A Case Study on Management of Coal Seam Gas By-Product Water
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A Case Study on Management of Coal Seam Gas By-Product Water

Authors: Mojibul Sajjad, Mohammad G. Rasul, Md. Sharif Imam Ibne Amir

Abstract:

The rate of natural gas dissociation from the Coal Matrix depends on depressurization of reservoir through removing of the cleat water from the coal seam. These waters are similar to brine and aged of very long years. For improving the connectivity through fracking /fracturing, high pressure liquids are pumped off inside the coal body. A significant quantity of accumulated water, a combined mixture of cleat water and fracking fluids (back flow water) is pumped out through gas well. In Queensland, Australia Coal Seam Gas (CSG) industry is in booming state and estimated of 30,000 wells would be active for CSG production forecasting life span of 30 years. Integrated water management along with water softening programs is practiced for subsequent treatment and later on discharge to nearby surface water catchment. Water treatment is an important part of the CSG industry. A case study on a CSG site and review on the test results are discussed for assessing the Standards & Practices for management of CSG by-product water and their subsequent disposal activities. This study was directed toward (i) water management and softening process in Spring Gully CSG field, (ii) Comparative analysis on experimental study and standards and (iii) Disposal of the treated water. This study also aimed for alternative usages and their impact on vegetation, living species as well as long term effects.

Keywords: Coal Seam Gas (CSG), Cleat Water, Hydro-Fracking, Desalination, Reverse Osmosis.

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1099056

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References:


[1] Connell, L.D., Couple Flow and Geomechanical Process during Gas Production from Coal Seams. International Journal of Coal Geology, 2009. 79: p. 18-28.
[2] Australia, G., Coal Seam Gas fact Sheet, G. Australia, Editor. 2013: Australia.
[3] Esterle, J. Introduction to Coal Geology for Gas Reservoir Characterization.
[4] Jamshidi, M. and K. Jessen, Water Production in Enhanced Coalbed Methane Operations. Journal of Petroleum Science and Engineering 2012. 92–93: p. 56–64.
[5] Walton, I. and j. Mclennan, the Role of Natural Fractures in Shale Gas Production, in the Role of Natural Fractures in Shale Gas Production. Energy and Geoscience Institute, University of Utah, USA.
[6] Connell, L., Predicting CSM Field Performance, Reservoir Simulation for Field Optimization and Production Forecasting.
[7] What is Coal Seam Gas? 2012; Available from: www.csiro.au.
[8] Ward, C., R., Analysis and Significance of Mineral Matter in Coal Seams. International Journal of Coal Geology 2002. 50: p. 135- 168.
[9] Burial Process and Coal Formation. Available from: http://smtc.uwyo.edu/coal/swamp.
[10] Berger, K.C., Forecasting Coal Seam Gas Water Production in Queensland’s Surat and Southern Bowen Basins - Summary. 2012.
[11] Drewes, J.E., an Integrated Framework for Treatment and Management of Produced Water. 2011.
[12] Plumlee, M.H.e.a., Coalbed Methane Produced Water Screening Tool for Treatment Technology and Beneficial use. Journal of Unconventional Oil and Gas Resources 2014. 5: p. 22-34.
[13] MacLellan, G. and K. MacNeil Environmental Best Management Practices for Formation Water from Coal Bed Methane Exploration and Production Activities. 2008.
[14] Guidelines for Water Reuse, in EPA/600/R-12/618, U.S.E.P. Agency, Editor. 2012, U.S. Agency for International Development: Washington DC.
[15] Australian Guidelines for Water Quality Monitoring and Reporting, in National Water Quality Management Strategy. 2000.
[16] Intergovernmental Agreement on a National Water Initiative, The Commonwealth of Australia and the Governments of New South Wales,Victoria, Queensland, South Australia, the Australian Capital Territory and the Northern Territory., C.O.A.G.C. (2004), Editor. 2004: Australia.
[17] APPEA. Fraccing.2011; http://www.appea.com.au/industry/csg/fraccing.
[18] Averina, A., Management of Coal Seam Gas (CSG) By-Product Water in Queensland, in Faculty of Sciences, Engineering and Health. 2007, Central Queensland University, Australia.
[19] NHMRC, Australian Drinking Water Guidelines, as part of National Water Quality Management Strategy N.H.a.M.R. Council, Editor. 2004: Canberra.
[20] Khan, S., Drinking Water Through Recycling: The benefits and Costs of Supplying Direct to the Distribution System. , in a report of a study by the Australian Academy of Technological Sciences and Engineering (ATSE). 2013: Australia.
[21] ARMCANZ, A., Australian and New Zealand Guidelines for Fresh and Marine Water Quality, as part of National Water Quality Management Strategy, , Australia and New Zealand Environment and Conservation Council & Agriculture and Resource Management Council of Australia and New Zealand, Editor. 2000, ANZECC & ARMCANZ: Canberra.