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101.
102.
广西东攀剖面二叠系顶部粘土矿物特征及古气候意义   总被引:2,自引:1,他引:1  
对广西东攀剖面二叠系顶部20个样品中的粘土矿物进行X射线衍射分析。伊利石结晶度值显示这些样品形成于中晚成岩带的地质环境;伊利石、蒙脱石纵向分布规律和伊利石结晶度与伊利石含量的关系表明伊利石除陆源碎屑来源外,可能有部分为蒙脱石伊利石化而成;伊利石结晶度变化曲线和伊蒙混层类型的变化规律表明,本区粘土矿物组合与含量的变化除受到后期成岩作用的影响外,还明显地受沉积因素的控制;伊利石结晶度、伊利石化学指数、高岭石和伊利石的含量、伊蒙混层类型显示东攀剖面以9、10层界线上方5cm为界,古气候由干冷变为湿暖;水介质由偏碱性向酸性转变。  相似文献   
103.
南海粘土矿物组合特征及其环境意义   总被引:1,自引:0,他引:1  
利用X射线衍射法(XRD)对南海12个海底表层沉积物和20个悬浮物样品中粘土矿物组成和分布特征进行了综合分析。结果表明:(1)研究区的表层沉积物粘土矿物以伊利石为主,其次为绿泥石、高岭石、伊/蒙间层矿物以及蒙皂石;悬浮物粘土矿物是以绿泥石为主,其次为高岭石、蒙皂石、伊利石以及伊/蒙间层矿物。(2)粘土矿物的组成和分布特征主要受气候条件、物质来源、水动力条件及相互间稀释作用的制约。伊利石的含量随离岸距离和水深的增加呈增大趋势;高岭石则在近岸区特别是河口区富集;绿泥石在西部沿岸海区的含量较低,在东部岛弧和北部台湾岛附近海区的含量较高;蒙皂石与火山作用密切相关,在东部火山岛弧附近海区含量较高。(3)粘土沉积物的来源以河流输入为主,海洋自生和风尘搬运对该区的沉积影响不大。(4)深海悬浮物粘土矿物的组成变化能够很好地指示短尺度气候环境的变迁,伊利石的结晶程度对气候和环境变化反映灵敏,其随所处环境的压力增大而变差。  相似文献   
104.
伊利石结晶度及其在低温变质研究中若干问题的讨论   总被引:4,自引:0,他引:4  
王河锦  陶晓风  M.Rahn 《地学前缘》2007,14(1):151-156
文中介绍与伊利石结晶度相关的伊利石矿物新的定名方案;讨论了伊利石结晶度的结晶学基础与Scherrer方程式的关系;讨论了三个重要的伊利石结晶度指数Weaver、K櫣bler和Weber指数的关系,并介绍推导的Weaver、K櫣bler和Weber指数的理论关系式;评价了衍射仪测量条件对结晶度数值的影响和三套伊利石结晶度标样的作用以及成岩带、变质带与葡萄石-绿纤石相、沸石相、绿纤石-阳起石亚相对比的依据。建议(1)停用绢云母一词;(2)建立可供各实验室使用的具有晶体结构和晶体化学参数和多型参数的伊利石结晶度标样;(3)建议多开展规范的可进行国际对比的低温变质研究,划分出与国际上一致的成岩带和近变质带,不仅利于低温变质作用理论的研究,而且由于成岩带到近变质转变带是重要的煤气油的生成带,也利于中国煤气油资源的勘探与开发,利于国民经济的长远持续发展。  相似文献   
105.
In low-pressure environments, precipitation of graphite is hindered at low to moderate temperatures by the high solubility of carbon in C-O-H fluids and by kinetic barriers to nucleation. Those low-temperature fluids that do attain saturation tend to precipitate graphite continuously during flow and cooling, thereby producing widely dispersed films of low-crystallinity graphite. In contrast, at high temperatures, particularly when combined with high pressures, the precipitation of graphite is enhanced by decreased solubility of carbon in C-O-H fluids and by improved nucleation under those conditions. The longevity of fluid systems in high-temperature, high-pressure terranes permits efficient, long-term scavenging of dispersed carbon from the crust. The latter may be redistributed in a much more concentrated form as fluids rise, cool and decompress, and as the carbon is finally precipitated as highly crystalline graphite in fracture systems. The combined effects of the thermochemical controls on carbon solubility and the geological controls on fluid generation, movement and P – T  pathways are the reason that large, epigenetic graphite deposits form dominantly at high temperatures and pressures. Those high-temperature, high-pressure conditions, in turn, account for the uniformly high crystallinity of the fluid-deposited graphite.  相似文献   
106.
Palaeoproterozoic black shales form an essential part of the Birimian volcanosedimentary belt in Burkina Faso, West Africa. The mean Rmax values and the atomic H/C values of the bulk carbonaceous matter (BCM), together with rock structures and mineral assemblages, indicate that these carbon‐rich rocks were metamorphosed to sub‐greenschist and low‐grade greenschist facies. X‐ray diffraction reveals that the (002) ‘graphite’ peak width in half maximum (FWHM) ranges from 0.43 to 0.71 °2θ in sub‐greenschist facies and from 0.27 to 0.41 °2θ in greenschist facies rocks, but the d(002) values in both groups of rocks are approximately the same (~3.35 Å). The BCM of individual samples is composed of particles with very variable shape, reflectance and Raman spectra. Type I particles that predominate in sub‐greenschist facies are fine‐grained, irregular or elongate bodies 1 to 3 μm in size. Their maximum reflectance (Rmax) ranges between 2.5% and 8.2%, and Raman parameters R1 and R2 range from 0.5 to 1.4 and 0.5 to 0.8, respectively. Type II particles are lath‐shaped, up to 40 μm large bodies, commonly arranged parallel to white mica flakes. The number of these particles increases from sub‐greenschist to greenschist facies. Maximum reflectance varies between 6% and 11.2% and R1 and R2 Raman parameters range from 0.05 to 0.7 and from 0.1 to 0.5, respectively. Type III particles occur in hydrothermally altered and sheared rocks; these are nodular aggregates composed of grains up to 10 μm in size. This type of particles has very high reflectance (Rmax = 11–15%) and its Raman spectra indicate a very high degree of structural ordering corresponding to well‐ordered graphite. Type I particles represent original organic matter in the metasediments. Type II particles are believed to have been formed either in situ by solid‐state transformation of Type I particles or by crystallization from metamorphic fluids. Gradual graphitization of the Type I organic particles and the growth of lath‐shaped Type II particles from a fluid phase is assumed to have taken place under the peak metamorphic conditions associated with the burial of Birimian sediments during thrust tectonism, progressive tectonic accretion and crustal thickening during the D1 event of the Eburnean orogeny. The growth of equant, high‐reflectance postkinematic nodular aggregates of Type III particles is ascribed to the reduction of CO2‐rich fluids during a hydrothermal event associated with Late Eburnean D2 exhumation and strike–slip movements. Type I carbonaceous particles were only slightly affected by high‐temperature, low‐pressure contact metamorphism during intrusion of Late Eburnean magmatic bodies, whereas formation of Type II or III particles was not recorded in contact‐metamorphosed rocks at all.  相似文献   
107.
The Fenes Nappe belongs to the stack of tectonic units cropping out in the southern Apuseni Mts (Romania). It is characterised by a structural history consisting of two folding phases that developed during the time spanning from Early Aptian to Late Maastrichtian. The D1 phase produced west-northwest-verging, isoclinal to very tight folds, associated to a slaty cleavage. The main metamorphic imprint of the Fenes Nappe is linked to this deformation phase; illite and chlorite ‘crystallinity’ values indicate metamorphic conditions of the late diagenesis, close to the diagenetic zone/anchizone boundary. The subsequent D2 phase produced north-northwest-verging, parallel folds, not associated with synkinematic recrystallisation. These phases are interpreted as developed during a structural path, which includes burial at a depth of 8–10 km, followed by exhumation at shallower structural levels. To cite this article: A. Ellero et al., C. R. Geoscience 334 (2002) 347–354.  相似文献   
108.
镇江下蜀土中的黏土矿物及其古环境意义   总被引:4,自引:0,他引:4  
镇江大港砖瓦厂下蜀黄土剖面30个样品的X衍射分析和半定量结果表明,该剖面黏土矿物组合为伊利石-蛭石-高岭石型,其中以伊利石(52.8%~70%)和蛭石(20.6%~38.5%)为主;古土壤层的伊利石相对含量高于黄土层,蛭石的变化与之相反,二者互为消长.高岭石含量为6.0%~11.1%,在古土壤中的含量略高于黄土层.从剖面底部(S4)至顶部(S1), 伊利石相对含量略呈增加趋势,蛭石和高岭石则略呈减少趋势.镇江下蜀黄土中的黏土矿物组合类型与北方黄土明显不同,伊利石的结晶度总体上也较北方黄土差,反映下蜀黄土堆积区相对温暖、湿润,风化淋滤作用相对较强.从黏土矿物组合和含量来看,下蜀黄土经历了中等强度的风化作用.  相似文献   
109.
自1967年Kübler用X射线衍射(XRD)法测量伊利石结晶度以划分极低级变质带以来,伊利石结晶度一直是划分极低级变质带的主要指标。但是不同的人用伊利石结晶度Kübler指数划分变质级的方案不同。因此,尚需要结合岩石学分析方法判定变质级。作为一种尝试,对川西北松潘—阿坝地区红参1井5975m深度内的变泥质岩进行了矿物共生分析。结果表明,钻遇地层遭受了高级近变质作用,只是由于岩石化学成分原因,未能出现泥质岩近变质指示矿物黑硬绿泥石,并未达到浅变质级别,不至于破坏油气的保存。Kisch(1990)提出的变质级划分方案比较符合研究区的实际情况。在极低级变质研究中应用矿物共生分析,一方面可以解决类似的结晶度研究的分歧,另一方面对于指导薄片观察以及X衍射物相分析十分有益。  相似文献   
110.
Detailed b lattice parameter and illite crystallinity (IC) studies of K-white micas in slates from the Stawell and Ballarat-Bendigo Zones (SZ, BBZ) in the western Lachlan Fold Belt of Victoria, Australia, reveal a metamorphic pattern characterized by regional metamorphism associated with crustal thickening and younger contact metamorphism accompanied by deformation. The IC data indicate that rocks regionally metamorphosed prior to the intrusion of the Early and Late Devonian granitoids, vary in grade from epizonal (greenschist facies) to diagenetic (zeolite facies) and that most are of epizonal to anchizonal (prehnite–pumpellyite facies) grade. In the BBZ, a decrease in grade from west to east occurs. Across fault zones, IC values show little change, indicating that limited vertical displacement has occurred. This is in accord with the thin skinned deformation model proposed for the western Lachlan Fold Belt. The b lattice parameters (x=9.022 Å; n=137; σn=0.009) indicate baric conditions intermediate between those of New Hampshire (P=Al2SiO5 triple point) and Otago (intermediate P ). Thus, a moderately low geothermal gradient existed 450–430 Ma ago, when these rocks were deformed. KD Fe/Mg (actinolite)/Fe/Mg (chlorite) values (0.52–0.70) obtained from coexisting actinolite and chlorite in metabasites from fault zones support the moderately high-P (c. 4 kbar) metamorphism suggested by the b cell parameter values. The metamorphic conditions indicated by these data are contrary to the low-P/high-T conditions proposed by previous authors, who inferred an intimate association between deformation, granitoid intrusion and gold mineralization. The b lattice parameter of white micas in slates adjacent to Early Devonian (c. 400 Ma) granitoids with schist bearing aureoles in the north-eastern part of the BBZ (x=9.002 Å; n=27; σn=0.007), indicate pressures in the order of c. 2.5 kbar which are in accord with those obtained from andalusite–cordierite and zoisite–garnet bearing assemblages observed in the higher grade metapelitic and calcareous rocks. This contrasts with the higher pressure (c. 4 kbar) existing during regional metamorphism and implies that c. 6.5–8 km of metasedimentary rocks in the BBZ were removed before the emplacement of the Early Devonian granitoids. Metamorphic assemblages in hornfelses associated with Late Devonian granitoids indicate a further 5–6 km of metasediment were removed in the next 40 Ma prior to their emplacement. This study shows the value of white mica studies in elucidating the tectonothermal history of a low-grade metamorphic terrane dominated by metapelitic rocks.  相似文献   
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