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Titlebook: Advances in Dye Removal Technologies; Sourav Mondal,Mihir Kumar Purkait,Sirshendu De Book 2018 Springer Nature Singapore Pte Ltd. 2018 Che

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Chancengleichheit durch Personalpolitikth of textile industry, dye-containing effluent is a potential water treatment issue. Moreover, dye-containing wastewater (even in trace amounts) is toxic to human consumption. There have been several conventional water treatment technologies based on adsorption which purifies dye-containing wastewa
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Carola Busch,Gerhard Engelbrech the process efficiency is excellent, but the throughput is relatively low. Nevertheless, because of its simplicity, this is one of the normally used technologies for dye removal from aqueous stream. Therefore, it is imperative to understand the modeling aspects of such adsorbent-based systems which
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Chancengleichheit durch Personalpolitikcompetitive adsorption of multiple species present in an effluent. The chapter illustrates the adsorption phenomena using one of the commonly used adsorbents detailed in Chap. . for removal of toxic dyes from an effluent. Further analyses were done for the kinetics and isotherm for multicomponent ad
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Chancengleichheit durch Personalpolitikant-enhanced regeneration which is inexpensive and low-energy intensive. This chapter presents a comprehensive study of this case, the surfactant regeneration process using different types of surfactants, including a simple theoretical model for the adsorbent regeneration.
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https://doi.org/10.1007/978-3-663-09485-2h it produces cations which attract the pollutants in the wastewater. The cations released in water are produced in situ and acts as the electrocoagulant in this case. The dyes attached to the electrocoagulant either precipitates or flocculates, thereby separated. This is perhaps one of the advanced
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