A comparative study of dust control practices in Chinese and Australian longwall coal mines
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Ren, 2011, Dust controls and monitoring practices on Australian longwalls, Proc Eng, 26, 1417, 10.1016/j.proeng.2011.11.2319
Cram, 2012
Lama, 1993
Peng, 2010, Understanding the Chinese coal industry, Coal Age, 115, 24
Zheng, 2009, A statistical analysis of coal mine accidents caused by coal dust explosions in China, J Loss Prev Process Ind, 22, 528, 10.1016/j.jlp.2009.02.010
Centers for Disease Control and Prevention. Pneumoconiosis and advanced occupational lung disease among surface coal miners-16 states, 2010–2011. Morbidity and mortality weekly report 2012;61(23):431.
Scarisbrick, 2005, Occupational respiratory disease in mining, Occup Med (Lond), 55, 72, 10.1093/occmed/kqi005
Centers for Disease Control and Prevention. Silicosis mortality, prevention, and control – United States, 1968–2002. Morbidity and mortality weekly report 2005;54(16):401.
State Administration of Coal Mine Safety, 2011
New South Wales government, 2007
Zhao, 1997, The legal management of dust levels at underground coal mine workplace, China Safety Sci J, 7, 30
Kizil, 2002, Coal dust exposure in the longwall mines of New South Wales-Australia a respiratory risk assessment, Occup Med, 52, 137, 10.1093/occmed/52.3.137
Petavratzi, 2005, Particulates from mining operations: a review of sources, effects and regulations, Miner Eng, 18, 1183, 10.1016/j.mineng.2005.06.017
Plush B, Ren T, Aziz N. A critical evaluation of dust sampling methodologies in Longwall Mining in Australia and the USA. In: 12th coal operators’ conference. Wollongong; 2012. p. 193–201.
Plush B, Ren T, Cram K, Aziz N. Dust monitoring and control efficiency measurement in longwall mining. In: 11th underground coal operators’ conference. Wollongong; 2011. p. 231–8.
Gillies AD, Wu HW. A new real time personal respirable dust monitor. In: Coal operators’ conference. Wollongong; 2006. p. 77–92.
Gillies S, Wu HW. Underground atmosphere real time personal respirable dust and diesel particulate matter direct monitoring. In: Coal operators’ conference. Wollongong; 2008. p. 143–54.
Tian, 2008, Comparison between domestic and foreign dust monitoring techniques, Metal Mine, 7, 116
Li, 2009, Situation and development direction of dust prevention and treatment for China coal mine, Metal Mine
Qin, 2013, Research on mine dust on-line real-time monitoring and control technology, Colliery Mech Electr Technol, 2, 37
Cao, 2012, β-ray absorption dust concentration monitor system based on the GPRS, Sci Technol Eng, 20, 1405
Cheng, 2010, The prevention and control technology of dusts in heading and winning faces and its development tendency, J Shandong Univ Sci Technol, 4, 017
Hewitt, 1993
Wang, 2007
Tien, 2011, Dust control practices in Chinese coal mines, with remarks on black lung, Min Eng, 63, 24
Cheng, 2008, Dust-proof technology with combined seam water injection for full mechanized top coal caving mining, Coal Sci Technol, 36, 38
Zhao, 2009, Study of technology of variable-frequency pulse water infusion into coal seam, J Min Safety Eng, 25, 486
Jiang, 2012, Numerical simulation of dust movement regularities in belt conveyer roadway, J China Coal Soc, 37, 659
Gillies S, Wu HW. Australian longwall panel ventilation practices. In: 13th coal operators’ conference. Wollongong; 2013. p. 176–83.
Du, 2009
Wu, 2011, The law of gas distribution in goaf of fully mechanized top-coal caving working face with “double-U” ventilation system, J China Coal Soc, 36, 1705
Wang, 2012
Liu, 2002, Study on regularity of dust distributing in heading face with forced ventilation, J China Coal Soc, 27, 233
Liu, 2010, Dust control system with mixed ventilation in fully mechanized roadway, Shanxi Coal, 30, 53
Qi, 2007, To solve the dust problem in the fully mechanized heading face by using the mixed dust collection system, Safety Coal Mines, 38, 23
Du, 2010, Numerical simulations of dust distribution in a fully mechanized excavation face with far-pressing-near-absorption ventilation, J Univ Sci Technol Beijing, 32, 957
Wang, 2011, Experimental research on pressing air-absorption air volume ratio in FPNA ventilation for excavation roadways, J Liaoning Tech Univ, 2, 003
Hu, 2013, Simulation of dust migration law at heading face under far-pressing-near-absorption ventilation based on DPM in unstable state, J Coal Sci Eng (China), 39, 104
New South Wales government, 2006
Ren T, Karekal S, Cooper G, Wang ZW, Plush B. Design and field trials of water-mist based venturi systems for dust mitigation on longwall faces. In: 13th coal operators’ conference. Wollongong; 2013. p. 209–20.
Xie, 2007, New respirable dust suppression systems for coal mines, J China Univ Min Technol, 17, 321, 10.1016/S1006-1266(07)60097-2
Cheng, 2010, Experimental research on the relationship between nozzle spray pressure and atomization particle size, J China Coal Soc, 35, 1308
Zhou, 2002, Extinguishing dust using atomized high pressure water in electrical traction shearer, Fluid Mach, 7, 011
Wang, 2013, Application of foam to suppress rock dust in a large cross-section rock roadway driven with roadheader, Adv Powder Technol, 24, 257, 10.1016/j.apt.2012.06.012
Ren, 2013, Research on ventilation dust technology of long-pressure and short axis for fully mechanized excavation face, Shaanxi Coal, 4, 005
Meng, 2013
Li, 2007, Application of negative pressure secondary dust removal (NPSDR) technology on longwall face, Safety Coal Mines, 38, 12
Kissell, 2003
Wu, 2000, High efficiency dust scrubbers for continuous miner in underground mines, J Central South Univ Technol, 7, 205, 10.1007/s11771-000-0055-3
Ren, 2012, A new method for reducing the prevalence of pneumoconiosis among coal miners: foam technology for dust control, J Occup Environ Hygiene, 9, D77, 10.1080/15459624.2012.667288
Wang, 2012, Experimental investigations on the performance of a new design of foaming agent adding device used for dust control in underground coal mines, J Loss Prev Process Ind, 25, 1075, 10.1016/j.jlp.2012.07.023
Ren, 2014, Application of foam technology for dust control in underground coal mine, Int J Min Sci Technol, 24, 13, 10.1016/j.ijmst.2013.12.003
Wang, 2014, Experimental investigation of the performance of a novel foam generator for dust suppression in underground coal mines, Adv Powder Technol, 25, 1053, 10.1016/j.apt.2014.02.011
Conroy, 2013, Liquid drainage from high-expansion (HiEx) aqueous foams during and after filling of a container, Colloids Surf A, 426, 70, 10.1016/j.colsurfa.2013.02.050
Xi, 2013, Experimental study on advantages of foam–sol in coal dust control, Process Saf Environ Prot, 92, 637, 10.1016/j.psep.2013.11.004
Xi, 2014, Controlling the coal dust at transshipment point: a study of the foam–sol foaming device, Int J Min Sci Technol, 5, 625, 10.1016/j.ijmst.2014.03.031
Li, 2011, New progress on coal mine dust in recent ten years, Proc Eng, 26, 738, 10.1016/j.proeng.2011.11.2231
Jiang, 1999, Study of dust control technology on tunnelling, China Safety Sci J, 9, 11
Zhang, 2012, Study on dust control technology with foam in fully mechanized workface of Huoerxinhe Coal Mine, China Safety Sci J, 22, 151
Hargreaves, 2007, The computational modeling of the ventilation flows within a rapid development drivage, Tunn Undergr Space Technol, 22, 150, 10.1016/j.tust.2006.06.002
Wang, 2011, Numerical simulation of dust distribution at a fully mechanized face under the isolation effect of an air curtain, Min Sci Technol (China), 21, 65, 10.1016/j.mstc.2010.12.001