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The Connemara ophicalcites and associated marbles contain varyingproportions of calcite, dolomite, tremolitic amphibole, serpentinizedolivine, diopside, humite, phlogopite, clinochlore, and quartz.They formed from a chemically precipitated 'primary' dolomitewith a small amount of mica and clay minerals in which muchof the trace and minor element content of the rock, e.g. Al,Fe, Ti, Zn, Ni, Cr, Zr, K, Rb, and rare earths was concentrated.The rock was probably silicified after deposition, possiblyduring metamorphism, and was probably not deposited with majoradmixed detrital quartz or feldspar. The formation during metamorphismof complementary segregated layers rich in either olivine (Fo98±2)or calcite resulted from important chemical changes controlledby the composition of the stable metamorphic minerals, i.e.those for which solution concentrations exceeded the solubilityproduct for the pore fluid. The mineralogy influenced the localconcentrations of both major and trace elements and emphasizesthe importance of solutions and the stable metamorphic mineralogyin manipulating the composition of some metamorphic rocks. Somecriteria for recognizing segregated layers in metamorphic rocksare given. Serpentinization was probably by addition of water and silicaand not by movement of Fe or Mg. Chemical analyses of forty-threesamples each for twenty-six oxides and elements are given andthe first occurrence of humite in Connemara is reported.  相似文献   
2.
The Connemara ophicalcites and associated marbles contain varyingproportions of calcite, dolomite, tremolitic amphibole, serpentinizedolivine, diopside, humite, phlogopite, clinochlore, and quartz.They formed from a chemically precipitated ‘primary’dolomite with a small amount of mica and clay minerals in whichmuch of the trace and minor element content of the rock, e.g.Al, Fe, Ti, Zn, Ni, Cr, Zr, K, Rb, and rare earths was concentrated.The rock was probably silicified after deposition, possiblyduring metamorphism, and was probably not deposited with majoradmixed detrital quartz or feldspar. The formation during metamorphismof complementary segregated layers rich in either olivine (Fo98?2)or calcite resulted from important chemical changes controlledby the composition of the stable metamorphic minerals, i.e.those for which solution concentrations exceeded the solubilityproduct for the pore fluid. The mineralogy influenced the localconcentrations of both major and trace elements and emphasizesthe importance of solutions and the stable metamorphic mineralogyin manipulating the composition of some metamorphic rocks. Somecriteria for recognizing segregated layers in metamorphic rocksare given. Serpentinization was probably by addition of water and silicaand not by movement of Fe or Mg. Chemical analyses of forty-threesamples each for twenty-six oxides and elements are given andthe first occurrence of humite in Connemara is reported.  相似文献   
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Connemara pelites show progressive metamorphism from stauroliteto upper sillimanite zones and possess low Mg/(Fe + Mg) values,typically 0.30 to 0.35 from about 100 analyses. As a consequenceof their composition, many sillimanite zone pelites lack bothmuscovite and K-feldspar. Staurolite, garnet, biotite, muscovite,feldspars and iron ores have been microprobe analysed in 48samples. Assemblages, textures and mineral compositions indicatethat metamorphism followed a sequence of continuous and discontinuousreactions with systematic variations in mineral Mg/(Mg + Fe)as predicted by theory. Contrary to some common assumptions,most reaction takes place along divariant equilibria; univariantreactions are seldom reached because reactants such as chloriteor muscovite are first consumed along divariant curves. Pelitepetrogenetic grids showing univariant curves can only indicatelimits to natural assemblages; they typically do not show whichreactions have actually taken place. Physical conditions of metamorphism have been calculated bya variety of means; temperatures range from 550° for thestaurolite zone to 650° for the upper silimanite zone, withthe first appearance of sillimanite near 580°. An earlykyanite-staurolite metamorphism at pressures above about 5 kbwas followed by a steepening of the thermal gradient leadingto regional cordierite and andalusite. This was probably accompaniedby uplift with pressures of around 4 kb for roeks near the sillimanite-inisograd.  相似文献   
5.
Based on 225 analyses of quartzites, siliceous granoblastites,calc silicate rocks, calcite and dolomite marbles, including120 analyses of pelites and semipelites, sedimentary trendsof chemical variation are identified in staurolite and sillimanitegrade rocks. The correlation of original clay mineral contentwith Ti, Fe, K, Rb, Y, Nb, Ca, Ni, Ga, Zn and probably Ba andMn is shown. A similar clay mineral (whose composition is calculated)was added to all the sediments except the quartz-rich sandstones,now quartzites. This pattern appears to be general for mostsediments, based on crustal averages. The form of the originaladdition of Sr in the sediments might be identified as eithercarbonate or feldspar by a Ca vs. Sr plot. The southern pelites in a 2–4 km peripheral zone to theConnemara orthogneisses and migmatites have been metasomatized.The crude order of elemental enrichment from the elements increasedthe most to those increased the least relative to the same stratigraphicalhorizons in the north is: Mn, Ba, Th, Cu, Ca, Sr, Y, Pb, Zn,Pr, Ge, Nd, La, Mg, S, Ce, Rb, Sm, Ti, Na, K and Ga while Si,Al, Cr, Ni, Co, Fe and P are unchanged or removed. The sourceof the material added is postulated to be the water-rich residualfraction of the migmatitic quartz diorite gneiss, the transportbeing by movement of a water-rich fluid out of the migmatites,the fixation being mainly in biotite and new, more calcic, plagioclaseporphyroblasts, there being a positive correlation between elementenrichment and ionic radius.  相似文献   
6.
Major- and trace-element analyses, accompanied by modal analysesand mineralogical data, are given for thirty-three striped amphibolitesfrom Connemara. It is concluded that prior to metamorphism theserocks were intrusions, lavas or tuffs of sodic basalt composition.  相似文献   
7.
The Chemical Distinction Between Ortho- and Para-amphibolites   总被引:1,自引:0,他引:1  
Although ortho-amphibolites can often be distinguished chemicallyfrom para-amphi-bolites by their higher contents of Cr, Ni,and Ti, and lower Niggli k ratios, no criterion based on abundancelevels is generally applicable because many basic igneous rockshave low Cr, Ni, and Ti contents, and alkali metasomatism inmetamorphic terrains often disturbs the k ratio. Of much morevalue is the distinction between igneous and sedimentary trendsof variation. This requires enough analyses to establish a reliabletrend. Some critical plots are suggested, and the Karroo doleritesfrom South Africa and the Connemara striped amphi-bolites fromwestern Ireland are compared with amphibolites from Lang?y (N.Norway), Bakersville-Roan area (N. Carolina, U.S.A.), and NW.Queensland (Australia). The plots confirm the origin of theortho-amphibolites from these regions but some of the supposedpara-amphibolites may be ortho-amphibolites and more analysesare needed to define reliable trends of variation.  相似文献   
8.
Major- and trace-element analyses, accompanied by modal analysesand mineralogical data, are given for thirty-three striped amphibolitesfrom Connemara. It is concluded that prior to metamorphism theserocks were intrusions, lavas or tuffs of sodic basalt composition.  相似文献   
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