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Genesis, mineralogy, and geochemistry of a red-black (alfisol-vertisol) complex, northeastern Queensland, Australia.

机译:澳大利亚昆士兰州东北部的红黑(alfisol-vertisol)复合物的成因,矿物学和地球化学。

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摘要

A red-black complex of Udic Paleustalfs and Typic Pellusterts occurs on gently undulating metamorphic and igneous uplands, northeastern Australia. The research objectives were to elucidate factors that influence(d) the genesis of these soils, and to characterize the pedogenic dynamics in this landscape. The relationships among soils, parent rocks, and landscape were investigated. Four typical pedons representing end-member red Paleustalfs and black Pellusterts were sampled, one each formed from andesite and granodiorite gneiss. Two red-black soil boundary transitions (6 and 8 m long) were exposed, described at 0.5 m horizontal intervals, and the profiles manifesting the greatest morphological change were sampled. Chemical and physical soil properties, clay mineralogy, and soil solutions were characterized.; Parent rock has little influence on soil distribution relative to surface, subsurface, and internal soil hydrology. Field and laboratory results indicate that Alfisols are being progressively transformed into Vertisols. Along the red-black transition, Alfisols are subject to seasonal reducing conditions due to progressively poorer internal soil drainage. Active soil mixing occurs, evinced by red soil material along slickensides and engulfed in black peds at Vertisol margins. Black, smectite-rich soil material appears to be moving toward the low-activity Alfisols along shear planes, in response to Vertisol B-horizon swelling. Smectite-rich soil in the lower solum limits internal drainage. On a whole profile basis, free Fe-oxides and magnetic susceptibility decrease from Alfisol to Vertisol, whereas organic C and carbonates increase. The vertical distributions of silicate clay, organic C, Fe-oxide, and magnetic susceptibility become more uniform towards the Vertisol, due perhaps to pedoturbation. The dominant phyllosilicate in the Vertisols is Fe-rich smectite, whereas randomly interstratified kaolinite/smectite ({dollar}geq{dollar}80% kaolinite) dominates the Alfisols. The mixed-layer clay is ubiquitous along the red-black transition, decreasing relative to Fe-rich smectite towards the Vertisol. Iron is apparently conserved: Fe-oxides are reduced and Fe-rich smectites are formed. Vertical distributions of solutes indicate that Alfisols are better leached than Vertisols. The relative abundances of solutes increase along the transition, reflecting the progressive decrease in internal drainage from Alfisol to Vertisol. Unusually high Si activities in Alfisol and Vertisol surface horizons are controlled by highly soluble opaline grass phytoliths, which may contribute Si for smectite neosynthesis.
机译:Udic Paleustalfs和Typic Pellusterts的红黑复合体出现在澳大利亚东北部缓缓起伏的变质和火成山地上。研究目的是阐明影响这些土壤成因的因素,并表征该景观中的成岩动力学。研究了土壤,母岩和景观之间的关系。采样了代表末端成员红色古人和黑色Pellusterts的四个典型脚钉,每个脚钉分别由安山岩和花岗闪长片麻岩形成。暴露了两个红黑土壤边界过渡(长6 m和8 m),以0.5 m的水平间隔描述,并采样了表现出最大形态变化的剖面。表征了土壤的化学和物理性质,粘土矿物学和土壤溶液。相对于地表,地下和内部土壤水文学而言,母岩对土壤分布几乎没有影响。现场和实验室结果表明,Alfisols正在逐步转化为Vertisols。沿红黑过渡,由于内部土壤排泄逐渐恶化,Alfisol受到季节性减少条件的影响。活跃的土壤混合发生,这是由红色的土壤物质沿着光滑的滑石层证实的,并在Vertisol的边缘被黑色的小脚草吞没。响应于Vertisol B水平膨胀,黑色,富含绿土的土壤物质似乎正沿着剪切平面向低活性Alfisols移动。下贫民窟中富含绿土的土壤限制了内部排水。从总体上看,游离的铁氧化物和磁化率从铝铁矿到Vertisol减少,而有机碳和碳酸盐增加。硅酸盐粘土,有机碳,铁的氧化物和磁化率的垂直分布朝着Vertisol的方向变得更均匀,这可能是由于其扰动作用。 Vertisol中主要的页硅酸盐是富含Fe的蒙脱石,而随机分层的高岭石/蒙脱石({dollar} geq {dollar} 80%高岭石)主导着Alfisol。混合层粘土沿红黑过渡带普遍存在,相对于富含铁的蒙脱石,其向粉饰溶胶的含量降低。铁显然是保守的:铁的氧化物被还原,富铁的蒙脱石形成。溶质的垂直分布表明,Alfisol比Vertisols更好的浸出。溶质的相对丰度随着过渡而增加,反映出从Alfisol到Vertisol的内部排水逐渐减少。 Alfisol和Vertisol表面层中异常高的Si活性是由高度溶解的不透明的草状植物硅酸盐控制的,这可能有助于Si蒙脱石的新合成。

著录项

  • 作者

    Boettinger, Janis Lynn.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Geochemistry.; Mineralogy.
  • 学位 Ph.D.
  • 年度 1992
  • 页码 245 p.
  • 总页数 245
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;矿物学;
  • 关键词

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