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71.
72.
The Spring Well volcanic complex in the Eastern Goldfields Province of Western Australia, is a relatively fresh and well exposed Archaean felsic volcanic centre that is preserved in a synclinal structure at the top of the local greenstone succession. Subaerial acid pyroclastic deposits and subordinate lava flows, intruded by anastomosing intermediate‐acid dykes and sills, comprise the near‐vent facies. In the distal regions of the centre, subaqueous crystal tuff and other tuff units are intercalated with epiclastic sediments. Geochemical modelling indicates that the acid rocks are unlikely to have been derived by batch partial melting of probable crustal sources. However, differentiation from intermediate parents is compatible with the available geochemical data. The intermediate rocks, in turn, have critical geochemical characteristics comparable with all other studied intermediate calc‐alkaline rocks in the Yilgarn Block. Since it can be demonstrated that many of these rocks have an ultimate mantle source (through differentiation of LIL element enriched mafic primary magmas) it follows that such an origin is applicable in the Spring Well rocks. Therefore, it is concluded that the Spring Well volcanic complex represents a mantle‐derived, calc‐alkaline differentiation series, in which the more silicic members of the suite predominate. Apart from the diagnostic geochemical characteristics of these acid volcanic rocks, their spatial association with intermediate rocks distinguishes them from anatectic acid volcanic rocks that also occur in the greenstone sequences of the Yilgarn Block. 相似文献
73.
R. Offler 《Australian Journal of Earth Sciences》2013,60(3-4):443-455
In the Upper Murray Valley, Victoria, Late Silurian, high‐Si igneous rocks, which are closely associated with alkalic, basaltic dykes, were emplaced at high crustal levels following the peak of the Benambran Orogeny, which deformed and metamorphosed the Wagga Zone in Late Ordovician‐Early Silurian times. These rocks, which are informally termed ‘the Upper Murray high‐Si magmatic suite’, include leucogranites, rhyolite dykes and flows, and ash‐flow tuffs characterised by the following features. They are transitional from mildly peraluminous to mildly metaluminous; they represent relatively anhydrous magmas, in which halides were important volatile constituents; they have high Si, total alkalies, Rb, Th, U, Nb, Sn and heavy rare earth elements; and they are relatively repleted in Mg, Ca, Sr, Eu, V, Cr and Ni. In these respects and in their post‐orogenic setting and close association with alkalic basalts, they resemble many post‐orogenic granitoids from elsewhere. Such granitoids appear to have formed as partial melts during crustal extension following major episodes of deformation and high‐Si magmatism. A residual granulitic crust, from which an earlier generation of granitoid magmas had been extracted, is argued to be the source rock‐type for these post‐orogenic magmas. Tectonic extension, affecting such a crust, was accompanied by deep fracturing and basaltic vol‐canism. Mantle‐derived, CO2‐ and halide‐rich fluids moved into the residual crust, causing widespread metasomatism, and emplacement of basaltic magma caused temperatures to rise until melting took place and a second group of magmas was produced. This model explains most aspects of the trace and major element chemistry of post‐orogenic, high‐Si igneous rocks and, for the Upper Murray high‐Si suite it also provides an explanation for variations in trace elements and isotopic characteristics. Other processes, such as crystal fractionation, magma mixing, thermogravi‐tational diffusion, and separation and loss of a volatile phase, provide explanations for variations within individual units of the suite, but they do not explain overall variations or the highly fractionated nature of the suite. 相似文献
74.
福建永泰云山碱性流纹岩的厘定及其地质意义 总被引:4,自引:0,他引:4
福建永泰云山破火山石帽山群第三旋回顶部的霏细流纹岩含有霓石、钠铁闪石等碱性铁镁矿物。化学成化富硅、富碱,碱性指数(AKI值)大于0.90,Rb、Th、Zr、Ga等元素的含量高,Ga/Al值大;贫钙、镁、铝和过渡族元素,轻、重稀土比值较小,并具有显著的负铕异常。在K2O-Na2O及以Ga/Al值为基础的多种判别图上均投影在A型花岗岩区。上述特征与其邻近的魁歧典型碱性花岗岩相似,也可与国外有关典型碱性 相似文献
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76.
采用聚丙烯酰胺凝胶垂直板电泳法 ,对中国两性生殖卤虫 Artemia sinica的 1 4个品系的碱性磷酸酶、酸性磷酸酶同工酶基因的表达特征进行了分析 ,并与 Artemia urmiana的碱性磷酸酶、酸性磷酸酶同工酶基因的表达特征进行了比较研究。结果表明 :中国两性生殖卤虫各品系的 ALP、 ACP同工酶的酶谱相同 ,均为单体酶。 ALP、 ACP同工酶分别由 ALP - 1、 ACP- 1 ,ALP- 2、ACP- 2 ,ALP- 3、ACP- 3三个基因座位编码 ,ALP- 1、ACP- 1座位存在a、 b两个共显性等位基因 ,ALP- 2、ACP- 2存在 a、b、c三个等位基因 ,ALP- 3、ACP- 3座位存在 a、b两个等位基因。共发现 7种基因型 :1 .0 / cc/ bb,2 .0 / bb/ bb,3.0 / aa/ aa,4.0 /ab/ aa,5.0 / ac/ ab,6.0 / ac/ aa,7.ab/ ab/ aa。仅在 A.urmiana中发现 0 / cc/ bb、 0 / bb/ bb基因型 ,而 A.sinica的主要基因型为 :0 / ac/ aa、 0 / ab/ aa、 0 / aa/ aa。仅 GN品系的 ALP - 1、 ACP- 1有基因座位表达。 相似文献
77.
基于前人有关膨润土在碱性环境下的室内试验和数值模拟的研究结果 ,重点阐述了碱金属离子及碱溶液对膨润土矿物成分、微观结构、膨胀性和渗透性等方面的影响,讨论了温度、pH值与溶液浓度等对上述过程的影响。碱金属离子及碱性溶液不仅可交换膨润土中蒙脱石层间阳离子,而且可溶解膨润土中的蒙脱石,生成非膨胀性矿物,并随着温度和pH值升高,蒙脱石被溶解程度增加,从而导致了膨润土膨胀力减小,且随着温度、溶液浓度及pH值的增加,膨胀力削弱程度加强;同时,膨润土与碱金属离子及碱溶液接触时孔隙增多,进而渗透性增强,随着温度和溶液浓度增加,渗透性也明显增强。数值模拟可实现膨润土与碱性溶液长期接触时发生的矿物成分及渗透性变化的预测。高温、不同pH值的低碱性溶液及其耦合作用对膨润土的矿物化学成分、微观结构、膨胀力和渗透性的影响及机理研究应该是今后研究的重点。 相似文献
78.
79.
古里雅冰帽8米浅冰芯的化学成分组成特征及其来源 总被引:10,自引:3,他引:10
对古里雅冰帽8m浅冰芯的80个雪冰样品化学分析结果表明,化学成分主要来自陆源物质,陆源冰芯样品叶弱碱性,明显不同于一般的大气降水及南北极冰雪样品。 相似文献
80.
碱性暗色矿物作为具有特殊指示意义的矿物,其存在对岩浆演化过程具有重要的意义。毛家屯花岗岩体位于兴蒙造山带东部的小兴安岭—张广才岭南段,岩体内部发育碱性暗色矿物。以毛家屯岩体内部发育的碱性暗色矿物为研究对象,进行了矿物学和矿物化学电子探针分析。研究表明,碱性角闪石的类型为铁-镁铝钠闪石,具有富碱,尤其富钠、富硅、富铁、贫钙、镁、钛等特征。辉石的类型为霓辉石,化学特征上高硅-高钠,高铁,低钛、镁、铝、锰。碱性暗色矿物主岩为碱性岩,成因类型为铝质A型花岗岩类。毛家屯花岗岩碱性角闪石具有很低的M值,证明其来源于地壳物质的熔融。毛家屯花岗岩中碱性角闪石的特征指示,在结晶过程中,岩浆体系处于封闭还原条件,且岩体从中央到边部存在偏酸性和偏基性组分分带现象。结合前人的同位素和年代学方面的分析资料,认为毛家屯碱性花岗岩形成于造山后期伸展转换环境中。 相似文献