西加里曼丹曼帕瓦地区花岗闪长岩与安山岩红土铝土矿成因对比

D. Mildan, A. Subandrio, Prayatna Bangun, D. Sunjaya
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摘要

西加里曼丹孟巴瓦地区红土铝土矿床是白垩系花岗闪长岩和安山岩化学风化作用的产物。它们发生在被沼泽地区包围的低山上。通过详细的地表地质填图、试坑、矿物学和地球化学分析,确定了不同母岩铝土矿的特征和成因。从下向上,矿床由新鲜母岩、粘土或灰质带、铝土矿带(铝土矿带顶部有少量稀疏的铁铁矿)和土壤组成。铝土矿产自花岗闪长岩,呈棕红色,块状,块状至砾石大小,在粘土基质中结块,主要由三长石、高岭石、石英、针铁矿和少量磁铁矿、赤铁矿组成。源自安山岩的铝土矿呈红褐色,以针铁矿为主。在浸出过程中,中性pH下SiO2作为可移动化合物显著降低,而Al2O3和Fe2O3作为残留物质沉淀形成铝土矿结块。源自安山岩的铝土矿富集异常是由热液蚀变的物化变化引起的。铝土矿是在热带湿润气候下原生矿物浸出间接铝土化而成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Contrasting Genesis of Lateritic Bauxite on Granodioritic and Andesitic Rocks of Mempawah Area, West Kalimantan
The lateritic bauxite deposits in the Mempawah area, West Kalimantan, were formed by the chemical weathering of Cretaceous granodioritic and andesitic rocks. They occurred locally on the low hills surrounded by swampy areas. Detailed surface geological mapping, test pits, mineralogical and geochemical analyses were performed to determine the characteristics and genesis of bauxite from different parent rocks. From bottom upward, the deposits are composed of fresh parent rocks, clay or pallid zone, bauxite zone with a few sparse ferricrete at the top of the bauxite zone, and soil. Bauxite derived from granodiorite exhibits brownish-red, massive, boulder to gravel-sized concretion in clay matrix and is composed of predominant gibbsite with subordinate kaolinite, quartz, goethite, and a minor amount of magnetite and hematite. In contrast, bauxite derived from andesitic rocks exhibits reddish-brown and is composed of predominant goethite. During the leaching process, SiO2 as a mobile compound decreased significantly in neutral pH, while Al2O3 and Fe2O3 precipitated as residual materials to form bauxite concretion. The enrichment anomaly of bauxite derived from andesitic rocks is caused by physio-chemical changes from hydrothermal alteration. Bauxite was formed by indirect bauxitization through the leaching of primary minerals under a tropical-humid climate.
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