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Titlebook: Contaminant Geochemistry; Interactions and Tra Brian Berkowitz,Ishai Dror,Bruno Yaron Book 2014Latest edition The Editor(s) (if applicable)

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Contaminant Partitioning in the Aqueous Phasespended particles. Moreover, disposal of an aqueous liquid that contains an amount of contaminant greater than its solubility in water may lead to the formation of a type of emulsion containing very small droplets.
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https://doi.org/10.1007/978-3-662-40057-9, additional terms can be included in the transport equations surveyed in .. In most cases, the resulting transport equations contain relatively simple terms that account for chemical species loss from or entry to the aqueous solution.
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Characterization of the Subsurface Environmentaturated—or more precisely, partially saturated—but it may contain a saturated fraction in the vicinity of the water table due to fluctuations in water levels or capillary rise above the water table. The near-surface layer of this zone—the soil—is generally partially saturated, although it can exhib
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Inorganic and Organometallic Compoundstamins, as well as in hormones and enzymes. Nitrogen is an extremely versatile element, existing in both inorganic and organic forms as well as in many oxidation states. Nitrogen gas constitutes almost 80 % of the atmosphere and is therefore present almost everywhere.
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Contaminant Partitioning in the Aqueous Phase the subsurface aqueous phase includes “retained water,” near the solid surface, and “free” water. If the “retained water” has an apparently static character, the subsurface “free” water is in a continuous feedback system with any incoming source of water. The amount and composition of incoming wate
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Partitioning of Volatile Compoundse. The partitioning of a volatile compound in the subsurface environment comprises two distinct patterns: volatilization of contaminant molecules (from the liquid, solid, or adsorbed phase) and dispersion of the resulting vapors in the subsurface gas phase or the overlying atmosphere by diffusive an
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