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Possibilities of oil shale mining under the Selisoo mire of the Estonia oil shale deposit

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Abstract

The paper presents results of the study on oil shale mining (Estonia underground mine) possibilities under the Selisoo mire. The Selisoo area is 2,051 ha in extent, and most of the mire is in natural state. Peat layer consists of thick (4.4–6.5 m) oligotrophic peat. Mining under Selisoo will go at depths 65–70 m under the surface. The mining field of the Estonia mine was planned between Ahtme and Viivikonna fault zones. The lowest hydraulic conductivity of carbonate rocks 0.11 l/day per m2 is found in the Oandu layer and for peat it is 0.35–0.0002 m/day. Therefore, together they form a good aquitard. When the annual rainfall amount is the highest, the difference between horizontal water inflow and runoff is positive with 127,000 m3. Positive water balance is guaranteed in case of precipitation being at least 540 mm/year. The positive water balance is important for preserving the ecological system of Selisoo mire. For guaranteeing long-term stability of mine pillars, a new calculation method has been elaborated, based on the conventional calculation scheme, where the factor of safety is more than 2.3. Rheological processes are out of question, collapse of the pillars is impossible. Stability of the underground constructions and overburden rocks must be “eternal”. The criteria were elaborated for oil shale mining and will guarantee preservation of mires in natural or close to natural state.

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References

  • Botch MS, Masing VV (1979) Ecosystems of USSR. Nauka, Leningrad. [in Russian]

  • Fetter CW (1994) Applied hydrogeology, 3rd edn. Macmillan College Publishing Company, Inc, New York, Library of Congress Cataloging-in-Publication Data, pp 1–691

  • Hints L (1997) Aseri Stage Lasnamägi Stage Uhaku Stage Kukruse Stage Haljala Stage. In: Raukas A, Teedumäe A (eds) Geology and mineral resources of Estonia. Estonian Academy Publishers, Tallinn, pp 66–72

    Google Scholar 

  • Hints L, Meidla T (1997) Keila Stage Oandu Stage Rakvere Stage Nabala Stage. In: Teedumäe A, Raukas A (eds) Geology and mineral resources of Estonia. Estonian Academy Publishers, Tallinn, pp 74–81

    Google Scholar 

  • Huang S, Li X, Wang Y (2012) A new model of geo-environmental impact assessment of mining: a multiple-criteria assessment method integrating Fuzzy-AHP with fuzzy synthetic ranking. Environ Earth Sci 66(1):275–284. doi:10.1007/s12665-011-1237-z

    Article  Google Scholar 

  • Ivanov KE (1975) Water exchange in peatlands. Gidrometeoizdat, Leningrad, pp 86–91 [in Russian]

    Google Scholar 

  • Joosten H, Clark D (2002) Wise use of mires and peatlands. International Mire Conservation Group, International Peat Society, Saarijärvi, p 303

    Google Scholar 

  • Jõgar P (1983) Ground-water flow models of Pandivere Upland (northeast Estonia). In: Proceedings of academy of sciences of ESSR. Geology 32, 2, 69–78 [In Russian, summary in English]

  • Karu V, Västrik A, Anepaio A, Väizene V, Adamson A, Valgma I (2008) Future of oil shale mining technology in Estonia. Oil Shale 25(2S):125–134

    Article  Google Scholar 

  • Kattai V, Vingisaar P (1980) Structure of the Ahtme tectonic disturbance. In: Proceeding of the academy of sciences ESSR. Geology 29, 2, 55–62 [In Russian, summary in English abstract]

  • Ketcheson SJ, Price JS (2011) The impact of peatland restoration on the site hydrology of an abandoned block-cut bog. Wetlands 31(6):1263–1274. doi:10.1007/s13157-011-0241-0

    Article  Google Scholar 

  • Kink H (1997) Karst and springs. In: Teedumäe A, Raukas A (eds) Geology and mineral resources of Estonia. Estonian Academy Publishers, Tallinn, pp 389–390

    Google Scholar 

  • Koitmets K, Reinsalu E, Valgma I (2003) Precision of oil shale energy rating and oil shale resources. Oil Shale 20(1):15–24

    Google Scholar 

  • Loopmann A (1996) Formation, development and perishing of mire massis. Development of mires and formation of bed-pool complex. J Estonian Peat 3(4):18–21 [in Estonian, with English summary]

    Google Scholar 

  • Lu W, Luo Y, Chen M et al (2012) An introduction to Chinese safety regulations for blasting vibration. Environ Earth Sci 67(7):1951–1959. doi:10.1007/s12665-012-1636-9

    Article  Google Scholar 

  • Mining-law and legal regulation acts (1998) Ministry of Environment, Ministry of Economy. Part II, Tallinn, (in Estonian)

  • Nestor H, Soesoo A, Linna A, Hints O, Nõlvak J (2007) Ordovician in Estonia and southern Finland. MTÜ GEOGuide Baltoscandia, Tallinn, pp 1–32

    Google Scholar 

  • Niinemets E, Pensa M, Charman D (2011) Analysis of fossil testate amoebae along the hummock-lawn-hollow gradient in Selisoo Bog, Estonia: local variability and implications for palaeoecological reconstructions in peatlands. Boreas 40:367–378

    Google Scholar 

  • Orru H, Orru M (2006) Sources and distribution of trace elements in Estonian peat. Symposium on peatlands—basin evolution and depository of records on global environmental and climatic changes location: Florence, Italy. Glob Planet Change 53(4):249–258. doi:10.1016/j.gloplacha.2006.03.007

    Article  Google Scholar 

  • Orru M (1975) Report of exploration-investigation works of peat deposits in Kohtla-Järve County. Manuscript at depository of manuscript reports of geological survey of Estonia. Geological survey of Estonia, Tallinn (in Estonian, with Russian summary)

    Google Scholar 

  • Orru M (1995) Estonian mires. Geological Survey of Estonia, Tallinn (in Estonian, with English summary)

    Google Scholar 

  • Orru M (2010) Dependence of Estonian Peat deposit properties on landscape types and feeding conditions. PhD thesis, Publication of Tallinn University of Technology, Tallinn, pp 121

  • Orru M, Lelgus M (2003) Peat resources investigation of Soosaare peatland in Viljandi County, the Geological Survey of Estonia, Tallinn, pp 33

  • Orru M, Orru H (2008) Sustainable use of Estonian peat reserves and environmental challenges 15th Meeting of the Association-of-European-Geological-Societies location: Tallinn, Estonia Date: Sep 16–20. Estonian J Earth Sci 57(2):87–93. doi:10.3176/earth.2008.2.04

    Article  Google Scholar 

  • Orru M, Uebner M, Orru H (2011) Chemical properties of peat in three peatlands with balneological potential in Estonia. Estonian J Earth Sci 60(1):43–49. doi:10.3176/earth.2011.1.04

    Article  Google Scholar 

  • Parker I (1993) Mine pillar design in 1993: computers have become the opiate of the mining engineers. Mining engineering, 1993, July and August, 714–717 and 1047–1050

  • Pastarus J-R (2005) Improved underground mining design method for Estonian oil shale deposit. 5th international scientific and practical conference on environment, technology and resources. Latvia, Rezekne, pp 270–274

    Google Scholar 

  • Pastarus J-R, Sabanov S (2005) Concept of risk assessment for Estonian oil shale mines. In: Proceedings of the 5th international conference “environment technology resources”, Rezekne Augstskolas Izdevnieciba, Rezekne, Latvia, June 16–18, 2005, 237–242

  • Pastarus J-R, Toomik A (2001) Roof and pillar stability prognosis in Estonian oil shale mines. Rock Mechanics. In: Särkka P, Eloranta P (eds) Proceedings of the ISRM Regional Symposium EUROCK 2001 “Rock Mechanics a challenge for society”. A.A.Balkema/Lisse/Abingdon/Exton (PA)/Tokyo, Espoo, 849–853

  • Pastarus Y-R, Nikitin O (2003) Estimation methods for stability of mining excavations (on the example of shale oil deposit in Estonia). Gornyj Zhurnal Ruda i Metally 4–5:71–75 (in Russian)

    Google Scholar 

  • Peat Handbook 1982. Nedra, Moscow, 753 (in Russian)

  • Perens R (2005) Groundwater stand in 1999–2003. Geological Survey of Estonia, Tallinn (in Estonian)

    Google Scholar 

  • Perens R, Vallner L (1997) Water-bearing formation. In: Teedumäe A, Raukas A (eds) Geology and mineral resources of Estonia. Estonian Academy Publishers, Tallinn, pp 163–177

    Google Scholar 

  • Puura V, Vaher R (1997) Tectonics. In: Raukas A, Teedumäe A (eds) Geology and mineral resources of Estonia. Estonian Academy Publishers, Tallinn, pp 163–177

    Google Scholar 

  • Reinsalu E (2001) Post technological processes in mined out areas. Estonian Science Foundation, Grant No. 3403, Tallinn (in Estonian)

    Google Scholar 

  • Reinsalu E, Valgma I (2007) Oil shale resources for oil production. Oil Shale 24:9–14

    Google Scholar 

  • Riet K (1974) About transmission capacity of Ordovician carbonate rock in the Estonia oil shale deposit. In: Proceeding of the academy of sciences ESSR. Chemistry. Geology 23, 3, 274–277

  • Regulation to room, pillars and safety zones calculation methods for underground oil shale mining (1997). Tallinn, pp 28 (in Estonian)

  • Sabanov S, Tohver T, Väli E, Nikitin O, Pastarus J-R (2008) Geological aspects of risk management in oil shale mining. Oil Shale 25(2):145–152

    Article  Google Scholar 

  • Scott B, Ranjtih PG, Choi SK et al (2010) Geological and geotechnical aspects of underground coal mining methods within Australia. Environmental Earth Sciences 60(5):1007–1019. doi:10.1007/s12665-009-0239-6

    Article  Google Scholar 

  • Sokman K, Kattai V, Vaher R, Systra YJ (2008) Influence of tectonic dislocations on oil shale mining in the Estonia deposit. Oil Shale 25(2):175–187

    Article  Google Scholar 

  • Systra YJ, Sokman K, Kattai V, Vaher R (2007) Tectonic dislocations of the Estonian kukersite deposit and their influence on oil shale quality and quantity. In: 15th MAEGS meeting 16–20 Sep 2007, Tallinn, Estonia. Abstracts. pp 74–76

  • Taylor JR (1982) An introduction to error analysis. In: Commins ED (ed) The study of uncertainties in physical measurements. University Science Books, California, p 272

    Google Scholar 

  • Tousignant M-E, Pellerin S, Brisson J (2010) The relative impact of human disturbances on the vegetation of a large wetland complex. Wetlands 30(2):333–344. doi:10.1007/s13157-010-0019-9

    Article  Google Scholar 

  • Tutorial for digital mapping for Estonia geology (2008) Land Board (in Estonian)

  • Undusk V (1998) Safety factor of pillars. Oil Shale 15(2):157–164

    Google Scholar 

  • Valgma I (2003) Estonian oil shale resources calculated by GIS method. Oil Shale 20(3):404–411

    Google Scholar 

  • Valgma I (2009) Oil Shale mining-related research in Estonia. Oil Shale 26(4):150–445

    Article  Google Scholar 

  • Valgma I, Kattel T (2005) Low depth mining in Estonian oil shale deposit-Abbau von Ölschiefer in Estland. In: Kolloquium Schacht, Strecke und Tunnel 2005: 14. und 15. April 2005, Freiberg/Sachsen: Kolloquium Schacht, Strecke und Tunnel 2005: 14 und 15. April 2005, Freiberg/Sachsen. Freiberg: TU Bergakademie, 213–223

  • Valgma I, Reinsalu E, Sabanov S, Karu V (2010) Quality control of oil shale production in Estonian mines. Oil Shale 27(3):239–249

    Article  Google Scholar 

  • Väli E, Valgma I, Reinsalu E (2008) Usage of Estonian oil shale. Oil Shale 25(2S):101–114

    Article  Google Scholar 

  • Wu Q, Liu S (2011) The classification of mine environmental geology problems in China. Environ Earth Sci 64(6):1505–1511. doi:10.1007/s12665-010-0503-9

    Article  Google Scholar 

Download references

Acknowledgments

This study is related to the research project AR12007 ‘Sustainable and environmentally acceptable Oil shale mining’.

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Correspondence to Mall Orru.

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Orru, M., Vaizene, V., Pastarus, JR. et al. Possibilities of oil shale mining under the Selisoo mire of the Estonia oil shale deposit. Environ Earth Sci 70, 3311–3321 (2013). https://doi.org/10.1007/s12665-013-2396-x

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