Performance of straw-fed microbial fuel cells with mixed rumen microorganisms by using different catholytes
Tài liệu tham khảo
Niessen, 2005, Gaining electricity from in situ oxidation of hydrogen produced by fermentative cellulose degradation, Lett Appl Microbiol, 41, 286, 10.1111/j.1472-765X.2005.01742.x
Hobson, 1997, 10
Krause, 2003, Opportunities to improve fiber degradation in the rumen: microbiology, ecology, and genomics, FEMS Microbiol Rev, 27, 663, 10.1016/S0168-6445(03)00072-X
Offner, 2006, Thermodynamic modeling of ruminal fermentations, Anim Res, 55, 343, 10.1051/animres:2006021
Rismani-Yazdy, 2007, Electricity generation from cellulose by rumen microorganisms in microbial fuel cells, Biotechnol Bioeng, 97, 1398, 10.1002/bit.21366
Chen, 2010
Zang, 2010, Direct electricity recovery from Canna indica by an air-cathode microbial fuel cell inoculated with rumen microorganisms, Environ Sci Technol, 44, 2715, 10.1021/es902956e
Wang, 2011, Effect of biometric flow channel on the power generation at different Reynolds numbers in the single chamber of rumen microbial fuel cells (RMFCs), Int J Hydrog Energy, 36, 9242, 10.1016/j.ijhydene.2011.04.208
Rezaei, 2008, Enzymatic hydrolysis of cellulose coupled with electricity generation in a microbial fuel cell, Biotechnol Bioeng, 101, 1163, 10.1002/bit.22015
Logan, 2006, Microbial fuel cells: methodology and technology, Environ Sci Technol, 40, 5181, 10.1021/es0605016
Pandit, 2011, Performance of electron acceptors in catholyte of a two-chambered microbial fuel cell using anion exchange membrane, Bioresource Technol, 102, 2136, 10.1016/j.biortech.2010.11.038
Rebaey, 2003, A microbial fuel cell capable of converting glucose to electricity at high rate and efficiency, Biotechnol Lett, 25, 1531, 10.1023/A:1025484009367
Rebaey, 2004, Biofuel cells select for microbial consortia that self-mediate electron transfer, Appl Environ Microbiol, 70, 5373, 10.1128/AEM.70.9.5373-5382.2004
Marden, 2005, A new device for measuring kinetics of ruminal pH and redox potential in dairy cattle, J Dairy Sci, 88, 277, 10.3168/jds.S0022-0302(05)72685-0
Bolker, 1993, Chaos and biological complexity in measles dynamics, Proc R Soc Lond B, 251, 1471
Wang, 2010, Prediction of nonlinear system by chaotic modular, J Mar Sci Technol, 18, 345
1998
Mackie, 1990, Recent advances in rumen microbial ecology and metabolism: potential impact on nutrient output, J Dairy Sci, 73, 2971, 10.3168/jds.S0022-0302(90)78986-2
Mishra, 1970, Effect of diet and ambient temperature-humidity on ruminal pH, oxidation reduction potential, ammonia and lactic acid in lactating cows, J Anim Sci, 30, 1023, 10.2527/jas1970.3061023x
Barry, 1977, Rumen fermentation studies on two contrasting diets. 1. Some characteristics of the in vitro fermentation with special reference to the composition of the gas phase, oxidation/reduction state and volatile fatty acid proportions, J Agric Sci Camb, 89, 183, 10.1017/S0021859600027362
You, 2006, A microbial fuel cell using permanganate as the cathodic electron acceptor, J Power Sources, 162, 1409, 10.1016/j.jpowsour.2006.07.063
Rezaei, 2007, Substrate-enhanced microbial fuel cells for improved remote power generation from sediment-based systems, Environ Sci Technol, 41, 4053, 10.1021/es070426e
Zhang, 2006
Russell, 1997, Energy-yielding and energy-consuming reactions, 246
Rabaey, 2005, Microbial fuel cell: novel biotechnology for energy generation, Trends Biotechnol, 23, 291, 10.1016/j.tibtech.2005.04.008
Wang, 2006, Self-similar analysis on vortex shedding process, J Mech, 22, 263, 10.1017/S1727719100000915