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Titlebook: Nanoparticles in the Water Cycle; Properties, Analysis Fritz H. Frimmel,R. Niessner Book 2010 Springer-Verlag Berlin Heidelberg 2010 Brown

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https://doi.org/10.1007/978-3-642-10318-6Brown Water; Chemical Contrast Imaging; Engineered Nanoparticles (ENP); Field Flow Fractionation; Ground
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Fritz H. Frimmel,R. NiessnerThe first book to present dedicated methods for the analysis of nanoparticles in the aquatic environment.Also covers environmental effects of nanoparticles in surface and groundwater.Includes suppleme
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,Nanoparticles in Groundwater – Occurrence and Applications,ing the mobility in environmental applications. On the other hand, removal rates for synthetic nanoparticles without stabilization could be high, even though a stabilization via interaction with humic substances is likely to occur in the topsoil. The transport properties of nanoparticles are general
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Removal of Organic and Inorganic Pollutants and Pathogens from Wastewater and Drinking Water Using s chloroalkanes and PCBs can be achieved with bimetallic particles (e.g. Pt/Fe, Pd/Fe, Au/Pd). Metals and metal oxides such as TiO., α-Fe.O., ZnO have the capability to catalyse photochemical reactions for the degradation of organic pollutants (e.g. phenolic compounds, chlorinated aliphatic and arom
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Adsorption/Desorption Behavior of Charged Polymer Nanoparticles on a Mineral Surface in an Aqueous o-dimensional surface order observed by atomic force microscopy. In comparison the phase information obtained by AFM is strikingly different on the particles of both SPB types. The positive polyelectrolyte chains of the cationic SPB spread on the surface and are responsible for a corona around the p
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In Situ Measurements on Suspended Nanoparticles with Visible Laser Light, Infrared Light, and X-Ray attenuated total reflection Fourier transform infrared spectroscopy, and X-ray absorption spectroscopy with synchrotron radiation. The examples show the general strategies of such measurements, indicate typical problems and difficulties and demonstrate how such difficulties can be overcome.
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Coupling Techniques to Quantify Nanoparticles and to Characterize Their Interactions with Water Con the basic characterization of ENP and to examine their interactions with environmental matrices and pollutants. This is of high relevance for water purification processes and human health protection..In this contribution, coupling techniques for the quantification of nanoparticles in aqueous matric
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Ecotoxicology of Engineered Nanoparticles,r ENP) exerting adverse effects at lower concentrations. Toxicological mechanisms include oxidative stress, cell membrane disruption and induction of apoptosis and necrosis, all resulting in cytotoxicity. The asbestos-like hazard of carbon nanotubes (CNT) is a cause of concern, particularly for huma
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