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Titlebook: Sustainable Heavy Metal Remediation; Volume 1: Principles Eldon R. Rene,Erkan Sahinkaya,Piet N.L. Lens Book 2017 Springer International Pub

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Heavy Metal Removal from Wastewaters by Biosorption: Mechanisms and Modeling,biosorption performance was reviewed. Among the environmental factors, pH rules metal mobility and speciation. Temperature has a lower influence with an optimal value ranging between 20 and 35 °C. The co-presence of more metals usually decreases the biosorption efficiency of each single metal. Bioso
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Permeable Reactive Barriers for Heavy Metal Removal, reactive barriers. A variety of inorganic and organic reactive media are employed in a permeable reactive barrier to remove the heavy metals. Heavy metal removal is accomplished through processes such as adsorption, precipitation and biodegradation. In this chapter, various aspects of treating heav
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Constructed Wetlands for Landfill Leachate Treatment,esses (vegetation, soils and microorganisms) to remove, transform and degrade pollutants from wastewater, creating an efficient synergic effect. The effectiveness of constructed wetlands for landfill leachate treatment has been extensively demonstrated and its full-scale implementation is rising amo
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Bioelectrochemical Systems for Heavy Metal Removal and Recovery,node is coupled to abiotic or biotic reduction of metal ions at the cathode. With this perspective, this chapter gives an insight on the redox mechanisms of bacteria towards metal recovery along with the influence of . and . potentials in bioelectrochemical systems. The exo-electron transport mechan
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