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Titlebook: Arsenic in Ground Water; Alan H. Welch,Kenneth G. Stollenwerk Book 2003 Springer Science+Business Media New York 2003 Groundwater.Sorption

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期刊全称Arsenic in Ground Water
影响因子2023Alan H. Welch,Kenneth G. Stollenwerk
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图书封面Titlebook: Arsenic in Ground Water;  Alan H. Welch,Kenneth G. Stollenwerk Book 2003 Springer Science+Business Media New York 2003 Groundwater.Sorption
影响因子Interest in arsenic in ground water has greatly increased in the past decade because of the increased awareness of human health effects and the costs of avoidance or treatment of ground water supplies used for consumption. The goal of this book is to provide a description of the basic processes that affect arsenic occurrence and transport by providing sufficient background information on arsenic geochemistry and descriptions of hi- arsenic ground water, both affected and unaffected by human activity. An understanding of thermodynamics, adsorption, and the speciation of arsenic in solid phases, which are described in first three chapters, is needed to predict the fate of arsenic in ground water systems. Large-scale and deep movement of ground water can and has redistributed arsenic in the near surface environment, as described in the next two chapters. These large-scale systems can affect large volumes of both ground water and surface water, such as in the Yellowstone system, and can produce mineralised zones that subsequently release arsenic to ground water supplies. Regional identification of high-arsenic ground water and its consumption as described in the next three chapters cle
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Geochemical Processes Controlling Transport of Arsenic in Groundwater: A Review of Adsorption,, and clay minerals are commonly associated with aquifer solids and have been shown to be significant adsorbents of arsenic. The extent of arsenic adsorption is influenced by the chemistry of the aqueous phase including pH, arsenic speciation, and the presence and concentration of competing ions. Un
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The scale and causes of the groundwater arsenic problem in Bangladesh,ladesh. It is now apparent that approximately 1/4 of these wells contain arsenic at concentrations exceeding the Bangladesh drinking water standard .). As many as 35 million people may be drinking arsenic-affected groundwater. We discuss a national survey of groundwater quality in Bangladesh that at
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Natural Remediation Potential of Arsenic-Contaminated Ground Water,ental data indicate the primary source of arsenic to be reductive dissolution of arsenic-enriched iron oxyhydroxides in the aquifer by organic carbon in landfill leachate. A core from an uncontaminated part of the aquifer yielded no dissolved iron or arsenic when leached with oxic ground water. Elue
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