...
首页> 外文期刊>Geoderma: An International Journal of Soil Science >Mineral and geochemical characterization of a leptic aluandic soil and a thapto aluandic-ferralsol developed on trachytes in Mount Bambouto (Cameroon volcanic line).
【24h】

Mineral and geochemical characterization of a leptic aluandic soil and a thapto aluandic-ferralsol developed on trachytes in Mount Bambouto (Cameroon volcanic line).

机译:在班布图山(喀麦隆火山线)的长直面上形成的贫化的铝质土壤和thapto铝质-ferralsol的矿物和地球化学特征。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Mineral and geochemical investigations were carried out on soil samples and fresh rock (trachytes) from two selected soil profiles (TM profile on leptic aluandic soils and TL profile on thapto aluandic-ferralsols) from Mount Bambouto to better understand geochemical processes and mineral paragenesis involved in the development of soils in this environment. In TM profile, the hydrated halloysites and goethite occur in the weathered saprolite boulders of BC horizon while dehydrated halloysite, gibbsite and goethite dominate the soils matrices of BC and A horizons. In TL profile, the dehydrated halloysites and goethite are the most abundant secondary minerals in the weathered saprolites of C and BC horizons while gibbsite, hematite and kaolinite occur in the soil matrices of BC, B and A horizons. The highest gibbsite content is in the platy nodules of B horizon. In both soil profiles, organo-metal complexes (most likely of Al and Fe) are present in the surface A horizon. Geochemically, between the fresh rock and the weathered saprolites in both soils, SiO2, K2O, CaO, Na2O and MgO contents decrease strongly while Fe2O3 and Al2O3 tend to accumulate. The molar ratio of SiO2/Al2O3 (Ki) and the sum of Ca, Mg, K and Na ions (TRB) also decreases abruptly between fresh rocks and the weathered saprolites, but increases significantly at the soil surface. The TM profile shows intense Al enrichment whereas the TL profile highlights enrichment in both Al and Fe as the weathering progresses upwards. Both soil profiles are enriched in Ni, Cu, Ba and Co and depleted in U, Th, Ta, Hf, Y, Sr, Pb, Zr and Zn relative to fresh rock. They also show a relatively low fractionation of the rare earth elements (REE: La, Nd, Sm, Eu, Tb, Yb and Lu), except for Ce which tends to be enriched in soils compared to CI chondrite. All these results give evidence of intense hydrolysis at soil deep in Mount Bambouto resulting in the formation of halloysite which progressively transforms into gibbsite and/or dehydrated halloysite. At the soil surface, the prominent pedogenetic process refers to andosolization with formation of organo-metal complexes. In TL profile, the presence of kaolinite in soil matrices BC and B horizons is consistent with ferralitization at soil deep. In conclusion, soil forming processes in Mount Bambouto are strongly influenced by local climate: (i) in the upper mountain (>2000 m), the fresh, misty and humid climate favors andosolization; whereas (ii) in the middle lands (1700-2000 m) with a relatively dry climate, both andosolization at the soil surface and ferralitization at soil deep act together.
机译:对班博图山的两种选定的土壤剖面(无菌铝质土壤的TM剖面和thapto铝土铁铝溶胶的TL剖面)进行了土壤样品和新鲜岩石(针形岩)的矿物和地球化学研究,以更好地了解涉及到的地球化学过程和矿物共生在这种环境下土壤的发展。在TM剖面中,水合的埃洛石和针铁矿出现在BC层风化的腐泥土巨石中,而脱水的埃洛石,三水铝石和针铁矿则主导BC和A层的土壤基质。在TL剖面上,脱水的埃洛石和针铁矿是C和BC层风化腐泥土中最丰富的次生矿物,而BC,B和A层的土壤基质中有菱铁矿,赤铁矿和高岭石。最高的三水铝石含量是在B地平线的板状结核中。在这两种土壤剖面中,有机金属络合物(最可能是Al和Fe)都存在于A面。从地球化学来看,两种土壤中新鲜岩石和风化腐泥土之间的SiO 2 ,K 2 O,CaO,Na 2 O和MgO含量Fe 2 O 3 和Al 2 O 3 倾向于累积而强烈降低。 SiO 2 / Al 2 O 3 (Ki)的摩尔比以及Ca,Mg,K和Na离子的总和(TRB)在新鲜岩石和风化的腐泥土之间也会急剧减少,但在土壤表面会明显增加。 TM分布图显示了强烈的Al富集,而TL分布图显示了随着风化的进行,Al和Fe均富集。相对于新鲜岩石,两种土壤剖面均富含Ni,Cu,Ba和Co,但贫乏的U,Th,Ta,Hf,Y,Sr,Pb,Zr和Zn。它们还显示出稀土元素(REE:La,Nd,Sm,Eu,Tb,Yb和Lu)的相对较低的分馏率,除了Ce相比CI球粒陨石倾向于在土壤中富集。所有这些结果提供了在班博图山深处的土壤中强烈水解的证据,从而导致了埃洛石的形成,该埃洛石逐渐转变为三水铝石和/或脱水的埃洛石。在土壤表面,显着的成岩作用是指通过有机金属配合物形成而形成的雄黄。在TL剖面中,土壤基质BC和B层中高岭土的存在与土壤深层的铁素体化一致。总之,班博托山的土壤形成过程受到当地气候的强烈影响:(i)在高山(> 2000 m)中,新鲜,多雾和潮湿的气候有利于进行阳化; (ii)在气候相对干燥的中部土地(1700-2000 m)中,土壤表面的雄激素化作用和土壤深部的铁素体化作用共同起作用。

著录项

相似文献

  • 外文文献
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