE-C,WallisS,KraslawskiA,AgachiPS(2009)Development,calibrationandevaluation
of twomathematical models for pollutant transport in a small river. EnvironModel Softw
24:1139β1152
51.BrownPP,LawlerDF(2003)Spheredragandsettlingvelocity revisited. JEnvironEng129:
222β231. doi:10.1061/(ASCE)0733-9372(2003)129:3(222)
52.KowalskiN, ReichardtAM,Waniek JJ (2016) Sinking rates ofmicroplastics and potential
implicationsof their alterationbyphysical, biological, andchemical factors.MarPollutBull
109(1):310β319
53.McNownJS,Malaika J (1950)Effectsofparticle shapeon settlingvelocity at lowReynolds
numbers.EOSTransAmGeophysUnion31:74β82
54. Johnson CP, Li X, Logan BE (1996) Settling velocities of fractal aggregates. Environ Sci
Technol 30:1911β1918
148 M.Kooi et al.
Freshwater Microplastics
Emerging Environmental Contaminants?
- Title
- Freshwater Microplastics
- Subtitle
- Emerging Environmental Contaminants?
- Authors
- Martin Wagner
- Scott Lambert
- Publisher
- Springer Open
- Date
- 2018
- Language
- English
- License
- CC BY 4.0
- ISBN
- 978-3-319-61615-5
- Size
- 15.5 x 24.1 cm
- Pages
- 316
- Categories
- Naturwissenschaften Chemie