Environmental Engineering Reference
In-Depth Information
tions. Bioresour Technol 165:355-364. doi:10.1016/j.
biortech.2014.03.048
Virdis B, Rabaey K, Yuan Z, Keller J (2008) Micro-
bial fuel cells for simultaneous carbon and nitrogen
removal. Water Res 42:3013-3024
Wang X, Cheng S, Feng Y, Merrill MD, Saito T, Logan
BE (2009) The use of carbon mesh anodes and the
effect of different pretreatment methods on power pro-
duction in microbial fuel cells. Environ Sci Technol
43:6870-6874
Wen Q, Kong F, Zheng H, Cao D, Ren Y, Yin J (2011)
Electricity generation from synthetic penicillin waste-
water in an air-cathode single chamber microbial fuel
cell. Chem Eng J 168:572-576
Werner CM, Logan BE, Saikaly PE, Amy GL (2013)
Wastewater treatment, energy recovery and desali-
nation using a forward osmosis membrane in an air-
cathode microbial osmotic fuel cell. J Membrane Sci
428:116-122
Wilk IJ, Altmann RS, Berg JD (1987) Antimicrobial activ-
ity of electrolyzed saline solutions. Sci Total Environ
63:191-197
Yang F, Ren L, Pu Y, Logan BE (2013) Electricity gen-
eration from fermented primary sludge using single-
chamber air-cathode microbial fuel cells. Bioresour
Technol 128:784-787
Yazdi RH, Christy AD, Dehority BA, Morrison M, Yu
Z, Tuovinen OH (2007) Electricity generation from
cellulose by rumen microorganisms in microbial fuel
cells. Biotechnol Bioeng 97:1398-1407
Yemashova N, Kalyuzhnyi S (2006) Microbial conver-
sion of selected azo dyes and their breakdown prod-
ucts. Water Sci Technol 53(11):163-171
Zhang Y, Angelidaki I (2013) A new method for in-situ
nitrate removal from groundwater using submerged
microbial desalination-denitrification cell (SMDDC).
Water Res 47(5):1827-1836
Zhang B, He Z (2012) Energy production, use and saving
in a bioelectrochemical desalination system. RSC Adv
2(28):10673-10679
Zhang B, He Z (2013) Improving water desalination by
hydraulically coupling an osmotic microbial fuel cell
with a microbial desalination cell. J Membrane Sci
441:18-24
Zhang JN, Zhao QL, You SJ, Jiang JQ, Ren NQ (2008)
Continuous electricity production from leachate in a
novel upflow air-cathode membrane-free microbial
fuel cell. Water Sci Technol 57:1017-1021
Zhang B, Zhao H, Zhou S, Shi C, Wang C, Ni J (2009)
A novel UASB-MFC-BAF integrated system for high
strength molasses wastewater treatment and bioelec-
tricity generation. Bioresour Technol 100:5687-93
Zhang C, Li M, Liu G, Luo H, Zhang R (2009) Pyridine
degradation in the microbial fuel cell. J Hazard Mater
172:465-471
Zhang G, Zhao Q, Jiao Y, Wang K, Lee D-J, Ren N (2012)
Biocathode microbial fuel cell for efficient electric-
ity recovery from dairy manure. Biosens Bioelectron
31:537-543
microbial fuel cell-coupled system. J Power Sources
191:338-343
Thrash JC, Van Trump JI, Weber KA, Miller E, Achen-
bach LA, Coates JD (2007) Electrochemical stimula-
tion of microbial perchlorate reduction. Environ Sci
Technol 41:1740-1746
Torres CI (2014) On the importance of identifying, char-
acterizing, and predicting fundamental phenomena
towards microbial electrochemistry applications. Curr
Opin Biotech 27:107-114
Van der Zee FP, Villaverde S (2005) Combined anaerobic-
aerobic treatment of azo dyes—a short review of bio-
reactor studies. Water Res 39:1425-1440
Velvizhi G, Venkata Mohan S (2011) Biocatalyst behav-
ior under self-induced electrogenic microenvironment
in comparison with anaerobic treatment: evaluation
with pharmaceutical wastewater for multi-pollutant
removal. Bioresour Technol 102:10784-10793
Venkata Mohan S, Chandrasekhar K (2011) Self-induced
bio-potential and graphite electron accepting condi-
tions enhances petroleum sludge degradation in bio-
electrochemical system with simultaneous power
generation. Bioresour Technol 102:9532-9541
Venkata Mohan S, Srikanth S (2011) Enhanced waste-
water treatment efficiency through microbially
catalyzed oxidation and reduction: synergistic effect
of biocathode microenvironment. Bioresour Technol
102(22):10210-10220
Venkata Mohan S, Srikanth S, Sarma PN (2009a) Non-
catalyzed microbial fuel cell (MFC) with open air
cathode for bioelectricity generation during acido-
genic wastewater treatment. Bioelectrochemistry
75:130-135
Venkata Mohan S, Raghavulu SV, Peri D, Sarma PN
(2009b) Integrated function of microbial fuel cell
(MFC) as bio-electrochemical treatment system asso-
ciated with bioelectricity generation under higher sub-
strate load. Biosens Bioelectron 24:2021-2027
Venkata Mohan S, Mohanakrishna G, Velvizhi G, Babu
VL, Sarma PN (2010a) Bio-catalyzed electrochemical
treatment of real field dairy wastewater with simulta-
neous power generation. Biochem Eng J 51(1):32-39
Venkata Mohan S, Mohanakrishna G, Sarma PN (2010b)
Composite vegetable waste as renewable resource for
bioelectricity generation through non-catalyzed open-
air cathode microbial fuel cell. Bioresour Technol
101:970-976
Venkata Mohan S, Suresh Babu P, Srikanth S (2013) Azo
dye remediation in periodic discontinuous batch mode
operation: evaluation of metabolic shifts of the biocat-
alyst under aerobic, anaerobic and anoxic conditions.
Sep Purif Technol 118:196-208
Venkata Mohan S, Velvizhi G, Lenin Babu M, Srikanth S
(2014a) Microbial catalyzed electrochemical systems:
Critical factors and Recent advancements. Ren Sus
Energy Reviews 165:355-364
Venkata Mohan S, Velvizhi G, Vamshi Krishna K, Lenin
Babu M (2014b) Microbial catalyzed electrochemi-
cal systems: A bio-factory with multi-facet applica-
Search WWH ::




Custom Search