K. Sastrawiharja, S. Bijaksana, U. Fauzi, L. Pasasa
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引用次数: 0
摘要
火成岩,包括安山岩,由这些主要元素组成:Si, Ti, Al, Fe, Mn, Ca, Mg, Na, K和p。这些元素主要以氧化物的形式存在,其组成的变化决定了岩石的整体物理性质。毫不奇怪,火成岩的分类也是基于这些主要氧化物的数量。在本研究中,将爪哇岛安山岩的元素组成与磁化率各向异性(AMS)进行比较,作为我们探索使用岩石磁性参数对火成岩进行分类的可能性的一部分。目的是检查AMS参数是否可以作为化学分析的替代方法。为此,我们测量了来自中爪哇和日惹的10个不同地点的安山岩样品的AMS和地球化学成分。结果表明,某些元素的丰度与AMS参数之间存在显著的相关关系,如Fe和Al的丰度与磁线理相关,Al的丰度与各向异性程度相关。这些结果表明,磁性参数具有很好的变化性,可以作为火成岩主要元素组成的预测指标。
Anisotropy of Magnetic Susceptibility and Elemental Compositions in Andesitic Rocks
Igneous rocks, including andesites, are composed of these major elements: Si, Ti, Al, Fe, Mn, Ca, Mg, Na, K, and P. Variation in the composition of these elements, which occur mostly as oxides, determines the overall physical properties of the rocks. Not surprisingly, classification of igneous rocks is also based on the quantity of these major oxides. In this study, elemental compositions of andesitic rocks from the Island of Java will be compared to the anisotropy of magnetic susceptibility (AMS) as a part of our effort to explore the possibility of using rock magnetic parameters in classifying igneous rocks. The objective is to check whether AMS parameters could serve as alternative to chemical analysis. To do so, we have measured the AMS and geochemical composition of andesitic rock samples from 10 different sites across Central Java and Yogyakarta. The results show that there are significant correlations between the abundance of certain elements with AMS parameters, for example, the abundance of Fe and Al with magnetic lineation and the abundance of Al with degree of anisotropy. These results show that magnetic parameters have a good change to be use as predictors for major elements composition in igneous rocks.