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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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发表于 2025-3-21 18:34:02 | 显示全部楼层 |阅读模式
书目名称Environmental Microbial Biotechnology
编辑Lala Behari Sukla,Nilotpala Pradhan,Barada Kanta M
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概述Enriches readers’ understanding of microbial bioremediation technologies.Written by researchers actively involved in the respective fields.Presents both basic and applied aspects.Will be of interest t
丛书名称Soil Biology
图书封面Titlebook: Environmental Microbial Biotechnology;  Lala Behari Sukla,Nilotpala Pradhan,Barada Kanta M Book 2015 Springer International Publishing Swit
描述.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 anthropogenic toxic chemicals, mining and industrial wastes and other pollutants..Topics covered include: microbe-mineral interactions, biosensors in environmental monitoring, iron-mineral transformation, microbial biosurfactants, bioconversion of cotton gin waste to bioethanol, anaerobe bioleaching and sulfide oxidation. Further chapters discuss the effects of pollution on microbial diversity, as well as the role of microbes in the bioremediation of abandoned mining areas, industrial and horticultural wastes, wastewater and sites polluted with hydrocarbons, heavy metals, manganese and uranium..
出版日期Book 2015
关键词Acidithiobacillis ferroooxidans; Biohydrometallurgical process; Bioremediation; Environmental pollutant
版次1
doihttps://doi.org/10.1007/978-3-319-19018-1
isbn_softcover978-3-319-36312-7
isbn_ebook978-3-319-19018-1Series ISSN 1613-3382 Series E-ISSN 2196-4831
issn_series 1613-3382
copyrightSpringer International Publishing Switzerland 2015
The information of publication is updating

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Role of Biosensors in Environmental Monitoring,expensive and attractive alternative to the conventional analytical techniques, which are capable of providing real-time online monitoring. With the diverse effect of these pollutants on the biological system, a number of biosensors have been developed and are still in progress. Among toxic compound
发表于 2025-3-22 11:09:58 | 显示全部楼层
Microbial Biosurfactant for Hydrocarbons and Heavy Metals Bioremediation,soil and water. The hydrocarbon contaminants exhibit moderate to poor recovery by physicochemical treatments owing to poor water solubility. Among the available remediation techniques, bioremediation is regarded as environmental friendly because it preserves the soil structure, requires little energ
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Anaerobic Treatment of Organic Saline Waste/Wastewater: Overcome Salinity Inhibition by Addition ofwever, most of the studies only investigated a gradual increase in salinity despite the fact that it is often highly variable in many industrial wastewaters. Based on the above considerations, this chapter review is a new approach for the rapid adaptation of anaerobic biomass to a sudden increase in
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Uranium Bioremediation: Approaches and Challenges, by microbial processes has been shown to be effective for immobilizing uranium in contaminated sites. Such microbial processes are important components of biogeochemical cycles and regulate the mobility and fate of uranium in the environment. This chapter focuses on the fundamental microbial mechan
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Environmental-Microbial Biotechnology Inside Mining Operations from an Engineering Viewpoint Based s. Today, the mining sector is at a tipping point to achieve equilibrium between high levels of production and minimizing environmental impacts. A feasible and novel approach to solve this need is the incorporation of concepts from industrial ecology to mining processes. Such approach could support
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Neutrophilic Bacteria in Iron Mineral Transformation and Their Applications,es in the form of ferric iron minerals (goethite, ferrihydrite, hematite) and ferrous iron minerals (pyrite, siderite, vivianite). At circumneutral pH, ferrous [Fe (II)] ion is unstable and is rapidly oxidized to ferric [Fe (III)] under aerobic conditions. Conversely, Fe (III) reduction takes place
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Anaerobic Bioleaching by Acidophilic Bacterial Strains,on reduction by acidophilic bacteria. The bacterial reduction of ferric iron at acidic pH appears to be energetically and kinetically feasible. Ferric iron is relatively stable at low pH in the presence of elemental sulphur, although it rapidly reacts with sulphides present in the minerals. In the h
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