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Titlebook: Advanced Physicochemical Treatment Technologies; Volume 5 Lawrence K. Wang,Yung-Tse Hung,Nazih K. Shammas Book 2007 Humana Press 2007 Filtr

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https://doi.org/10.1007/978-94-011-1116-4rldwide during the past two decades. There are companies supplying facilities for metal recoveries, for treating drinking water or process water, treating various wastewaters resulting from tannery, electroplating, diary, textile processing, oil and oil in water emulsion, and so on. Nowadays, electr
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https://doi.org/10.1007/978-94-009-6539-3se the final use or disposal of sludges/byproducts may differ greatly with respect to public health concerns, and because a great number of treatment options affecting various degrees of pathogen reduction are available, the system chosen for reduction of pathogens should be tailored to the demands
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Ants of the Pityusic Islands (,)of ion . . is equal to the number density of electrons .nie). Both ion and electron particles in plasma are moved by the heat. In particular, the speed of electrons is much more than other particles because of their small mass and mobility.
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Emerging Biosorption, Adsorption, Ion Exchange, and Membrane Technologies,978-3-642-66701-5
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2512-1359 t technologies.Extensive collection of detailed design exampIn Advanced Physiochemical Treatment Technologies, leading pollution control educators and practicing professionals describe how various combinations of different cutting-edge process systems can be arranged to solve air, noise, and thermal
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Honeybees of the Western Mediterraneanfreshwater supplies are finite, it is becoming more difficult to develop them on a renewable basis. In addition, water pollution is becoming increasingly serious as a result of which water sources are greatly affected.
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Morphometric Analysis and Classification developed. In this chapter, three novel technologies are introduced. The emerging technologies for the removal of heavy metals, disinfection byproducts, total organic carbons (TOC), and arsenic are illustrated.
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