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作品数:3 被引量:23H指数:3
相关作者:陈静李景阳朱立军更多>>
相关机构:贵州大学更多>>
发文基金:国家自然科学基金贵州省科学技术基金国家重点基础研究发展计划更多>>
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碳酸盐岩风化成土的交代作用机理:Ⅰ.矿物与微结构证据被引量:7
2002年
通过对贵州、广西亚热带岩溶地区碳酸盐岩红色风化壳典型剖面的矿物学与微结构研究 ,从不同研究尺度和剖面不同部位都观察到大量碳酸盐岩风化成土过程中交代作用发育的最直接和最重要的矿物与微结构证据。首次较为系统讨论了碳酸盐岩风化成土的交代作用机理 。
朱立军李景阳
关键词:矿物微结构碳酸盐岩红色风化壳交代作用
Weathering-pedogenesis of Carbonate Rocks and Its Environmental Effects in Subtropical Region被引量:4
2008年
We investigated the weathering-pedogenesis of carbonate rocks and its environmental effects in subtropical regions of China. The investigation demonstrated that the weathering- pedogenesis of carbonate rocks is the process of a joint action of corrosion and illuviation and metasomatism in subtropical region. It is characterized by multi-stage, multi-path and multi-style. With the persisting development of weathering-pedogenesis of carbonate rocks, metasomatic pedogenesis progressively became the main process of the weathering-pedogenesis and the dominant style of formation of minerals. And it proceeds through the whole process of evolution of the weathering-pedogenesis of carbonate rocks. The stage evolution of weathering-pedogenesis of carbonate rocks and the fractionation evolution of newly produced minerals are characterized by obvious vertically zoning structures and the rules of gradation of elements geochemical characteristics in the carbonate rocks weathering profiles. The geochemical process of weathering-pedogenesis of carbonate rocks can be divided into three geochemical evolution stages, i.e., the Ca, Mg-depletion and Si, Al-enrichment stage; the Fe, Mn enrichment stage and the Si-depletion and Al-enrichment stage in the subtropical regions. Consistent with the three geochemical evolution stages, the sequence of formation and evolution of minerals can be divided into the clay mineral stage; the Fe, Mn oxide and the gibbsite stage. The influence of weathering-pedogenesis of carbonate rocks on the chemical forms of heavy elements is mainly affected via newly produced components and minerals in the process of weathering-pedogenesis, e.g., iron oxide minerals and organic matters. The important mechanism for the mobilization, transport and pollution of F and As is affected the selective adsorption and desorption of F and As on the surface of iron oxide minerals in the subtropical karst zones, i.e., the selective adsorption and desorption on mineral surfaces of newly produced minerals in the process of weath
ZHU LijunHE ShouyangLI Jingyang
氧化铁矿物作为环境材料在土壤和水体中的应用被引量:12
2001年
本文简要介绍了氧化铁矿物的基本性能和应用领域 ,着重阐述了氧化铁矿物在土壤改良和治理土壤中重金属有毒元素和水体污染中的应用 ,明确提出氧化铁矿物作为环境矿物材料储量大、提取简单、治理污染设备简易且效果好、无二次污染 。
陈静
关键词:氧化铁水体环境矿物材料重金属污染治理
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