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Part II. Research and Technological Advances

Integrated conversion of food waste diluted with sewage into volatile fatty acids through fermentation and electricity through a fuel cell

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Pages 1935-1945 | Published online: 08 Oct 2013

REFERENCES

  • Moroney J, Haeck M. Aeration control. Paper presented at: Energy Management conference, SWIG September 2004.
  • Gallert , C , Henning , A and Winter , J . 2003 . Scale-up of anaerobic digestion of the biowaste fraction from domestic wastes . Water Res , 37 ( 6 ) : 1433 – 1441 . doi: 10.1016/S0043-1354(02)00537-7 (doi:10.1016/S0043-1354(02)00537-7)
  • Angenent , L T and Wrenn , B A . 2008 . “ Optimizing mixed-culture bioprocessing to convert wastes into bioenergy ” . Edited by: Wall , J D , Harwood , C S and Demain , A . 179 – 194 . Herndon, VA : ASM Press . Bioenergy
  • Arvanitoyannis , I S and Varzakas , T H . 2008 . Vegetable waste treatment: comparison and critical presentation of methodologies . Crit Rev Food Sci Nutr , 48 : 205 – 247 . doi: 10.1080/10408390701279798 (doi:10.1080/10408390701279798)
  • Kosseva , M R . 2009 . Processing of food wastes . Adv Food Nutr Res , 58 : 57 – 136 . doi: 10.1016/S1043-4526(09)58003-5 (doi:10.1016/S1043-4526(09)58003-5)
  • Hájek , M and Skopal , F . 2010 . Treatment of glycerol phase formed by biodiesel production . Bioresour Technol , 101 ( 9 ) : 3242 – 3245 . doi: 10.1016/j.biortech.2009.12.094 (doi:10.1016/j.biortech.2009.12.094)
  • Pant , D and Adholeya , A . 2009 . Nitrogen removal from biomethanated spentwash using hydroponic treatment followed by fungal decolorization . Environ Eng Sci , 26 ( 5 ) : 559 – 565 . doi: 10.1089/ees.2007.0328 (doi:10.1089/ees.2007.0328)
  • Marchaim , U . 1992 . “ Biogas processes for sustainable development ” . In Food and Agriculture Organization of the United Nations , Rome, Italy : Publications Division .
  • Oh , S and Logan , B . 2005 . Hydrogen and electricity production from a food processing wastewater using fermentation and microbial fuel cell technologies . Water Res , 39 : 4673 – 4682 . doi: 10.1016/j.watres.2005.09.019 (doi:10.1016/j.watres.2005.09.019)
  • Lovley , D R . 2008 . “ The microbe electric: Conversion of organic matter to electricity ” . In Curr Opin Biotechnol Vol. 19 , 564 – 571 .
  • Pant , D , Van Bogaert , G , Diels , L and Vanbroekhoven , K . 2010 . A review of the substrates used in microbial fuel cells (MFCs) for sustainable energy production . Bioresour Technol , 101 : 1533 – 1543 . doi: 10.1016/j.biortech.2009.10.017 (doi:10.1016/j.biortech.2009.10.017)
  • Calli , B , Chung , L-C , Arslan , D and Vanbroekhoven , K . 2009 . H2 production potential in thermophilic mixed fermentation . J Environ Sci Health Part A , 44 : 78 – 86 . doi: 10.1080/10934520802515418 (doi:10.1080/10934520802515418)
  • Pant , D , Van Bogaert , G , Porto-Carrero , C , Diels , L and Vanbroekhoven , K . 2011 . Anode and cathode materials characterization for a microbial fuel cell in half cell configuration . Water Sci Technol , 63 : 2457 – 2461 . doi: 10.2166/wst.2011.217 (doi:10.2166/wst.2011.217)
  • Zhang , F , Cheng , S , Pant , D , Van Bogaert , D and Logan , B E . 2009 . Power generation using an activated carbon and metal mesh cathode in a microbial fuel cell . Electrochem Commun , 11 : 2177 – 2179 . doi: 10.1016/j.elecom.2009.09.024 (doi:10.1016/j.elecom.2009.09.024)
  • Pant , D , Van Bogaert , G , De Smet , M , Diels , L and Vanbroekhoven , K . 2010 . Use of novel permeable membrane and air cathodes in acetate microbial fuel cell . Electrochim Acta , 55 : 7709 – 7715 . doi: 10.1016/j.electacta.2009.11.086 (doi:10.1016/j.electacta.2009.11.086)
  • Pant , D , Singh , A , Van Bogaert , G , Alvarez Gallego , Y , Diels , L and Vanbroekhoven , K . 2011 . An introduction to the life cycle assessment (LCA) of bioelectrochemical systems (BES) for sustainable energy and product generation: relevance and key aspects . Renewable Sustainable Energy Rev , 15 : 1305 – 1313 . doi: 10.1016/j.rser.2010.10.005 (doi:10.1016/j.rser.2010.10.005)
  • Van Hecke , W , Vandezande , P , Claes , S , Vangeel , S , Beckers , H , Diels , L and Wever , H D . 2012 . Integrated bioprocess for long-term continuous cultivation of Clostridium acetobutylicum coupled to pervaporation with PDMS composite membranes . Bioresour Technol , 111 : 368 – 377 . doi: 10.1016/j.biortech.2012.02.043 (doi:10.1016/j.biortech.2012.02.043)
  • Greenberg , A E , Clesceri , L SE and Eaton , A D . 1998 . “ Standard methods for the examination of water and waste water ” . In , 18 , Washington : American Public Health Association (A.P.H.A.) .
  • Logan , B E , Hamelers , B , Rozendal , R , Schroder , U , Keller , J , Freguia , S , Aelterman , P , Verstraete , W and Rabaey , K . 2006 . Microbial fuel cells: methodology and technology . Environ Sci Technol , 40 : 5181 – 5192 . doi: 10.1021/es0605016 (doi:10.1021/es0605016)
  • Argelier , S , Delgenes , J Ph and Moletta , R . 1998 . Design of acidogenic reactors for the anaerobic treatment of the organic fraction of solid waste . Bioprocess Eng , 18 : 309 – 315 . doi: 10.1007/s004490050448 (doi:10.1007/s004490050448)
  • Kim , I S , Hwang , M H , Jang , N J , Hyun , S H and Lee , S T . 2004 . Effect of low pH on the activity of hydrogen utilizing methanogen in bio-hydrogen process . Int J Hydrogen Energy , 29 : 1133 – 1140 .
  • Gomez , X , Moran , A , Cuetos , M J and Sanchez , M E . 2006 . “ The production of hydrogen by dark fermentation of municipal solid wastes and slaughterhouse waste: A two-phase process ” . In J Power Sources Vol. 157 , 727 – 732 .
  • Lim , S-J , Kim , B-J , Jeong , C-M , Choi , J , Ahn , Y H and Chang , H N . 2008 . Anaerobic organic acid production of food waste in once-a-day feeding and drawing of bioreactor . Bioresour Technol , 99 : 7866 – 7874 . doi: 10.1016/j.biortech.2007.06.028 (doi:10.1016/j.biortech.2007.06.028)
  • Calli , B , Zhao , J , Nijssen , E and Vanbroekhoven , K . 2008 . Significance of acetogenic H2 consumption in dark fermentation and effectiveness of pH . Water Sci Technol , 57 ( 6 ) : 809 – 814 . (doi:10.2166/wst.2008.089)
  • Bartacek , J , Zabranska , J and Lens , P NL . 2007 . Developments and constraints in fermentative hydrogen production . Biofuels Bioprod Biorefin , 1 : 201 – 214 . doi: 10.1002/bbb.17 (doi:10.1002/bbb.17)
  • Shin , H-S and Youn , J-H . 2005 . Conversion of food waste into hydrogen by thermophilic acidogenesis . Biodegradation , 16 : 33 – 44 . doi: 10.1007/s10531-004-0377-9 (doi:10.1007/s10531-004-0377-9)
  • Ueno , Y , Fukui , H and Goto , M . 2007 . Operation of a two-stage fermentation process producing hydrogen and methane from organic waste . Environ Sci Technol , 41 : 1413 – 1419 . doi: 10.1021/es062127f (doi:10.1021/es062127f)
  • Li , S-L , Kuo , S-C , Lin , J-S , Lee , Z-K , Wang , Y-H and Chang , S-S . 2008 . Process performance evaluation of intermittent-continuous stirred tank reactor for anaerobic hydrogen fermentation with kitchen waste . Int J Hydrogen Energy , 33 : 1522 – 1531 . doi: 10.1016/j.ijhydene.2007.09.049 (doi:10.1016/j.ijhydene.2007.09.049)
  • Gomez , X , Cuetos , M J , Prieto , J I and Moran , A . 2009 . Bio-hydrogen production from waste fermentation: mixing and static conditions . Renewable Energy , 34 : 970 – 975 . doi: 10.1016/j.renene.2008.08.011 (doi:10.1016/j.renene.2008.08.011)
  • Hallenbeck , P C and Ghosh , D . 2009 . Advances in fermentative biohydrogen production: The way forward? Trends Biotechnol . 27 ( 5 ) : 287 – 297 .
  • Mohanakrishna , G , Venkata Mohan , S and Sarma , P N . 2010 . Utilizing acid-rich effluents of fermentative hydrogen production process as substrate for harnessing bioelectricity: an integrative approach . Int J Hydrogen Energy , 35 : 3440 – 3449 . doi: 10.1016/j.ijhydene.2010.01.084 (doi:10.1016/j.ijhydene.2010.01.084)
  • Sevda , S , Dominguez-Benetton , X , Vanborekhoven , K , De Wever , H , Sreekrishnan , T R and Pant , D . 2013 . High strength wastewater treatment accompanied by power generation using air cathode microbial fuel cell . Appl Energy , 105 : 194 – 206 . doi: 10.1016/j.apenergy.2012.12.037 (doi:10.1016/j.apenergy.2012.12.037)
  • Freguia , S , The , E H , Boon , N , Leung , K M , Keller , J and Rabaey , K . 2010 . Microbial fuel cells operating on mixed fatty acids . Bioresour Technol , 101 : 1233 – 1238 . (doi:10.1016/j.biortech.2009.09.054)
  • Teng , S-X , Tong , Z-H , Li , W-W , Wang , S-G , Sheng , G-P , Shi , X-Y , Liu , X-W and Yu , H-Q . 2010 . Electricity generation from mixed volatile fatty acids using microbial fuel cells . Appl Microbiol Biotechnol , 87 : 2365 – 2372 . doi: 10.1007/s00253-010-2746-5 (doi:10.1007/s00253-010-2746-5)
  • Sharma , B and Li , B . 2010 . Optimizing energy harvest in wastewater treatment by combining anaerobic hydrogen producing biofermentor (HPB) and microbial fuel cell (MFC . Int J Hydrogen Energy , 35 : 3789 – 3797 . doi: 10.1016/j.ijhydene.2010.01.042 (doi:10.1016/j.ijhydene.2010.01.042)
  • Wang , A , Sun , D , Cao , G , Wang , H , Ren , N , Wu , W M and Logan , B E . 2011 . Integrated hydrogen production process from cellulose by combining dark fermentation, microbial fuel cells, and a microbial electrolysis cell . Bioresour Technol , 102 : 4137 – 4143 . doi: 10.1016/j.biortech.2010.10.137 (doi:10.1016/j.biortech.2010.10.137)
  • Rozendal , R A , Hamelers , H VM , Rabaey , K , Keller , J and Buisman , C JN . 2008 . Towards practical implementation of bioelectrochemical wastewater treatment . Trends Biotechnol , 26 : 450 – 459 . doi: 10.1016/j.tibtech.2008.04.008 (doi:10.1016/j.tibtech.2008.04.008)
  • Dornburg , V , Hermann , B G and Patel , M K . 2008 . Scenario projections for future market potentials of biobased bulk chemicals . Environ Sci Technol , 42 : 2261 – 2267 . doi: 10.1021/es0709167 (doi:10.1021/es0709167)
  • Nowicki , P , Banse , M , Bolck , C , Bos , H and Scott , E . 2008 . “ Biobased economy state-of-the-art-assessment ” . The Hague : The Agricultural Economics Research Institute . Report 6.08.01

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