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Titlebook: Emerging Environmental Technologies, Volume II; Vishal Shah Book 2010 Springer Science+Business Media B.V. 2010 Bioaugmentation.Bioenergy.

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Decontaminating Heavy Metals from Water Using Photosynthetic Microbes,transporters in cell membranes can absorb toxic non-essential metal ions and essential metal ions to excess, both of which can deleteriously affect important metabolic processes. Organisms have responded to this threat by evolving coping mechanisms that biotransform the metals into forms possessing
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Needle-Type Multi-Analyte MEMS Sensor Arrays for , Measurements in Biofilms, the annual cost of billions of dollars. For example, biofilms are ubiquitous in water distribution systems and control of their growth have been a great challenge, with many water utilities in the US reporting biofilm survival in water distribution systems despite the continuing presence of disinfe
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Fundamentals and Applications of Entrapped Cell Bioaugmentation for Contaminant Removal, is an integration of cell entrapment and cell bioaugmentation techniques. In the last decade, this technology has been frequently studied for its applications in the environmental field for removing collective and specific contaminants. The technology not only provides sufficient contaminant-degrad
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Biofuels for Transport: Prospects and Challenges,t of sustainable technologies based on renewable raw materials. The so-called biofuels might help to meet the future energy supply demands as well as contributing to a reduction of green house gases emissions. In this work, we aim to provide the latest update of the production and potential of biofu
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https://doi.org/10.1007/978-1-349-19629-6and preparation procedures of selected cell entrapment matrices, and studies on the applications of the technology for wastewater treatment and site remediation. Future perspectives of the technology are also discussed.
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