Development of a nutrient recipe for enhancing methane release from coal in the Illinois basin

International Journal of Coal Geology - Tập 187 - Trang 11-19 - 2018
Ji Zhang1, Zheting Bi1, Yanna Liang1,2
1Department of Civil and Environmental Engineering, 1230 Lincoln Drive, Southern Illinois University Carbondale, Carbondale, IL 62901, USA
2Department of Environmental and Sustainable Engineering, 1400 Washington Ave, State University of New York at Albany, Albany, NY 12222, USA

Tài liệu tham khảo

Alkaya, 2011, Anaerobic acidification of sugar-beet processing wastes: effect of operational parameters, Biomass Bioenergy, 35, 32, 10.1016/j.biombioe.2010.08.002 Barnhart, 2013, Investigation of coal-associated bacterial and archaeal populations from a diffusive microbial sampler (DMS), Int. J. Coal Geol., 115, 64, 10.1016/j.coal.2013.03.006 Bi, 2017, A formation water-based nutrient recipe for potentially increasing methane release from coal in situ, Fuel, 209, 498, 10.1016/j.fuel.2017.08.008 Bonin, 2006, 231 Bumpus, 1998, Biomimetic solubilization of a low rank coal: implications for its use in methane production, Energy Fuel, 12, 664, 10.1021/ef9701596 Demir, 2004 Demirel, 2011, Trace element requirements of agricultural biogas digesters during biological conversion of renewable biomass to methane, Biomass Bioenergy, 35, 992, 10.1016/j.biombioe.2010.12.022 Eble, 2005 EIA, 2015 Faiz, 2006, Significance of microbial activity in Australian coal bed methane reservoirs—a review, Bull. Can. Petrol. Geol., 54, 261, 10.2113/gscpgbull.54.3.261 Feng, 2014, Enhanced anaerobic digestion of waste activated sludge digestion by the addition of zero valent iron, Water Res., 52, 242, 10.1016/j.watres.2013.10.072 Formolo, 2008, Biodegradation of sedimentary organic matter associated with coalbed methane in the Powder River and San Juan Basins, USA, Int. J. Coal Geol., 76, 86, 10.1016/j.coal.2008.03.005 Gao, 2013, Microbial degradation of sedimentary organic matter associated with shale gas and coalbed methane in eastern Illinois Basin (Indiana), USA, Int. J. Coal Geol., 107, 152, 10.1016/j.coal.2012.09.002 Green, 2008, Characterization of a methanogenic consortium enriched from a coalbed methane well in the Powder River Basin, USA, Int. J. Coal Geol., 76, 34, 10.1016/j.coal.2008.05.001 Guo, 2014, A contribution of hydrogenotrophic methanogenesis to the biogenic coal bed methane reserves of Southern Qinshui Basin, China, Appl. Microbiol. Biotechnol., 98, 9083, 10.1007/s00253-014-5908-z Haenel, 1992, Recent progress in coal structure research, Fuel, 71, 1211, 10.1016/0016-2361(92)90046-Q Harris, 2008, Microbial and chemical factors influencing methane production in laboratory incubations of low-rank subsurface coals, Int. J. Coal Geol., 76, 46, 10.1016/j.coal.2008.05.019 Jones, 2010, Stimulation of methane generation from nonproductive coal by addition of nutrients or a microbial consortium, Appl. Environ. Microbiol., 76, 7013, 10.1128/AEM.00728-10 Kronkosky, 2009 Liu, 2012, Optimization of anaerobic acidogenesis by adding Fe 0 powder to enhance anaerobic wastewater treatment, Chem. Eng. J., 192, 179, 10.1016/j.cej.2012.03.044 Liu, 2012, Enhanced azo dye wastewater treatment in a two-stage anaerobic system with Fe 0 dosing, Bioresour. Technol., 121, 148, 10.1016/j.biortech.2012.06.115 Meng, 2013, Adding Fe 0 powder to enhance the anaerobic conversion of propionate to acetate, Biochem. Eng. J., 73, 80, 10.1016/j.bej.2013.02.004 Moore, 2012, Coalbed methane: a review, Int. J. Coal Geol., 101, 36, 10.1016/j.coal.2012.05.011 Morse, 2007 Pandey, 2016, Changes in gas storage and transport properties of coal as a result of enhanced microbial methane generation, Fuel, 179, 114, 10.1016/j.fuel.2016.03.065 Penner, 2010, Microbial diversity of western Canadian subsurface coal beds and methanogenic coal enrichment cultures, Int. J. Coal Geol., 82, 81, 10.1016/j.coal.2010.02.002 Ritter, 2015, Enhanced microbial coalbed methane generation: a review of research, commercial activity, and remaining challenges, Int. J. Coal Geol., 146, 28, 10.1016/j.coal.2015.04.013 Scott, 1999, Improving coal gas recovery with microbially enhanced coalbed methane, 89 Strąpoć, 2008, Methane-producing microbial community in a coal bed of the Illinois Basin, Appl. Environ. Microbiol., 74, 2424, 10.1128/AEM.02341-07 Takanohashi, 2000, Adsorption and diffusion of alcohol vapors by Argonne premium coals, Energy Fuel, 14, 915, 10.1021/ef000014q Van Voast, 2003, Geochemical signature of formation waters associated with coalbed methane, AAPG Bull., 87, 667, 10.1306/10300201079 Wang, 2010, Enhanced anaerobic biodegradability of real coal gasification wastewater with methanol addition, J. Environ. Sci., 22, 1868, 10.1016/S1001-0742(09)60327-2 Yao, 2009, Preliminary evaluation of the coalbed methane production potential and its geological controls in the Weibei Coalfield, Southeastern Ordos Basin, China, Int. J. Coal Geol., 78, 1, 10.1016/j.coal.2008.09.011 Zhang, 2017, Evaluating approaches for sustaining methane production from coal through biogasification, Fuel, 202, 233, 10.1016/j.fuel.2017.04.037 Zhang, 2011, Performance of a ZVI-UASB reactor for azo dye wastewater treatment, J. Chem. Technol. Biotechnol., 86, 199, 10.1002/jctb.2485 Zhang, 2015, Characterizing microbial communities dedicated for conversion of coal to methane in situ and ex situ, Int. J. Coal Geol., 146, 145, 10.1016/j.coal.2015.05.001 Zhang, 2015, A metaproteomic approach for identifying proteins in anaerobic bioreactors converting coal to methane, Int. J. Coal Geol., 146, 91, 10.1016/j.coal.2015.05.006 Zhang, 2016, Optimization of methane production from bituminous coal through biogasification, Appl. Energy, 183, 31, 10.1016/j.apenergy.2016.08.153 Zhang, 2016, Finding cost-effective nutrient solutions and evaluating environmental conditions for biogasifying bituminous coal to methane ex situ, Appl. Energy, 165, 559, 10.1016/j.apenergy.2015.12.067