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Comprehensive physicochemical study of dioctahedral palygorskite-rich clay from Marrakech High Atlas (Morocco)

机译:马拉喀什高阿特拉斯(摩洛哥)富含八面体坡缕石的粘土的综合理化研究

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摘要

This study is devoted to the physicochemical and mineralogical characterizations of palygorskite from Marrakech High Atlas, Morocco. The raw clay and its Na?-saturated 2 lm fraction were characterized using chemical, structural, and thermal analytical techniques. Measurements of specific surface area and porous volume are reported. The clay fraction was found to be made up of 95 %of palygorskite and 5 % of sepiolite. An original feature of this palygorskite is its deficiency in zeolitic H2O. The half-cell structural formula of its dehydrated form was determined on the basis of 21 oxygens to be (Si7.92Al0.08)(Mg2.15Al1.4Fe0.4Ti0.05h1)(Ca0.03 Na0.08K0.04)O21, while the hydrated form could be formulated as (Si7.97Al0.03)(Mg2.17Al1.46Fe0.40Ti0.05)(Ca0.03Na0.07K0,03) O20.18(OH)1.94(OH2)3.8812.43H2O. These formulas showthat the (Al3??Fe3?)/Mg2? ratio is around 0.84, revealing a pronounced dioctahedral character. Further, inside its octahedral sheet, it was determined that the inner M1 sites are occupied by vacancies, whereas the M2 sites are shared between 90 % of trivalent cations (78 % for Al3? and 22 % for Fe3?), 7.5 % of Mg2+, and 2.5 % of Ti4+, all of them linked to 1.94 of structural hydroxyls. The two remaining Mg2+ by half-cell occupy edge M3 sites and are coordinated to 3.88 molecules of OH2. Channels of this palygorskite are deficient in zeolitic H2O since they contain only 2.43 H2O molecules.A correlation was found between these results and the observation of very intense and well-resolved FTIR bands arising from dioctahedral domains (mainly Al2OH, Fe2OH, and AlFeOH) along with very small responses from a trioctahedral domain (Mg3OH). Accordingly, a schematic representation of the composition of the octahedral sheet was proposed. The cation exchange capacity, specific surface area, and total pore volume were also assessed to be ca. 21.2 meq/100 g, 116 m2/g, and 0.458 cm3/g, respectively.
机译:这项研究致力于摩洛哥马拉喀什高地图集的坡缕石的物理化学和矿物学特征。用化学,结构和热分析技术对未加工的粘土及其饱和Na 2/2 lm级分进行了表征。报告了比表面积和多孔体积的测量。发现该粘土部分由95%的坡缕石和5%的海泡石组成。该坡缕石的原始特征是其沸石水中的缺乏。根据21个氧确定其脱水形式的半电池结构式为(Si7.92Al0.08)(Mg2.15Al1.4Fe0.4Ti0.05h1)(Ca0.03 Na0.08K0.04)O21,而水合形式可以表示为(Si7.97Al0.03)(Mg2.17Al1.46Fe0.40Ti0.05)(Ca0.03Na0.07K0.03)O20.18(OH)1.94(OH2)3.8812.43H2O。这些公式表明(Al3→Fe3 +)/ Mg2·3。比率约为0.84,显示出明显的八面体特征。另外,在其八面体片内,确定内部的M1位被空位占据,而M2位在90%的三价阳离子(Al3 +为78%和Fe3 +为22%),7.5%的Mg2 +之间共享。以及2.5%的Ti4 +,它们都与1.94的结构羟基相连。半电池剩余的两个Mg2 +占据边缘M3位置,并与3.88个OH2分子配位。该坡缕石的通道缺乏沸石H2O,因为它们仅包含2.43个H2O分子。这些结果与观察到的由二面八面体域(主要为Al2OH,Fe2OH和AlFeOH)形成的非常强烈且分辨良好的FTIR谱带之间存在关联。三八面体结构域(Mg3OH)的响应很小。因此,提出了八面体片的组成的示意图。阳离子交换容量,比表面积和总孔体积也被评估为约。分别为21.2 meq / 100 g,116 m2 / g和0.458 cm3 / g。

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