000 06029cam a2200541Mu 4500
001 9780429487118
003 FlBoTFG
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006 m d
007 cr cnu---unuuu
008 200111s2019 xx o 000 0 eng d
040 _aOCoLC-P
_beng
_cOCoLC-P
020 _a9780429945007
020 _a0429945000
020 _a9780429487118
_q(electronic bk.)
020 _a0429487118
_q(electronic bk.)
020 _a9780429944994
_q(electronic bk. : EPUB)
020 _a0429944993
_q(electronic bk. : EPUB)
035 _a(OCoLC)1135664188
035 _a(OCoLC-P)1135664188
050 4 _aQD553
072 7 _aSCI
_x045000
_2bisacsh
072 7 _aSCI
_x086000
_2bisacsh
072 7 _aTEC
_x009010
_2bisacsh
072 7 _aTH
_2bicssc
082 0 4 _a541.37
_223
245 0 0 _aMicrobial Electrochemical Technologies
_h[electronic resource].
260 _aMilton :
_bCRC Press LLC,
_c2019.
300 _a1 online resource (519 p.)
500 _aDescription based upon print version of record.
505 0 _aCover -- Title Page -- Copyright Page -- Preface -- Table of Contents -- PART-I: Fundamentals of Microbial Electrochemistry: Novel Microbial Pathways and Electron Transfer Mechanisms -- 1: Extracellular Electron Transport in Geobacter and Shewanella: A Comparative Description -- 2: Electrochemical Impedance Spectroscopy: A Noninvasive Tool for Performance Assessment of Bioelectrochemical Systems -- 3: Understanding Bioelectrochemical Limitations via Impedance Spectroscopy
505 8 _aPART-II: Optimizing Microbial Electrochemical Systems: Microbial Ecology of Biofilms and Electroactive Microorganisms Strain Improvement -- 4: Steering Redox Metabolism in Pseudomonas putida with Microbial Electrochemical Technologies -- 5: Monitoring Electron Transfer Rates of Electrode-Respiring Cells -- 6: Electrode-Assisted Fermentations: Their Limitations and Future Research Directions -- 7: Challenges and Opportunities of Microbial Symbiosis for Electrosynthesis Applications
505 8 _aPART-III: Applications of Microbial Electrochemical Systems in Wastewater Treatment, Bioenergy, Biosensors and Electrosynthesis -- 8: Microbial Electrolysis Cell (MEC): A Versatile Technology for Hydrogen, Value-added Chemicals Production and Wastewater Treatment -- 9: Mechanisms of Heavy Metal Separation in Bioelectrochemical Systems and Relative Significance of Precipitation -- 10: Photosynthetic Algal Microbial Fuel Cell for Simultaneous NH3-N Removal and Bioelectricity Generation -- 11: Nutrients Removal and Recovery in Bioelectrochemical Systems
505 8 _a12: Microbial Fuel Cells: Treatment Efficiency and Comparative Bioelectricity Production from Various Wastewaters -- 13: Bioelectrochemical Systems for Sustainable Groundwater Denitrification and Removal of Arsenic and Chromium -- 14: An Overview of Carbon and Nanoparticles Application in Bioelectrochemical System for Energy Production and Resource Recovery -- 15: Opportunities for Hydrogen Production from Urban/Industrial Wastewater in Bioelectrochemical Systems -- 16: Microbial Fuel Cell Sensors for Water and Wastewater Monitoring
505 8 _a17: Bioelectrochemical Enhancement and Intensification of Methane Production from Anaerobic Digestion -- 18: Fluidized Bed Electrodes in Microbial Electrochemistry -- 19: Electricity Production from Carbon Monoxide and Syngas in a Thermophilic Microbial Fuel Cell -- 20: Microbial Electrochemical Technology Drives Metal Recovery -- 21: Plant-Microbial Fuel Cells Serve the Environment and People: Breakthroughs Leading to Emerging Applications -- PART-IV: Applications of Microbial Electrochemical Systems in Bioremediation
500 _a22: Degradation and Mineralization of Recalcitrant Compounds in Bioelectrochemical Systems
520 _aThis book encompasses the most updated and recent account of research and implementation of Microbial Electrochemical Technologies (METs) from pioneers and experienced researchers in the field who have been workingon the interfacebetween electrochemistry and microbiology/biotechnology for many years. It provides a holistic view of the METs, detailing the functional mechanisms, operational configurations, influencing factors governing the reaction process and integration strategies. The book not only provides historical perspectives of the technology and its evolution over the years but also the most recent examples of up-scaling and near future commercialization, making it a must-read for researchers, students, industry practitioners and science enthusiasts. Key Features: Introduces novel technologies that can impact the future infrastructure at the water-energy nexus. Outlines methodologies development and application of microbial electrochemical technologies and details out the illustrations of microbial and electrochemical concepts. Reviews applications across a wide variety of scales, from power generation in the laboratory to approaches. Discusses techniques such as molecular biology and mathematical modeling; the future development of this promising technology; and the role of the system components for the implementation of bioelectrochemical technologies for practical utility. Explores key challenges for implementing these systems and compares them to similar renewable energy technologies, including their efficiency, scalability, system lifetimes, and reliability.
588 _aOCLC-licensed vendor bibliographic record.
650 7 _aSCIENCE / Life Sciences / Biology / Microbiology
_2bisacsh
650 7 _aSCIENCE / Life Sciences / General
_2bisacsh
650 7 _aTECHNOLOGY / Engineering / Chemical & Biochemical
_2bisacsh
650 0 _aBioelectrochemistry.
650 0 _aMicrobiological chemistry.
700 1 _aTiquia-Arashiro, Sonia M.
700 1 _aPant, Deepak.
856 4 0 _3Taylor & Francis
_uhttps://www.taylorfrancis.com/books/9780429487118
856 4 2 _3OCLC metadata license agreement
_uhttp://www.oclc.org/content/dam/oclc/forms/terms/vbrl-201703.pdf
999 _c70662
_d70662