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The Granitization Problem

Published online by Cambridge University Press:  01 May 2009

Helge G. Backlund
Affiliation:
Upsala

Extract

The invaluable Presidential Addresses by Professor H. H. Read, entitled “Meditations on Granite”, Parts I and II, read to the Geologists’ Association in 1943 and 1944, seem to have aroused a great deal of interest in petrological quarters, more especially as these “meditations” are painted against the lively background of the historical development of ideas embracing a whole century and a half. Professor Read’s “meditations” are the more remarkable since they lead him to conclusions almost diametrically opposed to those propounded by Professor P. Niggli in an address delivered to the Zürich Geological Society at the February meeting of 1942, although both reviewers rely on about the same scope of historical “evidence”.

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Articles
Copyright
Copyright © Cambridge University Press 1946

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References

REFERENCES

Adams, F. D. 1930. The transfusion of matter from one solid to another under the influence of heat. A new factor in the process of metamorphism. Canadian Journ. of Research, 2, pp. 153161.CrossRefGoogle Scholar
Backlund, H. G. 1936. A: Der “Magmaaufstieg” in Faltengebirgen. C. R. Soc. géol. Finlande, No. ix, pp. 293347.Google Scholar
Backlund, H. G. 1936. B: Zur genetischen Deutung der Eklogite. Geol. Rundschau, 27, pp. 4761.Google Scholar
Backlund, , 1937. Die Umgrenzung der Svekofenniden. Bull. Geol. Inst. Ups., 27, pp. 219269.Google Scholar
Backlund, 1938. The problems of the Rapakivi granites. Journ. Geol., 46, pp. 339396.CrossRefGoogle Scholar
Backlund, 1941. Die ältesten Baueinheiten von Fennoskandia. Ein Beitrag zur Deutung des “Urgebirges”. Mitt. Naturf. Ges. Schaffhausen, 17, No. 3, pp. 3173.Google Scholar
Backlund, 1943. Einblicke in das geologische Geschehen des Präkambriums. Geol. Rundschau, 34, pp. 79148.CrossRefGoogle Scholar
Barrois, Ch. 1912. Sur les relations tectoniques des granites grenus et gneissiques de Bretagne (1910). C. R. Xl-me Congr. Géol. Intern. Stockholm, i, 597605.Google Scholar
Day, Arthur L. 1912. Are quantitative physico-chemical studies of rocks practicable? (1910). C. R. Xl-me Congr. Géol. Intern. Stockholm, ii, 965–7.Google Scholar
Drescher-Kaden, K. F. 1942. Beiträge zur Kenntnis der Migmatit- und Assimilationsbildungen sowie der synantektischen Reaktionsformen. Chemie d. Erde, 14, pp. 157238.Google Scholar
Eskola, P. 1914. On the petrology of the Orijärvi region in South-western Finland. Bull. Comm. Géol. Finlande, No. 40.Google Scholar
Eskola, P. 1921. The mineral facies of rocks. Norsk Geol. Tidskrift, 6, pp. 143194.Google Scholar
Eskola, P. 1932. On the origin of granitic magmas. Tschermaks Min. u. Petr. Mitt., 42, pp. 455481.Google Scholar
Goldschmidt, V. M. 1921. Die Injektionsmetamorphose im Stavanger-Gebiete (1920). Videnskapsselskapets i Kristiania Skrifter. I. Mat.-natury. Klasse, No. 10.Google Scholar
Hedvall, J. A. 1938. Die Reaktionsfähigkeit fester Stoffe. Leipzig.Google Scholar
Holmes, , Arthur, 1936. Transfusion of quartz xenoliths in alkali basic and ultrabasic lavas, South-West Uganda. Min. Mag., 24, pp. 408420.Google Scholar
Holmes, , Arthur, 1937. The Age of the Earth. Edinburgh, pp. 188193 and 209.Google Scholar
Holmes, , Arthur, 1945. Leucitized granite xenoliths from the potash-rich lavas of Bun-yaruguru, South-West Uganda. Amer. Journ. Sci., 243-A (Daly vol.), pp. 313332.Google Scholar
Holmes, , Arthur, 1945. Natural history of granite. Nature, 155, pp. 412415.CrossRefGoogle Scholar
Korjinski, D. S. 1937. Dependence of mineral stability on the depth. Mém. Soc. Russe de Min., 2 sér., 66, pp. 367396.Google Scholar
Krokström, T. 1946. Felspathization and boudinage in a quartzite boulder from the Västervik area. Bull. Geol. Inst. Ups., 31, pp. 389400.Google Scholar
Kropotkin, P. N. 1940. On the origin of the granites (in Russian). The Soviet Geology, No. 9, pp. 3243.Google Scholar
Milch, L. 1917. Ueber Adinolen und Adinolschiefer des Harzes. Zeitschr. d. D. Geol. Ges., 69, pp. 349486.Google Scholar
Niggli, P. 1942. Das Problem der Granitbildung. Schweiz. Min.-Petr. Mitt., 22, pp. 184.Google Scholar
Perrin, R., Roubault, M. 1937. Les réactions à l’état solide et la géologic. Bull. Serv. d. l. Carte géol. Algérie, 5-e série, No. 1.Google Scholar
Perrin, R., Roubault, M. 1939. Le granite et les réactions à l’état solide. Bull. Serv. d. l. Carte géol. Algérie, No. 4.Google Scholar
Rastall, R. H. 1945. The Granite Problem. Geol. Mag., 82, pp. 1930.Google Scholar
Read, H. H. 1943–44. Meditations on granite I and II. Proc. Geol. Assoc., 54, pp. 6485, 55, pp. 4593.CrossRefGoogle Scholar
Reynolds, Doris L. 1936. Demonstrations in petrogenesis from Kiloran Bay, Colonsay, I. The transfusion of quartzite. Min. Mag., 24, pp. 367407.Google Scholar
Reynolds, Doris L. 1941. A gabbro-granodiorite contact in the Slieve Gullion area, and its sbearing on Tertiary petrogenesis. Q.J.G.S., 97, pp. 138.CrossRefGoogle Scholar
Reynolds, Doris L. 1942. The albite-schists of Antrim and their petrogenetic relationship to Caledonian orogenesis. Proc. Roy. Irish Acad., 48 B, No. 3 pp. 4366.Google Scholar
Reynolds, Doris L. 1943. Granitization of hornfelsed sediments in the Newry granodiorite of Goraghwood quarry, Co. Armagh. Proc. Roy. Irish Acad., No. 11, pp. 231267.Google Scholar
Reynolds, Doris L. 1944. The south-western end of the Newry igneous complex. Q.J.G.S., 99, pp. 205246.CrossRefGoogle Scholar
Sederholm, J. J. 1907. On granite and gneiss, their origin, relations, and occurrence in the Pre-Cambrian complex of Fenno-Scandia. Bull. Comm. Géol. Finl., No. 23.Google Scholar
Sederholm, J. J. 1923. On migmatites and associated Pre-Cambrian rocks of Southwestern Finland. I. The Pellinge region. Bull. Comm. Géol. Finl., No. 58.Google Scholar
Sederholm, J. J. 1926. Ib. II. The region around the Barösundsfjärd W. of Helsingfors and neighbouring areas. Bull. Comm. Géol. Finl., No. 77.Google Scholar
Sederholm, J. J. 1934. Id. III. The Åland Islands. Bull. Comm. Géol. Finl., No. 107.Google Scholar
Sobral, J. M. 1913. Contributions to the geology of the Nordingrå region, Northern Sweden. Upsala.Google Scholar
Termier, Pierre. 1912. Sur la genèse des terrains cristallophylliens (1910). C. R. XI Congr. Géol. Internat. Stockholm, 1, pp. 587595.Google Scholar
Vernadski, V. I. 1924. La Géochimie. Paris.Google Scholar
Vernadski, V. I. 1929. La Biosphère. Paris.Google Scholar
Vernadski, V. I. 1930. Geochemie in ausgewählten Kapiteln. Leipzig.Google Scholar
Vogt, J. H. L. 1912. Über die Bedeutung der physikalischen Chemie für die Petrographie. C. R. XI Congr. Géol. Intern. Stockholm, ii, 947964.Google Scholar
Wegmann, C. E. 1935. Zur Deutung der Migmatite. Geol. Rundschau, 26, pp. 305350.Google Scholar