Geochemical characteristics of water produced from CBM wells and implications for commingling CBM production: A case study of the Bide-Santang Basin, western Guizhou, China

Journal of Petroleum Science and Engineering - Tập 159 - Trang 666-678 - 2017
Chen Guo1, Yong Qin2, Yucheng Xia1, Dongmin Ma1, Dong Han3, Yue Chen1, Wei Chen1, Kuo Jian4,5, Lingling Lu1
1College of Geology and Environment, Xi'an University of Science and Technology, Xi'an 710054, China
2Key Laboratory of CBM Resources and Reservoir Formation Process, Ministry of Education, China University of Mining and Technology, Xuzhou 221116, China
3CNOOC EnerTech-Drilling & Production Co, Unconventional Oil & Gas Technology Research Institute, Tianjin 300457, China
4Engineering School of Energy and Materials, Taiyuan University of Science and Technology, Jincheng 048011, China
5Shanxi Key Laboratory of Coal and Coal Measure Gas Geology, Taiyuan 030001, China

Tài liệu tham khảo

Apambire, 1997, Genesis and health implications of fluori-ferous groundwater in the upper regions of Ghana, Environ. Geol., 35, 13, 10.1007/s002540050221 Bakar, 2016, Geochemical multiaquifer assessment of the Huntly coalfield, New Zealand, using a novel chloride-bicarbonate-boron ternary diagram, Int. J. Coal Geol. Cheung, 2009, Produced fluids and shallow groundwater in coalbed methane (CBM) producing regions of Alberta, Canada: trace element and rare earth element geochemistry, Int. J. Coal Geol., 77, 338, 10.1016/j.coal.2008.07.012 Dahm, 2014, Trends in water quality variability for coalbed methane produced water, J. Clean. Prod., 84, 840, 10.1016/j.jclepro.2014.04.033 Dai, 2005, Mineralogy and geochemistry of a late Permian coal in the Dafang Coalfield, Guizhou, China: influence from siliceous and iron-rich calcic hydrothermal fluids, Int. J. Coal Geol., 61, 241, 10.1016/j.coal.2004.09.002 Dai, 2016, Metalliferous coal deposits in East Asia (Primorye of Russia and South China): a review of geodynamic controls and styles of mineralization, Gondwana Res., 29, 60, 10.1016/j.gr.2015.07.001 Dai, 2003, Geochemical and mineralogical anomalies of the late Permian coal in the Zhijin coalfield of southwest China and their volcanic origin, Int. J. Coal Geol., 55, 117, 10.1016/S0166-5162(03)00083-1 Dai, 2005, Concentration and distribution of elements in late permian coals from western Guizhou Province, China, Int. J. Coal Geol., 61, 119, 10.1016/j.coal.2004.07.003 Dastgheib, 2016, Treatment of produced water from an oilfield and selected coal mines in the Illinois Basin, Int. J. Greenh. Gas. Control, 10.1016/j.ijggc.2016.05.002 Edmunds, 2005, Fluoride in natural waters, 301 Engle, 2014, Geochemical evolution of produced waters from hydraulic fracturing of the Marcellus Shale, northern Appalachian Basin: a multivariate compositional data analysis approach, Int. J. Coal Geol., 126, 45, 10.1016/j.coal.2013.11.010 Guo, 2015, 94 Guo, 2011, Sequence stratigraphy and coal accumulation of the Upper Permian in Zhijin-Nayong coalfield of western Guizhou Province, J. Palaeogeogr., 13, 493 Guo, 2014, Coal reservoirs NMR T2 spectrum & gas-water relative permeability characteristics and their controlling factors in Bide-Santang basin, western Guizhou, J. China Univ. Min. Technol., 43, 905 Guo, 2017, Interlayer interference analysis based on trace elements in water produced from coalbed methane wells: a case study of the Upper Permian coal-bearing strata, Bide-Santang Basin, western Guizhou, China, Arab. J. Geosci., 10, 137, 10.1007/s12517-017-2927-y Islam, 2017, Assessment of trace elements of groundwater and their spatial distribution in Rangpur district, Bangladesh. Arab. J. Geosci., 10, 95, 10.1007/s12517-017-2886-3 Jain, 2017, Bioelectrochemical approaches for removal of sulfate, hydrocarbon and salinity from produced water, Chemosphere, 166, 96, 10.1016/j.chemosphere.2016.09.081 Klein, 2008, Molecular sequences derived from Paleocene Fort Union Formation coals vs. associated produced waters: implications for CBM regeneration, Int. J. Coal Geol., 76, 3, 10.1016/j.coal.2008.05.023 Kumar, 2017, Principal component and multivariate statistical approach for evaluation of hydrochemical characterization of fluoride-rich groundwater of Shaslar Vagu watershed, Nalgonda District, India, Arab. J. Geosci., 10, 83, 10.1007/s12517-017-2863-x Larson, 1984 Minier-Matar, 2015, Application of forward osmosis for reducing volume of produced/Process water from oil and gas operations, Desalination, 376, 1, 10.1016/j.desal.2015.08.008 Mondal, 2008, Produced water treatment by nanofiltration and reverse osmosis membranes, J. Membr. Sci., 322, 162, 10.1016/j.memsci.2008.05.039 Munirasu, 2016, Use of membrane technology for oil field and refinery produced water treatment—a review, Process Saf. Environ. Prot., 100, 183, 10.1016/j.psep.2016.01.010 Orem, 2014, Organic substances in produced and formation water from unconventional natural gas extraction in coal and shale, Int. J. Coal Geol., 126, 20, 10.1016/j.coal.2014.01.003 Plumlee, 2014, Coalbed methane produced water screening tool for treatment technology and beneficial use, J. Unconv. Oil Gas Resour., 5, 22, 10.1016/j.juogr.2013.12.002 Qin, 2012, 12 Qin, 2008, On unattached multiple superposed CBM-bearing system: in a case of Shuigonghe syncline, Zhina coalfield, Guizhou. Geol. Rev., 54, 65 Qin, 2014, Source apportionment of produced water and feasibility discrimination of commingling CBM production from wells in Southern Qinshui Basin, J. China Coal Soc., 39, 1892 Rice, 2003, Production waters associated with the Ferron coalbed methane fields, central Utah: chemical and isotopic composition and volumes, Int. J. Coal Geol., 56, 141, 10.1016/S0166-5162(03)00086-7 Rice, 2008, Chemical and stable isotopic evidence for water/rock interaction and biogenic origin of coalbed methane, Fort Union Formation, Powder River Basin, Wyoming and Montana U.S.A, Int. J. Coal Geol., 76, 76, 10.1016/j.coal.2008.05.002 Taulis, 2013, Chemical variability of groundwater samples collected from a coal seam gas exploration well, Maramarua, New Zealand, Water Res., 47, 1021, 10.1016/j.watres.2012.11.003 Uenal, 2012, Trace elements affect methanogenic activity and diversity in enrichments from subsurface coal bed produced water, Front. Microbiol., 3, 550 Van Voast, 2003, Geochemical signature of formation waters associated with coalbed methane, AAPG Bull., 87, 667, 10.1306/10300201079 Wang, 2015, Hydrological control rule on coalbed methane enrichment and high yield in FZ block of Qinshui Basin, Fuel, 140, 568, 10.1016/j.fuel.2014.09.111 Wang, 2011, Sedimentology and sequence stratigraphy of the Lopinggian (Late permian) coal measures in southwestern China, Int. J. Coal Geol., 85, 168, 10.1016/j.coal.2010.11.003 Yang, 2011, 20 Zhang, 2015, Stable isotope characteristics of CBM co-produced water and implications for CBM development: the example of the Shizhuangnan block in the southern Qinshui Basin, China, J. Nat. Gas Sci. Eng., 27, 1400, 10.1016/j.jngse.2015.10.006 Zhang, 2016, Study of hydrochemical characteristics of CBM co-produced water of the Shizhuangnan Block in the southern Qinshui Basin, China, on its implication of CBM development, Int. J. Coal Geol., 159, 169, 10.1016/j.coal.2016.04.003 Zhao, 2005, 135