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Titlebook: Bioavailability of Organic Chemicals in Soil and Sediment; Jose Julio Ortega-Calvo,John Robert Parsons Book 2020 The Editor(s) (if applica

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https://doi.org/10.1007/978-3-658-42865-5ve sampling. The most common polymers for neutral hydrophobic organics include various silicones, polyethylene and polyoxymethylene. However, for the passive sampling of polar and ionic compounds, different polymers with a higher affinity for these compounds are required. For kinetic sampling, in si
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https://doi.org/10.1007/978-3-658-42865-5ew on currently required and/or proposed ecotoxicological effect tests, covering OECD and ISO methods for main soil organism groups (microbes, invertebrates, and plants). Based on this overview, we discuss how the current set of test methods could be improved, trying to capture ecological reality by
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Sorption of Polar and Ionogenic Organic Chemicalsype of soil organic matter, micronized Pahokee peat, by a single method, dynamic high-pressure flow-through column studies using controlled aqueous medium. This chapter collected these consistent . values obtained for a structurally diverse range of (non)polar, cationic, (perfluorinated) anionic, an
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Impact of Sorption to Dissolved Organic Matter on the Bioavailability of Organic Chemicalscarbon-based approaches. In particular, exploration of the influence of condensed aromatic structures in DOM, often referred to as dissolved black carbon, would probably yield better insights into their impact on the bioavailability of high molecular weight PAHs and other hydrophobic compounds. More
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Bioaccumulation and Toxicity of Organic Chemicals in Terrestrial Invertebratesme retardants, and personal care products. Chemical mixtures are also discussed bearing in mind that chemicals appear simultaneously in the environment. The biomagnification of organic chemicals is considered in light of the consumption of terrestrial invertebrates as novel feed and food sources..Th
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Why Biodegradable Chemicals Persist in the Environment? A Look at Bioavailabilityddition, we offer a proposal for integrating bioavailability measurements into standard simulation tests with soils and sediments, by using desorption extraction and passive sampling methods to assess the removal of the bioavailable fractions, in addition to the total extractable concentration of th
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