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Titlebook: Riverbank Filtration; Improving Source-Wat Chittaranjan Ray,Gina Melin,Ronald B. Linsky Textbook 2003 Springer Science+Business Media B.V.

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發(fā)表于 2025-3-21 17:25:24 | 只看該作者 |倒序瀏覽 |閱讀模式
書目名稱Riverbank Filtration
副標(biāo)題Improving Source-Wat
編輯Chittaranjan Ray,Gina Melin,Ronald B. Linsky
視頻videohttp://file.papertrans.cn/831/830885/830885.mp4
叢書名稱Water Science and Technology Library
圖書封面Titlebook: Riverbank Filtration; Improving Source-Wat Chittaranjan Ray,Gina Melin,Ronald B. Linsky Textbook 2003 Springer Science+Business Media B.V.
描述Chittaranjan Ray, Ph. D. , P. E. University of Hawaii at M?noa Honolulu, Hawaii, United States Jürgen Schubert, M. Sc. Stadtwerke Düsseldorf AG Düsseldorf, Germany Ronald B. Linsky National Water Research Institute Fountain Valley, California, United States Gina Melin National Water Research Institute Fountain Valley, California, United States 1. What is Riverbank Filtration? The purpose ofthis book is to show that riverbank filtration (RBF) isa low-cost and efficient alternative water treatment for drinking-water applications. There are two immediate benefits to the increased use of RBF: Minimized need for adding chemicals like disinfectants and coagulants to surface water to control pathogens. Decreased costs to the community without increased risk to human health. Butwhat,exactly, isRBF? In humid regions, river water naturally percolates through the ground into aquifers (which are layers of sand and gravel that contain water underground) during high-flow conditions. In arid regions, most rivers lose flow, and the percolating water passes through soil and aquifer material until it reaches the water table. During these percolation processes, potential contaminants present in river
出版日期Textbook 2003
關(guān)鍵詞Filtration; Groundwater; Infiltration; Pathogen; algae; hydrogeology; hydrology; water quality and water po
版次1
doihttps://doi.org/10.1007/0-306-48154-5
isbn_softcover978-1-4020-1838-1
isbn_ebook978-0-306-48154-3Series ISSN 0921-092X Series E-ISSN 1872-4663
issn_series 0921-092X
copyrightSpringer Science+Business Media B.V. 2003
The information of publication is updating

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Riverbank Filtration Case Study at Louisville, Kentuckyn be achieved through the RBF process at Louisville with a filtration depth of 15 m. Biodegradation and the physical removal of particulate matter at the river/aquifer interface are the primary mechanisms for NOM and disinfection byproduct precursor removal. Adsorption may also play a role in furthe
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Reduction in Disinfection Byproduct Precursors and Pathogens During Riverbank Filtration at Three Midisinfection byproduct precursor material, and total theoretical THM cancer risk. TOC and DOC reductions ranged from 35 to 67 percent for the closest wells at the three sites. Total THM FP and HAA FP reductions ranged from 57 to 73 percent and 50 to 78 percent, respectively. The higher reduction in
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Occurrence, Characteristics, Transport, and Fate of Pesticides, Pharmaceuticals, Industrial Productsroduction of organic compounds, such as pesticides, pharmaceuticals, and personal care products, has increased during the last few decades. This increased production and load has increased the presence of these products and their degradates in rivers. On the other hand, the use of riverbank-filtered
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Water-Quality Improvements with Riverbank Filtration at Düsseldorf Waterworks in Germanyn designing, constructing, operating, and maintaining the waterworks. Data show that RBF is an efficient treatment step in improving drinking-water quality. In addition, RBF is a stable process that not only does not produce residuals, but also helps decrease treatment costs.
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