Kruszewska, KJLabuschagne, BCJDu Cann, VM2007-02-072007-06-072007-02-072007-06-071996-11Kruszewska, KJ, Labuschagne, BCJ, du Cann, VM. 1996. Relating coal oxidation and hydrophobicity: a petrographic approach. Fuel, vol 75(14), pp 1611-16160016-2361http://hdl.handle.net/10204/1590http://hdl.handle.net/10204/1590Long-wave fluorescence relative intensity measurements and a vitrinite micro elasticity index were used to determine oxidation levels in a suite of artificially oxidized coals. These petrographic parameters were correlated with the agglomeration responses of the coals. Very definite relations were found between the petrographic indicators of oxidation and the agglomeration rates of the coals.396343 bytesapplication/pdfenCopyright: 1996 Elsevier Science Ltd.Coal oxidationFluorescence photometryRelating coal oxidation and hydrophobicity: a petrographic approachArticleKruszewska, K., Labuschagne, B., & Du Cann, V. (1996). Relating coal oxidation and hydrophobicity: a petrographic approach. http://hdl.handle.net/10204/1590Kruszewska, KJ, BCJ Labuschagne, and VM Du Cann "Relating coal oxidation and hydrophobicity: a petrographic approach." (1996) http://hdl.handle.net/10204/1590Kruszewska K, Labuschagne B, Du Cann V. Relating coal oxidation and hydrophobicity: a petrographic approach. 1996; http://hdl.handle.net/10204/1590.TY - Article AU - Kruszewska, KJ AU - Labuschagne, BCJ AU - Du Cann, VM AB - Long-wave fluorescence relative intensity measurements and a vitrinite micro elasticity index were used to determine oxidation levels in a suite of artificially oxidized coals. These petrographic parameters were correlated with the agglomeration responses of the coals. Very definite relations were found between the petrographic indicators of oxidation and the agglomeration rates of the coals. DA - 1996-11 DB - ResearchSpace DP - CSIR KW - Coal oxidation KW - Fluorescence photometry LK - https://researchspace.csir.co.za PY - 1996 SM - 0016-2361 T1 - Relating coal oxidation and hydrophobicity: a petrographic approach TI - Relating coal oxidation and hydrophobicity: a petrographic approach UR - http://hdl.handle.net/10204/1590 ER -