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Titlebook: Environmental Microbial Biotechnology; Lala Behari Sukla,Nilotpala Pradhan,Barada Kanta M Book 2015 Springer International Publishing Swit

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Parallel Algorithm Synthesis Procedure,s oxidation states like sulfides, sulfites, or sulfates are among the examples of such contaminants. Many industrial processes such as lead smelting; petroleum oil refineries; rubber, pulp, and paper industries; flue gas desulfurization of thermal power plants; etc., release sulfurous wastes. Higher
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A Parameter-Setting Model of L2 Acquisitionnts like light, CO., N, P and K. Microalgae with its high CO. fixing efficiency can produce and accumulate macromolecules such as lipids (triglycerols), proteins and carbohydrates in large amounts with high growth rate. Their simple development allows them to adapt to prevailing environmental condit
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https://doi.org/10.1007/978-981-287-969-1e widespread mining, mineral processing, and further human activities have faced a severe consequence in the generation of massive quantity of manganese mining waste residues. The inappropriate supervision and unprocessed liberation of these wastes have resulted in the spread of Mn to the contiguous
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https://doi.org/10.1007/978-3-319-19018-1Acidithiobacillis ferroooxidans; Biohydrometallurgical process; Bioremediation; Environmental pollutant
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Anaerobic Treatment of Organic Saline Waste/Wastewater: Overcome Salinity Inhibition by Addition of salinity. This is based on previous insights gained about how cells cope with stress conditions through the use of compatible solutes. Therefore, this chapter reviews the main studies dealing with the use of compatible solutes to overcome anaerobic biomass inhibition and state the future potential of this strategy.
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1613-3382 resents both basic and applied aspects.Will be of interest t.This book provides a timely review of strategies for coping with polluted ecosystems by employing bacteria, fungi and algae. It presents the vast variety of microbial technologies currently applied in the bioremediation of a variety of ant
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A Panoramic View of Riemannian Geometryts of biogeochemical cycles and regulate the mobility and fate of uranium in the environment. This chapter focuses on the fundamental microbial mechanisms underlying uranium immobilization with brief discussion on general considerations, approaches and challenges for uranium bioremediation.
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