NON-MINERAL INORGANIC CONSTITUENTS OF BUKIT ASAM COAL NATURE AND MODE OF OCCURRENCE

  • Rita Susilawati Centre for Geological Resources
Keywords: non-mineral inorganic, coal, Bukit Asam

Abstract

The nature and mode of occurrence of the non-mineral inorganic fractions in coal from the Bukit Asam coalfield South Sumatra Basin Indonesia were analysed using a combination of selective leaching, low temperature ashing, XRD, XRF and electron micropobe techniques. Geologically the rank of coal at Bukit Asam was influenced by igneous intrusion. Fourteen coal samples were used in this study. Samples are chosen to represent different rank levels as well as seam horizons. The inorganic elements, in the form of dissolved salts, exchangeable ions and organometallic complexes, although present in small proportions, contribute significantly to the mineral matter components of Bukit Asam low rank coal. Electron microprobe analysis showed small but significant concentrations of inorganic elements (Al, Ca and Fe) occurring in the individual macerals in two sub bituminous and twosemi anthracite samples. There is a tendency for some of the elements, particularly Ca and Al to be lost from the organic matter with rank advance. The concentrations of elements indicated by the microprobe are relatively in good agreement with the levels of element mobility indicated by selective leaching of the same whole-coal samples. The results of this study also suggest that non-mineral inorganic was likely act as a precursor for the reactions resulting in the formation of new minerals in the high rank coals at Bukit Asam.

 

Downloads

Download data is not yet available.

References

Benson, S.A., Holm, P.L., 1985.Composition of inorganic constituents in

three low-rank coals. Industrial and Engineering Chemistry Fundamentals

Product Research and Development 24, 145–149.

Bohor, B.F., Triplehorn, D.M., 1993. Tonsteins: altered volcanic-ash layers in coal-bearing sequences., Geological Society of America Special Paper, p44.

Bustin, R.M., Mastalerz, M., Wilks, K.R., 1993. Direct determi-nation of carbon, oxygen and nitrogen content in coal using the electron microprobe. Fuel 72, 181 – 185.

De Coster, G.L., 1974. The geology of the Central and South Sumatra Basins, Indonesian Petroleum Association , 3th Annual Convention, pp. 77-110.

Finkelman, R.B., 1994. Abundance, source and mode of occurrence of the

inorganic constituents in coal, in: Kural, O.(Ed.), Coal. Istanbul Technical University, Istanbul, 115-125.

Finkelman, R.B., Bostick, N.H., Dulong, F.T., Senftle, F.E., Thorpe, A.N., 1998. Influence of an igneous intrusion on the inorganic geochemistry of a bituminous coal from Pitkin County, Colorado. Int.J. Coal Geol 36, 223-241.

Gluskoster, H.J., 1965. Electronic low temperature ashing of bituminous coal. Fuel, 44: 285-291.

Gurba, L.W. and Colin, R.W., 2000. Elemental composition of coal macerals in relation to vitrinite reflectance, Gunedah Basin, Australia, as determined by electron micropobe analysis. International Journal of Coal Geology, 44: 127-147.

Harvey, R., D. , Ruch, R., R. , 1986. Mineral Matter in Illinois and Other U.S. Coals, Mineral Matter and Ash in Coal. American Chemical Society, 10-40.

Hutchison, C.S., 1989. Geological evolution of Southeast Asia. Oxford

University Press, New York, 333 pp.

Kemezys, M., Taylor, G.H., 1964. Occurrence and distribution of minerals in some Australian coals. J. Inst. Fuel 37, 389–397.

Kiss, L.T., King, T.N., 1977. The expression of results of coal analysis: the

case for brown coals. Fuel 56, 340–341.

Kiss, L.T., King, T.N., 1979. Reporting of low-rank coal analysis — the distinction between minerals and inorganics. Fuel 58, 547–549.

Koesoemadinata, R.P., 1978. Sedimentary framework of Tertiary coal basins in Indonesia, 3rd Regional Conference on Geology and Mineral Resources of South East Asia, Bangkok, Thailand, pp. 621639.

Li, Z., Moore, T.A., Weaver, S.D., 2001. Leaching of inorganics in the Cretaceous Greymouth coal beds, South Island, New Zealand. Int.J. Coal Geol 47, 235-253.

Li, Z., Ward, C.R., Gurba, L.W., 2010.Occurrence of non-mineral inorganic elements in macerals of low-rank coals. Int.J. Coal Geol 81, 242-250.

Matasak, Th., Kendarsi, R., 1980. Geologi endapan batubara di Bukit Asam — Sumatra Selatan, Buletin Departemen Geologi. Institut Teknologi Bandung 1, 11– 33

Mastalerz, M., Gurba, L.W., 2001. Determination of nitrogen in coalmacerals using electron microprobe technique—

experimental procedure. International

Journal of Coal Geology 47, 23 – 30

Norrish, K. and Chappell, B. W. (1977) Xray fluorescence spectrography: in Physical Methods in Determinative Mineralogy, J. Zussman, ed., Academic Press, New York, 720p.

Pujobroto, A., 1997. Organic petrology and geochemistry of Bukit Asam coal, South Sumatra, Indonesia. Ph.D Thesis, The University of Wollongong, Wollongong.

Stalder, P., 1976. A review of the South Sumatra Coal Basin, Shell Minjbuow, N.V,

(unpublished), Jakarta.

Susilawati, R., Ward, C.R., 2006.Metamorphism of mineral matter in coal

from the Bukit Asam deposit, South Sumatra, Indonesia. Int.J. Coal Geol 68, 171-195.

Taylor, J.C., 1991. Computer programs for standardless quantitativeanalysis of minerals using the full powder diffraction

profile. Powder Diffraction 6, 2 – 9.

Ward, C.R., 1989. Minerals in bituminous coals of the Sydney basin (Australia) and the Illinois basin (U.S.A.). Int.J. Coal Geol 13, 455-479.

Ward, C.R., 1991. Mineral Matter in LowRank Coals and Associated Strata of the Mae Moh Basin, Northern Thailand. Int.J. Coal Geol 17, 69-93.

Ward, C.R., 1992. Mineral Matter in Triassic and Tertiary Low-Rank Coals from South-Australia. Int.J. Coal Geol 20, 185208.

Ward, C.R., 2002. Analysis and significance of mineral matter in coal

seams. Int.J. Coal Geol 50, 135-168.

Ward, C.R., Gurba, L.W., 1999. Chemical composition of macerals in bituminous coals of the Gunnedah Basin, Australia, using electron microprobe analysis techniques. Int.J. Coal Geol 39, 279-300.

Ward, C.R., Warbrooke, P.R., Ivor Roberts, F., 1989. Geochemical and

mineralogical changes in a coal seam due to contact metamorphism, Sydney Basin, New South Wales, Australia. Int.J. Coal Geol 11, 105-125.

Ward, C.R., Taylor, J.C., Cohen, D.R., 1999. Quantitative mineralogy of

sandstone s by X -ray diffractometry and normative analysis. Journal of

Sedimentary Research 69, 1050 – 1062.

Published
2015-08-08
Section
Buletin Sumber Daya Geologi