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Genetic constraints on crystallinity, thermal behaviour and surface area of sepiolite from the Cerro de los Batallones deposit (Madrid Basin, Spain)

机译:Cerro de los Batallones矿床(西班牙马德里盆地)的海泡石结晶度,热行为和表面积的遗传约束

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摘要

The characterisation of sepiolite-bearing samples from five lutite associations occurring in the Cerro de los Batallones deposit has been carried out. Based on both the composition and texture of the sepiolite, two main formation patterns for this clay mineral, transformation from saponite by dissolution-precipitation and direct precipitation from solution, is proposed. From a compositional point of view, sepiolite oscillates between typical Mg-rich sepiolite and near Al-rich sepiolite, all samples showing variable swelling with ethylene glycol (up to 0.25 A). There is a relationship between mechanism of formation and crystallinity of the sepiolite mineral. Both DRX and FTIR analyses led to differentiate between low crystallinity sepiolite (LCS) and high crystallinity sepiolite (HCS). The presence of the triplet 2.61 A, 2.58 A and 2.56 A is especially useful for HCS identification. The two types of sepiolite show slightly a different thermal behaviour. In particular, coordinated water loss at 350 ℃ in LCS is higher than in HCS. BET surface area is high in all studied samples, reaching up to 360 m~2/g and 328 m~2/g in LCS and HCS, respectively. Differences in the microporosity and mesoporosity contribution have also been recognised. The reported dissimilarities account for differences in the technological behaviour of sepiolite clays and therefore these differences must be taken into account as they constrain industrial uses.
机译:已经对来自Cerro de los Batallones矿床中的5个黄铁矿的海泡石样品进行了表征。基于海泡石的组成和质地,提出了该粘土矿物的两种主要形成模式,即通过溶解沉淀从皂石转变和从溶液中直接沉淀。从组成的角度来看,海泡石在典型的富含Mg的海泡石和接近Al的海泡石之间振荡,所有样品均显示出乙二醇可变溶胀(最高达0.25 A)。海泡石矿物的形成机理与结晶度之间存在关系。 DRX和FTIR分析均导致区分低结晶度海泡石(LCS)和高结晶度海泡石(HCS)。三重峰2.61 A,2.58 A和2.56 A的存在对于HCS识别特别有用。两种类型的海泡石的热行为略有不同。特别是,LCS在350℃时的协同失水量高于HCS。在所有研究的样品中,BET表面积都很高,在LCS和HCS中分别达到360 m〜2 / g和328 m〜2 / g。也已经认识到微孔和中孔贡献的差异。所报道的差异解释了海泡石粘土在技术性能方面的差异,因此,在限制工业用途时必须考虑这些差异。

著录项

  • 来源
    《Applied clay science》 |2014年第4期|30-45|共16页
  • 作者单位

    Department of Geology and Geochemistry, Faculty of Sciences, Universidad Autonoma de Madrid, 28049 Madrid, Spain;

    Department of Petrology & Geochemistry, Universidad Complutense, c/ Jose Antonio Novais 2,28040 Madrid, Spain;

    Department of Geology and Geochemistry, Faculty of Sciences, Universidad Autonoma de Madrid, 28049 Madrid, Spain;

    Department of Geology and Geochemistry, Faculty of Sciences, Universidad Autonoma de Madrid, 28049 Madrid, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Sepiolite; Genesis; Crystallinity; BET surface area; Thermal behaviour;

    机译:海泡石;创世纪;结晶度BET表面积;热行为;

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