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Chemical and mineralogical transformations accompanying the weathering of retorted oil shale.

机译:蒸馏油页岩的风化伴随着化学和矿物学转变。

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摘要

The development of western oil shale reserves will present major environmental problems due to the generation of huge quantities of mineral waste (retorted oil shale). The goals of this study are to investigate the extent of weathering within a retorted oil shale (ROS) spoil pile, in order to better understand the long term environmental impact of the material.; The U.S. Bureau of Mines operated a pilot scale retort facility in Rulison, Colorado from 1926 to 1929. Core samples from the spoil pile associated with this project were obtained by the U.S. Geological Survey, and serve as the basis for this work. The effects of over 50 years of natural weathering were investigated by using batch equilibration studies to characterize the aqueous dissolution rates of analytes from samples obtained at different depths in the spoil pile. In support of the dissolution studies, differential thermal analysis and scanning electron microscopy with energy dispersive x-ray analysis were used to examine changes in the composition and morphologies of the particles.; Dissolution rate curves, in conjunction with scanning electron microscopy, suggest the existence of different phases of an ROS particle. A highly weathered surface sample consists of two phases; the bulk silicate mineral matrix which is only very slowly soluble, and a second phase external to the bulk which consists primarily of readily soluble salts. In contrast, subsurface samples which are not highly weathered, often contain a third phase, formed from the translocation and redeposition of material at various depths. Rates of dissolution depend on the phase from which the analyte originates, although solubility and ion exchange equilibria contribute to the shapes of the dissolution curves.; Weathering processes have not significantly altered the major mineral composition of ROS as yet. The mineral matrix itself has remained largely intact. However, laboratory weathering studies and x-ray diffraction analysis suggest that accelerated weathering of the silicate mineral matrix will occur in the presence of these highly alkaline leachates.
机译:西部油页岩储量的开发将由于产生大量矿物废物(干馏油页岩)而带来主要的环境问题。这项研究的目的是研究干馏油页岩(ROS)弃渣堆中的风化程度,以便更好地了解材料的长期环境影响。美国矿务局从1926年至1929年在科罗拉多州的鲁里森(Rulison)运营了一个试验规模的脱水罐设施。与该项目相关的弃渣堆的岩心样品由美国地质调查局获得,并以此为基础。通过使用批处理平衡研究来研究超过50年的自然风化的影响,以表征在弃渣堆中不同深度获得的样品中分析物的水溶解速率。为了支持溶出度研究,使用了差热分析和带有能量色散X射线分析的扫描电子显微镜检查了颗粒组成和形态的变化。溶解速率曲线与扫描电子显微镜相结合,表明存在ROS颗粒的不同相。高度风化的表面样品包含两个阶段:块状硅酸盐矿物基质仅是非常缓慢溶解的,而块状外部的第二相主要由易溶盐组成。相反,未高度风化的地下样品通常包含第三相,该第三相是由材料在不同深度处的易位和再沉积形成的。溶解速率取决于分析物的起源相,尽管溶解度和离子交换平衡有助于溶解曲线的形状。迄今为止,风化过程并未显着改变ROS的主要矿物成分。矿物基质本身基本上保持完整。但是,实验室风化研究和X射线衍射分析表明,在存在这些高碱性浸出液的情况下,硅酸盐矿物基体会加速风化。

著录项

  • 作者

    McGee, Irene Elizabeth.;

  • 作者单位

    University of New Hampshire.;

  • 授予单位 University of New Hampshire.;
  • 学科 Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 1988
  • 页码 117 p.
  • 总页数 117
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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