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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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期刊全稱Bioavailability of Organic Chemicals in Soil and Sediment
影響因子2023Jose Julio Ortega-Calvo,John Robert Parsons
視頻videohttp://file.papertrans.cn/187/186511/186511.mp4
發(fā)行地址Provides an updated review of bioavailability science, covering aspects related to environmental chemistry, microbiology and ecotoxicology.Assesses the impact of bioavailability on chemical risk asses
學(xué)科分類The Handbook of Environmental Chemistry
圖書封面Titlebook: Bioavailability of Organic Chemicals in Soil and Sediment;  Jose Julio Ortega-Calvo,John Robert Parsons Book 2020 The Editor(s) (if applica
影響因子.This book discusses bioavailability concepts and methods, summarizing the current knowledge on bioavailability science, as well as possible pathways for integrating bioavailability into risk assessment and the regulation of organic chemicals. Divided into 5 parts, it begins with an overview of chemical distribution in soil and sediment, as well as the bioavailability and bioaccumulation of chemicals in plants, soil, invertebrates and vertebrates (including humans). It then focuses on the impact of sorption processes and reviews bioavailability measurement methods. The closing chapters discuss the impact of bioavailability studies on chemical risk assessment, and highlights further research needs. Written by a multi-disciplinary team of authors, it is an essential resource for scientists in academia and industry, students, as well as for authorities..
Pindex Book 2020
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https://doi.org/10.1007/978-94-011-9399-3ype 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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https://doi.org/10.1007/978-3-476-03985-9carbon-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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https://doi.org/10.1007/978-3-322-94551-8uptake. The use of transpiration stream concentration factor (TSCF) predicted by the octanol-water partition coefficient (log .) has long been the dominant model; however, recent research has suggested a move away from these predictive relationships. Many studies have been conducted with approximate
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