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Beskrivning
The past decade has witnessed major advances in our understanding of the chemical composition, structure, and reactivity of the complex organic-rich fossil matter known as "coal.
Application of SEM Techniques to the Characterization of Coal and Coal Ash Products; M.L. Jones, et al. XAFS Spectroscopy Studies of Critical Elements in Coal and Coal Derivatives; G.P. Huffman, et al. Investigation of Coal Surfaces by ESCA; (XPS); T. Szekely, et al. Tracking Forms of Sulfur in Coal Research Using Natural 34S/32S Ratios; K.C. Hackley, et al. Laser Spark Emission Spectroscopy of Individual Coal Particles; D.K. Ottesen. InSitu Microspectrophotometry of Coal Macerals; D.F. Bensley, et al. Structural Comparison of LowMolecularWeight Extractable Compounds in Different Rank Coals Using Capillary Column Gas Chromatography; H.C.K. Chang, et al. Combined Chromatography and FTIR Spectrometry of Coal Extracts; P.R. Griffiths, et al. Proton NMR Spectroscopy of Coals, Pitches and Coal Derived Liquids; B.C. Gerstein, et al. 13C NMR Techniques for Structural Studies of Coals and Coal Chars; A.M. Orendt, et al. Mass Spectrometric Studies of Coals and Coal Macerals; R.E. Winans. Computer-Enhanced Pyrolysis Mass Spectrometry: A New Window on Coal Structure and Reactivity; H.L.C. Meuzelaar, et al. Thermochemical Analysis of U.S. Argonne Premium Coal Samples by Time-Resolved Pyrolysis Field Ionization Mass Spectrometry; N. Simmleit, et al. OnLine Fourier Transform Infrared Spetroscopy in Coal Research; P.R. Solomon. 2 additional articles. Index.