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High Temperature Structural Modifications of Intercalated Montmorillonite Clay Mineral with OH-A1 Polymers

机译:用OH-A1聚合物嵌入蒙脱石粘土矿物质的高温结构改性

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Two montmorillonitic clays were put into contact with a solution containing inorganic OH-A1 polymers and subsequently washed and dried. The obtained solid (i.e.the clays with the OH -Al species in the montmorillonite interlayer) which was called the precursor, was subjected to a thermal treatment up to 1000 ° C using DTA-TG for analysis at low temperature. Additionally, the structural changes of the precursor by heating at 1030, 1100 and 1200 ° C for 2 hours and that of the natural clays were examined. The crystallinity and formation of new phases was followed by x-ray diffraction analysis. Mullite and cordierite were originated depending on the different contents of aluminium and magnesium in the structure of natural montmorillonite, respectively, accompanied with other phases. The intercalated OH-A1 species in both clays favored the increase in the mullite content in the final products. However, the transformation to this phase was directly related to the octahedral aluminium of the natural clay and thus mullite was found to be the dominant phase from montmorillomite containing higher octahedral Al.
机译:将两种蒙脱石粘土与含有无机OH-A1聚合物的溶液接触并随后洗涤并干燥。所得的固体(即,用蒙脱石中间层中的甲醛种类的粘土),其称为前体,在低温下进行DTA-Tg进行高达1000℃的热处理。另外,通过在1030,1100和1200℃下加热2小时的前体通过加热2小时的结构变化以及天然粘土。然后通过X射线衍射分析进行新相的结晶度和形成。莫来石和堇青石起源于自然蒙脱石结构的铝和镁的不同含量,分别伴随着其他相。两种粘土中的插入的OH-A1物种赞成最终产品中莫来石含量的增加。然而,对该阶段的转化与天然粘土的八半铝铝直接相关,因此发现莫来石是来自蒙米米石的显性阶段,含有高八面体Al。

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