...
首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Geochemical balance of lateritization processes and climatic signatures in weathering profiles overlain by ferricretes in Central Africa
【24h】

Geochemical balance of lateritization processes and climatic signatures in weathering profiles overlain by ferricretes in Central Africa

机译:中非铁矿覆盖的风化剖面中红化过程和气候特征的地球化学平衡

获取原文
获取原文并翻译 | 示例

摘要

A simple geochemical balance of lateritization processes governing the development of several tens of meters of weathering profiles overlain by ferricretes is estimated on the basis of detailed mineralogical and geochemical data. The lateritic weathering mantle of the "Haut-Mbomou" area in Central Africa is composed of different weathering layers described from the base to the top of vertical profiles as a saprolite, a mottled clay layer, a soft nodular layer, a soft ferricrete, and a ferricrete in which kaolinite, gibbsite, goethite, and hematite occur in various quantities. Incongruent dissolution of kaolinite leads to the formation of gibbsite in the upper saprolite, whereas the hematite does not clearly replace the kaolinite according to an epigene process in the upper ferruginous layers of the profiles. Instead, that kaolinite is also transformed into gibbsite according to an incongruent dissolution under hydrated and reducing conditions induced by a relatively humid climatic pattern. The respective relations of the silica, iron, and aluminum balances and the Al substitution rate of the hematite on the one hand, and of RHG [RHG = 100 (hematite/hematite + goethite)] and the kaolinite on the other hand, to the consumption or the release of protons H~+ permit differentiation of aggrading ferruginization and degradation processes operating in the different lateritic weathering profiles. The Al substitution rate of the Fe-oxyhydroxides varies according to the nature of lateritization processes, e.g., saprolitic weathering and aggrading ferruginization vs. degradation. The observations and results indicate that the ferruginization process of the weathering materials of parent rocks is not a simple ongoing process as often thought. This suggests that the actual lateritic weathering mantle of the Haut-Mbomou area may result from different stages of weathering and erosion during climatic changes.
机译:在详细的矿物学和地球化学数据的基础上,估计了治理过程的简单地球化学平衡,该过程控制了由铁矿覆盖的数十米的风化剖面的发展。中部非洲“ Haut-Mbomou”地区的红土风化地幔由不同的风化层组成,从垂直剖面的底部到顶部描述为腐泥土,斑驳的粘土层,柔软的球状层,柔软的铁素体和一种高铁矿,三水铁矿,针铁矿和赤铁矿大量存在的铁酸盐。高岭石的不均匀溶解导致在上部腐泥土中形成三水铝石,而根据表观遗传过程,在剖面的上部铁质层中,赤铁矿不能明显替代高岭石。取而代之的是,高岭石还根据在相对潮湿的气候模式引起的水合和还原条件下的不相容溶解而转化为三水铝石。一方面,赤铁矿和另一方面,RHG [RHG = 100(赤铁矿/赤铁矿+针铁矿)]和高岭石对二氧化硅,铁和铝的平衡以及铝的替代率的关系消耗或释放质子H +可以区分在不同的红土风化剖面中进行的铁素化和降解过程。 Fe-羟基氧化物的Al取代率根据后处理过程的性质而变化,例如腐烂腐烂和铁素化与降解的关系。观察和结果表明,母岩风化材料的铁素化过程并不是人们通常认为的简单的持续过程。这表明上姆博穆地区的实际红土风化地幔可能是由于气候变化期间风化和侵蚀的不同阶段造成的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号