Abstract

Mineral Resources EngineeringVol. 09, No. 04, pp. 421-427 (2000) No AccessA RESEARCH ON THE TENDENCY OF ERMENEK DISTRICT COALS TO SPONTANEOUS COMBUSTIONCEM SENSOGUT and IBRAHIM CINARCEM SENSOGUTDepartment of Mining Engineering, Selcuk University, Kampus-Konya, 42079 Turkey, TurkeyFax: +332 241 06 35 Search for more papers by this author and IBRAHIM CINARDepartment of Mining Engineering, Selcuk University, Kampus-Konya, 42079 Turkey, TurkeyFax: +332 241 06 35 Search for more papers by this author https://doi.org/10.1142/S0950609800000342Cited by:13 PreviousNext AboutSectionsPDF/EPUB ToolsAdd to favoritesDownload CitationsTrack CitationsRecommend to Library ShareShare onFacebookTwitterLinked InRedditEmail AbstractIn this work, the coal samples from Ermenek District in Turkey were investigated in terms of propensity of spontaneous combustion. The samples taken from three collieries operated by the private companies (Polat, Akpinar and Turab Mining) were chemically analysed and searched for susceptibility to spontaneous heating by using the crossing point method. The results were emphasised with regards to the environmental index. FiguresReferencesRelatedDetailsCited By 13Tests for spontaneous ignition of solid materialsH. Wang and B.Z. Dlugogorski1 Jan 2022Experimental study on the effect of acidity on coal spontaneous combustion at different oxygen concentrationsXueming Li, Zhixin Jin and Gang Bai16 March 2020 | Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, Vol. 39Historical Perspective on Identifying and Controlling Spontaneous CombustionXinyang Wang23 November 2019Risk Evaluation of the Spontaneous Combustion of Coal for Underground Coal MiningZhang Yutao, Liu Yurui, Jerry C. Tien, Li Yaqing and Shi Xueqiang4 August 2018Kinetics characteristics of coal low-temperature oxidation in oxygen-depleted airGuansheng Qi, Deming Wang, Keming Zheng, Jun Xu and Xuyao Qi et al.1 May 2015 | Journal of Loss Prevention in the Process Industries, Vol. 35The Thermal History of Select Coal-Waste Dumps in the Upper Silesian Coal Basin, Poland1 Jan 2015The application of kinetics based simulation method in thermal risk prediction of coalGuansheng Qi, Deming Wang, Yun Chen, Haihui Xin and Xuyao Qi et al.1 May 2014 | Journal of Loss Prevention in the Process Industries, Vol. 29Evaluation of the propensity for coal spontaneous combustion based on catastrophe theoryYu-tao Zhang, Xi-chen Zhang, Jerry C. Tien and Ya-qing Li19 October 2011 | Journal of Coal Science and Engineering (China), Vol. 17, No. 3A comprehensive hazard evaluation system for spontaneous combustion of coal in underground miningLiu Lang and Zhou Fu-bao1 May 2010 | International Journal of Coal Geology, Vol. 82, No. 1-2Spontaneous Combustion Liability of Kutahya (Turkey) Region LignitesO. Oren and C. Sensogut12 Mar 2010 | Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, Vol. 32, No. 10Thermal alterations of organic matter in coal wastes from Upper Silesia, PolandMagdalena Misz-Kennan1 Jan 2010 | Mineralogia, Vol. 41, No. 3-4Test method for the propensity of coal to spontaneous combustionDe-ming Wang, Qi Xu-yao, Zhong Xiao-xing and Gu Jun-jie1 Sep 2009 | Procedia Earth and Planetary Science, Vol. 1, No. 1Monitoring and ANN Modeling of Coal Stockpile Behavior under Different Atmospheric ConditionsA. H. Ozdeniz, Y. Ozbay, N. Yilmaz and C. Sensogut29 Jan 2008 | Energy Sources, Part A: Recovery, Utilization, and Environmental Effects, Vol. 30, No. 6 Recommended Vol. 09, No. 04 Metrics History PDF download

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