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    Environmental Biotechnology in Water and Wastewater Treatment

    Source: Journal of Environmental Engineering:;2010:;Volume ( 136 ):;issue: 004
    Author:
    Bruce E. Rittmann
    DOI: 10.1061/(ASCE)EE.1943-7870.0000140
    Publisher: American Society of Civil Engineers
    Abstract: Environmental biotechnology “manages microbial communities to provide services to society.” The key services today include detoxifying contaminated water and soil to reclaim lost resources and converting diffuse energy in biomass to forms easily used by society. Two timely examples are the reduction of oxidized water contaminants (e.g., nitrate, perchlorate, selenate, and chlorinated solvents) and the production of methane, hydrogen, and electricity. The key science underlying environmental biotechnology is microbial ecology, which has advanced rapidly in the past 20 or so years through the proliferation of new genomics-based techniques to characterize the communities’ structure and function. The genomic methods provide detailed information that helps us understand what aspects of the microbial community need to be managed to ensure that it provides the desired service. Often, we achieve the management goals through partnering the microorganisms with modern materials and physical/chemical processes. The membrane biofilm reactor and microbial fuel cells offer excellent examples of exciting new technologies that come directly from this kind of partnering.
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      Environmental Biotechnology in Water and Wastewater Treatment

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    http://yetl.yabesh.ir/yetl1/handle/yetl/59546
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    contributor authorBruce E. Rittmann
    date accessioned2017-05-08T21:41:32Z
    date available2017-05-08T21:41:32Z
    date copyrightApril 2010
    date issued2010
    identifier other%28asce%29ee%2E1943-7870%2E0000148.pdf
    identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/59546
    description abstractEnvironmental biotechnology “manages microbial communities to provide services to society.” The key services today include detoxifying contaminated water and soil to reclaim lost resources and converting diffuse energy in biomass to forms easily used by society. Two timely examples are the reduction of oxidized water contaminants (e.g., nitrate, perchlorate, selenate, and chlorinated solvents) and the production of methane, hydrogen, and electricity. The key science underlying environmental biotechnology is microbial ecology, which has advanced rapidly in the past 20 or so years through the proliferation of new genomics-based techniques to characterize the communities’ structure and function. The genomic methods provide detailed information that helps us understand what aspects of the microbial community need to be managed to ensure that it provides the desired service. Often, we achieve the management goals through partnering the microorganisms with modern materials and physical/chemical processes. The membrane biofilm reactor and microbial fuel cells offer excellent examples of exciting new technologies that come directly from this kind of partnering.
    publisherAmerican Society of Civil Engineers
    titleEnvironmental Biotechnology in Water and Wastewater Treatment
    typeJournal Paper
    journal volume136
    journal issue4
    journal titleJournal of Environmental Engineering
    identifier doi10.1061/(ASCE)EE.1943-7870.0000140
    treeJournal of Environmental Engineering:;2010:;Volume ( 136 ):;issue: 004
    contenttypeFulltext
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