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首页> 外文期刊>International Geology Review >New evidence for two sharp replacement fronts during albitization of granitoids from northern Aravalli orogen, northwest India
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New evidence for two sharp replacement fronts during albitization of granitoids from northern Aravalli orogen, northwest India

机译:来自印度西北部阿拉瓦里造山带的花岗岩类化过程中两个尖锐的置换锋的新证据

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We present new evidence of infiltration metasomatism in granitoids that were albitized in a process that produced two sharp replacement fronts, both of which are clearly visible in the field. The two fronts advanced through the original granite simultaneously, but at different rates. Here we focus mainly on the Ajitgarh intrusive in the northern Aravalli orogen of northwest India. This intrusion shows geographically well-defined metasomatic zones on the outcrop scale as well as a large volume of original ferroan granite, both of which were poorly preserved in most of the previously studied Khetri granites. Stage I metasomatism transformed the grey original granite to pink microcline-albite granite, and stage II converted the microcline-albite granite to white albite granite. Both these reaction fronts are sharp and are easily recognized in the field by their different colours. The mineralogical and chemical changes during the first stage are expressed by transformation of original oligoclase to albite, biotite (annite-rich) and hastingsite (amphibole) to hastingsite with low X-Fe values, dehydration, gain in Na, and losses in Fe and Rb. The second stage of metasomatism caused almost complete conversion of microcline to albite and complete or nearly complete disappearance of amphibole. Chemically, these changes are manifested by substantial gain in Na and extreme losses in K, Rb, Ba, Ca, Sr, Fe, and Mg. Depending on the modal abundances of amphibole, stage II albitized rocks are depleted in light rare earth elements or heavy rare earth elements or both, signifying that rare earth elements are principally hosted by mafic phases. The disparity in whole-rock delta O-18 values during both stages of albitization is related to the variations in modal amounts of Si-bearing phases. The replacement microstructures are in accord with the fluid-mediated phase transformations by a coupled dissolution-precipitation mechanism. The albitizing event took place at low temperatures of 350-400 degrees C and the fluid was metamorphic in nature.
机译:我们提供了新的证据表明,类固醇浸润交感作用在产生两个尖锐的置换前沿的过程中被仲裁,这两个突变在现场都清晰可见。两条战线同时以不同的速度穿过原始花岗岩。在这里,我们主要关注印度西北部北部Aravalli造山带的Ajitgarh侵入体。这次入侵显示出露头尺度上地理上明确界定的交代带以及大量的原始亚铁花岗石花岗岩,这两者在大多数先前研究的Khetri花岗岩中都保存得很差。第一阶段交代作用将灰色的原始花岗岩转变为粉红色微斜花岗岩,而第二阶段将微花岗岩的花岗岩转变为白色钠长花岗岩。这两个反应前沿都很锋利,并且通过它们的不同颜色很容易在现场识别。第一阶段的矿物学和化学变化表现为原始低聚寡糖转变为钠长石,黑云母(富含铁长石)和黑闪石(闪石)到具有低X-Fe值的黑闪石,脱水,Na的增加以及Fe和Fe的损失b交感作用的第二阶段导致微碱几乎完全转化为钠长石,而闪石几乎完全消失。化学上,这些变化表现为Na的大量增加和K,Rb,Ba,Ca,Sr,Fe和Mg的极度损失。取决于闪石的模态丰度,II期奥氏体化岩石中的轻稀土元素或重稀土元素或两者都被消耗掉,这表明稀土元素主要由镁铁质相组成。在整个阿尔金化阶段,整个岩石δO-18值的差异与含硅阶段的模态量变化有关。替代的微结构通过耦合的溶解-沉淀机理与流体介导的相变相一致。仲裁过程发生在350-400摄氏度的低温下,流体本质上是变质的。

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