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2016 | OriginalPaper | Buchkapitel

11. Potash Resources: Occurrences and Controls

verfasst von : John K. Warren

Erschienen in: Evaporites

Verlag: Springer International Publishing

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Abstract

Natural potash evaporites are a typical part of a brine evaporation series, crystallizing at the higher concentration or bittern end, either at the surface (primary salts) or in the shallow subsurface (secondary salts). Today, bedded accumulations of primary potash evaporites are a relatively rare occurrence. Extremely high solubility of most potash salts means they accumulate in highly restricted, some would say highly continental, modern depositional settings (Cendon et al. 2003). Wherever Quaternary potash does occur naturally, as in the playas of the intermontane Qaidam Basin in China and in the Danakil Depression in the Afar Rift of Africa, carnallite, not sylvite, is the dominant potash salt. This has led some to postulate that carnallite is the archetypal primary marine potash phase, while sylvite is a secondary diagenetic mineral formed by incongruent dissolution of carnallite. Others have argued that ancient sylvite was sometimes a primary precipitate, deposited by the cooling of highly saline surface or near surface brines and from seawater with ionic proportions different to those of today (Hardie 1996).

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Fußnoten
1
The name carnallite comes from the German geologist Rudolph von Carnall (1804–1874).
 
2
The name sylvite come from sal digestevus Sylvii (New Latin: digestive salt of Sylvius), named for the Dutch physician and chemist Franciscus de la Boë (1614–1672), a.k.a. Sylvius.
 
3
Potassium increases plant resistance to drought, frost and to a number of diseases and pests, it is essential for the development of the root system, fosters nitrogen fixation in leguminous crops, and also it improves the size, colour and sugar content of crops, such as fruits. Natural reserves of soil-potassium diminish with each successive crop. This withdrawal or “soil mining” is greatly increased and accelerated by higher yields and more intensive cropping. For example, high-yielding, short-season rice varieties in a double-cropping annual system will remove up to 36 times more potassium from soil compared to a single crop of traditional varieties. Potassium uptake by rice in a triple-cropping system will be about 50 % more than extracted by two crops annually. Although some soils are rich in potassium, many are poorly endowed and crop production thereon is unsustainable if the potassium removed by cropping is not replenished in appropriate amounts.
 
4
In July 2013, Vladislav Baumgertner, chief executive of the world’s largest potash and cheapest producer, OAO Uralkali, suddenly announced, without prior warning, that he was removing his firm from one of the potash world’s major price support cartels which his company had maintained with another firm, Belarusian Potash Company. As a result of his actions, Baumgertner has been ridiculed, reviled and even imprisoned for a month when he visited Belarus. Mining Weekly estimated that this decision had the effect of wiping out $18 billion in market capitalization of the major potash players, worldwide. The world of potash production and distribution has been thrown into major turmoil and a trade war between his home nation of Russia and neighbouring Belarus may very well have broken out. Baumgertner has explained his action was based on market forces (responding to cartel actions and changes in market share), which had led to a steady rise in his company’s above-ground potash stocks. He believed the only way to work off those stocks was to stimulate demand by forcing prices lower. Naturally, agricultural consumers rejoiced somewhat, but for many potash producers, the decline in prices to US$325 per tonne by late October 2013 was a real profit-buster (see Table 11.3c).
 Share prices of PotashCorp (POT) of Saskatchewan had been on a rollercoaster ride ever since the original price/tonne oscillations began in 2008, but, by 2013 stock prices appeared to be holding firmly between $40 and $45. This was so until the July announcement, upon which its share price immediately plunged by over 25 per cent to barely $30 per share. Part of POT’s problem stemmed from their decision to dramatically increase brownfield production from 9,000,000 tonnes per year to a prodigious 17.1 million tonnes per year, by 2015. China moved swiftly to take advantage of the situation and purchased a huge block of Uralkali stock, thereby acquiring a 12.5 % ownership position and thereby gained market leverage in order to assure China of adequate potash supplies going forward.
 
5
“Qaidam”means salt marsh in Mongolian.
 
6
“Horse” is possibly a miner’s corruption of the term horst. In mining the term typically refers to a block of country rock entirely encased within a mineral lode. Horse is also a broader geological technical term to describe any block of rock completely separated from the surrounding rock either by mineral veins or fault planes.
 
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Zurück zum Zitat El Tabakh, M., C. Utha-aroon, L. Coshell, and J. K. Warren, 1995, Cretaceous saline deposits of the Maha Sarakham Formation in the Khorat BAsin, Northeastern Thailand: International Conference on Geology, Geochronoilogy and Mineral Resources of Indochina 22–25 November 1995, Khon Kaen, Thailand, v. Core Workshop Notes, p. 20 pp. El Tabakh, M., C. Utha-aroon, L. Coshell, and J. K. Warren, 1995, Cretaceous saline deposits of the Maha Sarakham Formation in the Khorat BAsin, Northeastern Thailand: International Conference on Geology, Geochronoilogy and Mineral Resources of Indochina 22–25 November 1995, Khon Kaen, Thailand, v. Core Workshop Notes, p. 20 pp.
Zurück zum Zitat ERCOSPLAN, 2007, Resource Estimate for the Makola Exploration Permit Area, Kouilou Region, Republic of Congo, Technical report for MagMinerals Inc; Project Reference: EGB 04–037, p. 102. ERCOSPLAN, 2007, Resource Estimate for the Makola Exploration Permit Area, Kouilou Region, Republic of Congo, Technical report for MagMinerals Inc; Project Reference: EGB 04–037, p. 102.
Zurück zum Zitat ERCOSPLAN, 2010, Techical report and current resource estimate: Danakhil Potash Deposit, Afar State, Ethiopia: Project Reference: EGB 08–024. ERCOSPLAN, 2010, Techical report and current resource estimate: Danakhil Potash Deposit, Afar State, Ethiopia: Project Reference: EGB 08–024.
Zurück zum Zitat Et-Touhami, M., 1996, L’origine des accumulations saliferes du Trias marocain: apport de la geochimie du brome du sel du bassin de Khemisset (Maroc central) The origin of Moroccan Triassic salt deposits: contribution of Br geochemistry in the halite-rock from the Khemisset Basin (central Morocco) [French]: Comptes Rendus de l Academie des Sciences Serie II Fascicule A-Sciences de la Terre et des Planetes, v. 323, p. 591–598. Et-Touhami, M., 1996, L’origine des accumulations saliferes du Trias marocain: apport de la geochimie du brome du sel du bassin de Khemisset (Maroc central) The origin of Moroccan Triassic salt deposits: contribution of Br geochemistry in the halite-rock from the Khemisset Basin (central Morocco) [French]: Comptes Rendus de l Academie des Sciences Serie II Fascicule A-Sciences de la Terre et des Planetes, v. 323, p. 591–598.
Zurück zum Zitat Evans, R., 1967, The structure of the Mississippian evaporite deposit at Pugwash, Cumberland County, Nova Scotia: Economic Geology, v. 62, p. 262–273. Evans, R., 1967, The structure of the Mississippian evaporite deposit at Pugwash, Cumberland County, Nova Scotia: Economic Geology, v. 62, p. 262–273.
Zurück zum Zitat Evans, R., and K. O. Linn, 1970, Fold relationships within evaporites of the Cane Creek Anticline: Third Symp. on Salt: North Ohio Geol. Soc., v. 1, p. 286–297. Evans, R., and K. O. Linn, 1970, Fold relationships within evaporites of the Cane Creek Anticline: Third Symp. on Salt: North Ohio Geol. Soc., v. 1, p. 286–297.
Zurück zum Zitat Evans, W. B., 1970, The Triassic salt deposits of north-western England: Quarterly Journal of the Geological Society, v. 126, p. 103–123. Evans, W. B., 1970, The Triassic salt deposits of north-western England: Quarterly Journal of the Geological Society, v. 126, p. 103–123.
Zurück zum Zitat Fuzesy, A., 1982, Potash in Saskatchewan: Report Saskatchewan, Department of Mineral Resources. Fuzesy, A., 1982, Potash in Saskatchewan: Report Saskatchewan, Department of Mineral Resources.
Zurück zum Zitat Garrett, D., 2004, Handbook of lithium and natural calcium chloride, Elsevier Academic Press, 460 p. Garrett, D., 2004, Handbook of lithium and natural calcium chloride, Elsevier Academic Press, 460 p.
Zurück zum Zitat Garrett, D. E., 1995, Potash: Deposits, processing, properties and uses: Berlin, Springer, 752 p. Garrett, D. E., 1995, Potash: Deposits, processing, properties and uses: Berlin, Springer, 752 p.
Zurück zum Zitat Geluk, M., 1999, Late Permian (Zechstein) rifting in the Netherlands: models and implications for petroleum geology: Petroleum Geoscience, v. 5, p. 189–199. Geluk, M., 1999, Late Permian (Zechstein) rifting in the Netherlands: models and implications for petroleum geology: Petroleum Geoscience, v. 5, p. 189–199.
Zurück zum Zitat Gendzwill, D., and N. Martin, 1996, Flooding and loss of the Patience Lake potash mine: CIM Bulletin, v. 89, p. 62–73. Gendzwill, D., and N. Martin, 1996, Flooding and loss of the Patience Lake potash mine: CIM Bulletin, v. 89, p. 62–73.
Zurück zum Zitat Gendzwill, D. J., 1978, Winnipegosis mounds and Prairie Evaporite Formation of Saskatchewan – seismic study: American Association Petroleum Geologists – Bulletin, v. 62, p. 73–86. Gendzwill, D. J., 1978, Winnipegosis mounds and Prairie Evaporite Formation of Saskatchewan – seismic study: American Association Petroleum Geologists – Bulletin, v. 62, p. 73–86.
Zurück zum Zitat Gill, B. A., and S. Akhtar, 1982, The rock mechanics and ground control methods associated with Saskatchewan potash mining; an overview: The Geological Bulletin of the Punjab University, v. 17, p. 33–36. Gill, B. A., and S. Akhtar, 1982, The rock mechanics and ground control methods associated with Saskatchewan potash mining; an overview: The Geological Bulletin of the Punjab University, v. 17, p. 33–36.
Zurück zum Zitat Gonzaga, F. G., F. T. T. Gonçalves, and L. F. C. Coutinho, 2000, Petroleum geology of the Amazonas Basin, Brazil: modeling of hydrocarbon generation and migration (Chapter 13), in M. R. Mello, and B. J. Katz, eds., Petroleum systems of South Atlantic margins, American Association of Petroleum Geologists Memoir 73, p. 159–178. Gonzaga, F. G., F. T. T. Gonçalves, and L. F. C. Coutinho, 2000, Petroleum geology of the Amazonas Basin, Brazil: modeling of hydrocarbon generation and migration (Chapter 13), in M. R. Mello, and B. J. Katz, eds., Petroleum systems of South Atlantic margins, American Association of Petroleum Geologists Memoir 73, p. 159–178.
Zurück zum Zitat Garrett, D. E., 1970a, The chemistry and origin of potash deposits, Third International Symposium on Salt, v. 1: Cleveland, Northern Ohio Geological Society, p. 211–222. Garrett, D. E., 1970a, The chemistry and origin of potash deposits, Third International Symposium on Salt, v. 1: Cleveland, Northern Ohio Geological Society, p. 211–222.
Zurück zum Zitat Gowariker, V., V. N. Krishnamurthy, S. Gowariker, M. Dhanorkar, and K. Paranjape, 2009, The Fertilizer Encyclopedia, Wiley, 880 p. Gowariker, V., V. N. Krishnamurthy, S. Gowariker, M. Dhanorkar, and K. Paranjape, 2009, The Fertilizer Encyclopedia, Wiley, 880 p.
Zurück zum Zitat Griswold, G. B., 1982, Geologic overview of the Carlsbad potash-mining district: Circular New Mexico Bureau of Mines and Mineral Resources, v. 182, p. 17–22. Griswold, G. B., 1982, Geologic overview of the Carlsbad potash-mining district: Circular New Mexico Bureau of Mines and Mineral Resources, v. 182, p. 17–22.
Zurück zum Zitat Gueddari, M., 1984, Geochimie et thermodynamique des evaporites continentales: etude de lac Natron en Tanzanie et du Chott el Jerid en Tunisie. (Geochemistry and thermodynamics of continental evaporites: a study of Lake Natron in Tanzania and the Chott el Djerid in Tunisia). Sciences Geologiques Memoire, v. 76, p. 143 pp. Gueddari, M., 1984, Geochimie et thermodynamique des evaporites continentales: etude de lac Natron en Tanzanie et du Chott el Jerid en Tunisie. (Geochemistry and thermodynamics of continental evaporites: a study of Lake Natron in Tanzania and the Chott el Djerid in Tunisia). Sciences Geologiques Memoire, v. 76, p. 143 pp.
Zurück zum Zitat Gwynn, J. W., 2008, The Occurrence and Development of the Saline Resources of Western Utah: Geology and Geologic Resources and Issues of Western Utah, 2009, p. 221–234. Gwynn, J. W., 2008, The Occurrence and Development of the Saline Resources of Western Utah: Geology and Geologic Resources and Issues of Western Utah, 2009, p. 221–234.
Zurück zum Zitat Hardie, L. A., 1984, Evaporites: Marine or non-marine?: American Journal of Science, v. 284, p. 193–240. Hardie, L. A., 1984, Evaporites: Marine or non-marine?: American Journal of Science, v. 284, p. 193–240.
Zurück zum Zitat Hardie, L. A., 1990, The roles of rifting and hydrothermal CaCl2 brines in the origin of potash evaporites: an hypothesis: American Journal of Science, v. 290, p. 43–106. Hardie, L. A., 1990, The roles of rifting and hydrothermal CaCl2 brines in the origin of potash evaporites: an hypothesis: American Journal of Science, v. 290, p. 43–106.
Zurück zum Zitat Hardie, L. A., 1996, Secular variation in seawater chemistry: an explanation for the coupled secular variation in the mineralogies of marine limestones and potash evaporites over the past 600 m.y.: Geology, v. 24, p. 279–283. Hardie, L. A., 1996, Secular variation in seawater chemistry: an explanation for the coupled secular variation in the mineralogies of marine limestones and potash evaporites over the past 600 m.y.: Geology, v. 24, p. 279–283.
Zurück zum Zitat Harville, D. G., and S. J. Fritz, 1986, Modes of diagenesis responsible for observed successions of potash evaporites in the Salado Formation, Delaware Basin, New Mexico: Journal Sedimentary Petrology, v. 56, p. 648–656. Harville, D. G., and S. J. Fritz, 1986, Modes of diagenesis responsible for observed successions of potash evaporites in the Salado Formation, Delaware Basin, New Mexico: Journal Sedimentary Petrology, v. 56, p. 648–656.
Zurück zum Zitat Hasegawa, H., S. Imsamut, P. Charusiri, R. Tada, Y. Horiuchi, and K.-I. Hisada, 2010, ‘Thailand was a desert’ during the mid-Cretaceous: Equatorward shift of the subtropical high-pressure belt indicated by eolian deposits (Phu Thok Formation) in the Khorat Basin, northeastern Thailand: Island Arc, v. 19, p. 605–621. Hasegawa, H., S. Imsamut, P. Charusiri, R. Tada, Y. Horiuchi, and K.-I. Hisada, 2010, ‘Thailand was a desert’ during the mid-Cretaceous: Equatorward shift of the subtropical high-pressure belt indicated by eolian deposits (Phu Thok Formation) in the Khorat Basin, northeastern Thailand: Island Arc, v. 19, p. 605–621.
Zurück zum Zitat Hite, R. J., 1961, Potash-bearing evaporite cycles in the salt anticlines of the Paradox Basin, Colorado and Utah; Article 337: U. S. Geological Survey Professional Paper. p. D323-D327. Hite, R. J., 1961, Potash-bearing evaporite cycles in the salt anticlines of the Paradox Basin, Colorado and Utah; Article 337: U. S. Geological Survey Professional Paper. p. D323-D327.
Zurück zum Zitat Hite, R. J., and T. Japakasetr, 1979, Potash deposits of the Khorat Plateau, Thailand and Laos: Economic Geology, v. 74, p. 448–458. Hite, R. J., and T. Japakasetr, 1979, Potash deposits of the Khorat Plateau, Thailand and Laos: Economic Geology, v. 74, p. 448–458.
Zurück zum Zitat Hofmann, P., A. Y. Huc, B. Carpentier, P. Schaeffer, P. Albrecht, B. Keely, J. R. Maxwell, D. J. S. Sinninghe, L. J. W. de, and D. Leythaeuser, 1993a, Organic matter of the Mulhouse Basin, France; a synthesis: Organic Geochemistry, v. 20, p. 1105–1123. Hofmann, P., A. Y. Huc, B. Carpentier, P. Schaeffer, P. Albrecht, B. Keely, J. R. Maxwell, D. J. S. Sinninghe, L. J. W. de, and D. Leythaeuser, 1993a, Organic matter of the Mulhouse Basin, France; a synthesis: Organic Geochemistry, v. 20, p. 1105–1123.
Zurück zum Zitat Hofmann, P., D. Leythaeuser, and B. Carpentier, 1993b, Palaeoclimate controlled accumulation of organic matter in Oligocene evaporite sediments of the Mulhouse Basin: Organic Geochemistry, v. 20, p. 1125–1138. Hofmann, P., D. Leythaeuser, and B. Carpentier, 1993b, Palaeoclimate controlled accumulation of organic matter in Oligocene evaporite sediments of the Mulhouse Basin: Organic Geochemistry, v. 20, p. 1125–1138.
Zurück zum Zitat Holmes, R., 1991, Some aspects of the geology of the potash seam at Boulby mine: Journal of the Open University Geological Society, v. 12, p. 77–88. Holmes, R., 1991, Some aspects of the geology of the potash seam at Boulby mine: Journal of the Open University Geological Society, v. 12, p. 77–88.
Zurück zum Zitat Holter, M., 1972, Geology of the Prairie Evaporite Formation of Saskatchewan, Canada, Geology of saline deposits (Geologie des depots salins), v. 7, UNESCO Earth Sci. Ser., p. 183–189. Holter, M., 1972, Geology of the Prairie Evaporite Formation of Saskatchewan, Canada, Geology of saline deposits (Geologie des depots salins), v. 7, UNESCO Earth Sci. Ser., p. 183–189.
Zurück zum Zitat Holwerda, J. G., and R. W. Hutchinson, 1968, Potash-bearing evaporites in the Danakil area, Ethiopia: Economic Geology, v. 63, p. 124–150. Holwerda, J. G., and R. W. Hutchinson, 1968, Potash-bearing evaporites in the Danakil area, Ethiopia: Economic Geology, v. 63, p. 124–150.
Zurück zum Zitat Hovorka, S. D., R. M. Holt, and D. W. Powers, 2007, Depth indicators in Permian Basin evaporites: Geological Society, London, Special Publications, v. 285, p. 335–364. Hovorka, S. D., R. M. Holt, and D. W. Powers, 2007, Depth indicators in Permian Basin evaporites: Geological Society, London, Special Publications, v. 285, p. 335–364.
Zurück zum Zitat Hryniv, S. P., B. V. Dolishniy, O. V. Khmelevska, A. V. Poberezhskyy, and S. V. Vovnyuk, 2007, Evaporites of Ukraine: a review: Geological Society, London, Special Publications, v. 285, p. 309–334. Hryniv, S. P., B. V. Dolishniy, O. V. Khmelevska, A. V. Poberezhskyy, and S. V. Vovnyuk, 2007, Evaporites of Ukraine: a review: Geological Society, London, Special Publications, v. 285, p. 309–334.
Zurück zum Zitat Hu, G., and N.-a. Wang, 2001, The sand wedge and mirabilite of the last ice age and their paleoclimatic significance in Hexi Corridor: Chinese Geographical Science, v. 11, p. 80–86. Hu, G., and N.-a. Wang, 2001, The sand wedge and mirabilite of the last ice age and their paleoclimatic significance in Hexi Corridor: Chinese Geographical Science, v. 11, p. 80–86.
Zurück zum Zitat Huntington, E., 1907, Lop-Nor. A Chinese Lake. Part 1. The Unexplored Salt Desert of Lop: Bulletin of the American Geographical Society, v. 39, p. 65–77. Huntington, E., 1907, Lop-Nor. A Chinese Lake. Part 1. The Unexplored Salt Desert of Lop: Bulletin of the American Geographical Society, v. 39, p. 65–77.
Zurück zum Zitat Hutchinson, R. W., and G. G. Engels, 1970, Tectonic significance of regional geology and evaporite lithofacies in northeastern Ethiopia: Philosophical Transactions of the Royal Society, v. A 267, p. 313–329. Hutchinson, R. W., and G. G. Engels, 1970, Tectonic significance of regional geology and evaporite lithofacies in northeastern Ethiopia: Philosophical Transactions of the Royal Society, v. A 267, p. 313–329.
Zurück zum Zitat Jankowski, J., and G. Jacobson, 1990, Hydrochemical processes in groundwater-discharge playas, central Australia: Hydrological Processes, v. 4, p. 59–70. Jankowski, J., and G. Jacobson, 1990, Hydrochemical processes in groundwater-discharge playas, central Australia: Hydrological Processes, v. 4, p. 59–70.
Zurück zum Zitat Jenkunawat, P., 2012, Drilling to study Salt Subsidence in Ban Nonsaaeng, Sakhon Nakhon, Thailand (abs.): Proceedings of the 12th Regional Congress on Geology, Mineral and Energy Resources of Southeast Asia, GEOSEA 2012, p. 47. Jenkunawat, P., 2012, Drilling to study Salt Subsidence in Ban Nonsaaeng, Sakhon Nakhon, Thailand (abs.): Proceedings of the 12th Regional Congress on Geology, Mineral and Energy Resources of Southeast Asia, GEOSEA 2012, p. 47.
Zurück zum Zitat Jenyon, M. K., 1986, Salt tectonics: New York, NY, USA, Elsevier Applied Science Publishers, 191 p. Jenyon, M. K., 1986, Salt tectonics: New York, NY, USA, Elsevier Applied Science Publishers, 191 p.
Zurück zum Zitat Katz, A., and A. Starinsky, 2009, Geochemical History of the Dead Sea: Aquatic Geochemistry, v. 15, p. 159–194. Katz, A., and A. Starinsky, 2009, Geochemical History of the Dead Sea: Aquatic Geochemistry, v. 15, p. 159–194.
Zurück zum Zitat Kbir-Ariguib, N., D. B. H. Chehimi, and L. Zayani, 2001, Treatment of Tunisian salt lakes using solubility phase diagrams: Pure Appl. Chem., v. 73, p. 761–770. Kbir-Ariguib, N., D. B. H. Chehimi, and L. Zayani, 2001, Treatment of Tunisian salt lakes using solubility phase diagrams: Pure Appl. Chem., v. 73, p. 761–770.
Zurück zum Zitat Kebede, S., 2012, Groundwater in Ethiopia: Features, numbers and opportunities, Springer. Kebede, S., 2012, Groundwater in Ethiopia: Features, numbers and opportunities, Springer.
Zurück zum Zitat Kendall, H. W., and D. Pimental, 1994, Constraints on the Expansion of the Global Food Supply: Ambio, v. 23, p. 198–205. Kendall, H. W., and D. Pimental, 1994, Constraints on the Expansion of the Global Food Supply: Ambio, v. 23, p. 198–205.
Zurück zum Zitat Kezao, C., and J. M. Bowler, 1985, Preliminary study on sedimentary characteristics and evolution of paleoclimate of Qarhan Salt Lake, Qaidam Basin: Scientia Sinica (series B), v. 28, p. 1218–1232. Kezao, C., and J. M. Bowler, 1985, Preliminary study on sedimentary characteristics and evolution of paleoclimate of Qarhan Salt Lake, Qaidam Basin: Scientia Sinica (series B), v. 28, p. 1218–1232.
Zurück zum Zitat Khutorskoi, M., E. Teveleva, L. Tsybulya, and G. Urban, 2010, Heat flow in salt-dome basins of Eurasia: A comparative study: Geotectonics, v. 44, p. 289–304. Khutorskoi, M., E. Teveleva, L. Tsybulya, and G. Urban, 2010, Heat flow in salt-dome basins of Eurasia: A comparative study: Geotectonics, v. 44, p. 289–304.
Zurück zum Zitat Koehler, G., T. K. Kyser, R. Enkin, and E. Irving, 1997, Paleomagnetic and isotopic evidence for the diagenesis and alteration of evaporites in the Paleozoic Elk Point Basin, Saskatchewan, Canada: Canadian Journal of Earth Sciences, v. 34, p. 1619–1629. Koehler, G., T. K. Kyser, R. Enkin, and E. Irving, 1997, Paleomagnetic and isotopic evidence for the diagenesis and alteration of evaporites in the Paleozoic Elk Point Basin, Saskatchewan, Canada: Canadian Journal of Earth Sciences, v. 34, p. 1619–1629.
Zurück zum Zitat Koehler, G. D., T. K. Kyser, and T. Danyluk, 1990, Stable Isotope evidence for the petrogenesis of carnallite In the Middle Devonian Prairie Evaporile Formation, Saskatchewan: Summary of Investigations 1990, Saskatchewan Geological Survey; Saskatchewan Energy and Mines, Miscellaneous Report 90-04. Koehler, G. D., T. K. Kyser, and T. Danyluk, 1990, Stable Isotope evidence for the petrogenesis of carnallite In the Middle Devonian Prairie Evaporile Formation, Saskatchewan: Summary of Investigations 1990, Saskatchewan Geological Survey; Saskatchewan Energy and Mines, Miscellaneous Report 90-04.
Zurück zum Zitat Kogel, J. E., N. C. Trivedi, J. M. Barker, and S. T. Krukowski, 2006, Industrial Minerals and Rocks, SME (Soc. Mining Metallurgy and Exploration), 1548 p. Kogel, J. E., N. C. Trivedi, J. M. Barker, and S. T. Krukowski, 2006, Industrial Minerals and Rocks, SME (Soc. Mining Metallurgy and Exploration), 1548 p.
Zurück zum Zitat Kottek, M., J. Grieser, C. Beck, B. Rudolf, and F. Rubel, 2006, World Map of the Köppen-Geiger climate classification updated: Meteorologische Zeitschrift, v. 15, p. 259–263. Kottek, M., J. Grieser, C. Beck, B. Rudolf, and F. Rubel, 2006, World Map of the Köppen-Geiger climate classification updated: Meteorologische Zeitschrift, v. 15, p. 259–263.
Zurück zum Zitat Kovin, O., 2011, Mapping of evaporite deformation in a potash mine using ground penetrating radar: Upper Kama deposit, Russia: Journal of Applied Geophysics, v. 74, p. 131–141. Kovin, O., 2011, Mapping of evaporite deformation in a potash mine using ground penetrating radar: Upper Kama deposit, Russia: Journal of Applied Geophysics, v. 74, p. 131–141.
Zurück zum Zitat Kudryashov, A. I., 2001, Upper Kama Salt Deposit [in Russian]: Mining Institute, UrO RAN, Perm Kudryashov, A. I., 2001, Upper Kama Salt Deposit [in Russian]: Mining Institute, UrO RAN, Perm
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Zurück zum Zitat Lakhdar, R., M. Soussi, M. H. Ben Ismail, and A. M’Rabet, 2006, A Mediterranean Holocene restricted coastal lagoon under arid climate: Case of the sedimentary record of Sabkha Boujmel (SE Tunisia): Palaeogeography, Palaeoclimatology, Palaeoecology, v. 241, p. 177–191. Lakhdar, R., M. Soussi, M. H. Ben Ismail, and A. M’Rabet, 2006, A Mediterranean Holocene restricted coastal lagoon under arid climate: Case of the sedimentary record of Sabkha Boujmel (SE Tunisia): Palaeogeography, Palaeoclimatology, Palaeoecology, v. 241, p. 177–191.
Zurück zum Zitat Linn, K. O., and S. S. Adams, 1966, Barren halite zones in potash deposits, Carlsbad, New Mexico: Second Symposium on Salt, p. 59–68. Linn, K. O., and S. S. Adams, 1966, Barren halite zones in potash deposits, Carlsbad, New Mexico: Second Symposium on Salt, p. 59–68.
Zurück zum Zitat Littke, R., H. J. Bayer, D. Gajewski, and S. Nelskamp, 2008, Dynamics of Complex Intracontinental Basins – The Central European Basin System: Berlin Heidelberg, Springer, 519 p. Littke, R., H. J. Bayer, D. Gajewski, and S. Nelskamp, 2008, Dynamics of Complex Intracontinental Basins – The Central European Basin System: Berlin Heidelberg, Springer, 519 p.
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Zurück zum Zitat Lovatt Smith, P. F., R. B. Stokes, C. S. Bristow, and A. M. Carter, 1996, Mid-Cretaceous inversion in the Northern Khorat Plateau of Lao PDR and Thailand, in R. Hall, and D. Blundell, eds., Tectonic Evolution of Southeast asia, v. 106: London, Geological Society Special Publication, p. 233–247. Lovatt Smith, P. F., R. B. Stokes, C. S. Bristow, and A. M. Carter, 1996, Mid-Cretaceous inversion in the Northern Khorat Plateau of Lao PDR and Thailand, in R. Hall, and D. Blundell, eds., Tectonic Evolution of Southeast asia, v. 106: London, Geological Society Special Publication, p. 233–247.
Zurück zum Zitat Lowenstein, T., and F. Risacher, 2009, Closed Basin Brine Evolution and the Influence of Ca–Cl Inflow Waters: Death Valley and Bristol Dry Lake California, Qaidam Basin, China, and Salar de Atacama, Chile: Aquatic Geochemistry, v. 15, p. 71–94. Lowenstein, T., and F. Risacher, 2009, Closed Basin Brine Evolution and the Influence of Ca–Cl Inflow Waters: Death Valley and Bristol Dry Lake California, Qaidam Basin, China, and Salar de Atacama, Chile: Aquatic Geochemistry, v. 15, p. 71–94.
Zurück zum Zitat Lowenstein, T. K., 1987b, Origin of depositional cycles in a Permian ‘’saline giant”; the Salado (McNutt Zone) evaporites of New Mexico and Texas: Geological Society of America Bulletin, v. 100, p. 592–608. Lowenstein, T. K., 1987b, Origin of depositional cycles in a Permian ‘’saline giant”; the Salado (McNutt Zone) evaporites of New Mexico and Texas: Geological Society of America Bulletin, v. 100, p. 592–608.
Zurück zum Zitat Lowenstein, T. K., 1988, Origin of depositional cycles in a Permian ‘’saline giant”; the Salado (McNutt Zone) evaporites of New Mexico and Texas: Geological Society of America Bulletin, v. 100, p. 592–608. Lowenstein, T. K., 1988, Origin of depositional cycles in a Permian ‘’saline giant”; the Salado (McNutt Zone) evaporites of New Mexico and Texas: Geological Society of America Bulletin, v. 100, p. 592–608.
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Metadaten
Titel
Potash Resources: Occurrences and Controls
verfasst von
John K. Warren
Copyright-Jahr
2016
DOI
https://doi.org/10.1007/978-3-319-13512-0_11