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首页> 外文期刊>Clays and clay minerals >TRANSMISSION ELECTRON MICROSCOPY EVIDENCE FOR EXPERIMENTAL ILLITIZATION OF SMECTITE IN K-ENRICHED SEAWATER SOLUTION AT 50℃ AND BASIC pH
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TRANSMISSION ELECTRON MICROSCOPY EVIDENCE FOR EXPERIMENTAL ILLITIZATION OF SMECTITE IN K-ENRICHED SEAWATER SOLUTION AT 50℃ AND BASIC pH

机译:透射电镜观察50℃和碱性pH条件下富钾海水溶液中蒙脱石的实验无菌化

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摘要

Experimental illitization of smectite was studied by transmission electron microscopy (TEM) and X-ray diffraction (XRD). Experiments were performed on the <2 μm fraction consisting entirely of smectite separated from a soil formed on subvolcanic rock located in the External Zone of the Betic Cordilleras (southern Spain). Amounts of 0.25 g were added to different solutions: seawater, and three K-enriclied seawater solutions prepared by adding KOH to seawater whose final [K] values were 0.1, 0.5 and 1 M, respectively. The experiments were performed at 50℃ over a period of 30 days. The XRD patterns showed no mineralogical changes in residues from seawater or from the 0.1 M [K] solution. With increasing pH and K molarity, the smectite peak, initially at 1.4 nm, became broader. This change in the smectite peak was more significant in the residue from the 1 M [K] solution. The appearance of a small shoulder at 1.0 nm in the residue from a 0.5 M [K] solution showed the beginning of illite formation. However, its appearance was clearer in XRD patterns of the residue corresponding to the 1 M [K] solution. The XRD data from air-dried, glycolated, and heated samples from the 1 M [K] solution indicated the presence of smectite, disordered interstratified illite-smectite (I-S) and illite. The TEM/AEM studies were performed on the residue corresponding to the 1 M [K] experiment. The HRTEM images revealed that smectite and illite occurred as separated packets with a ferroan lizardite, as a by-product of the smectite-to-illite reaction, interstratified and intergrown with illite. Smectite occurs both as 'rims' on the illite packet and in its core. The presence of smectite in the core of illite packet indicates that the lateral transition from- smectite to illite was incomplete, taking place by direct replacement of smectite layers as a whole through a dissolution-precipitation mechanism. The experimental study shows that smectite may transform in a wide range of geological and artificial environments involving high-pH K-rich solutions.
机译:通过透射电子显微镜(TEM)和X射线衍射(XRD)研究了蒙脱石的实验非法化。对小于2μm的部分蒙脱石进行了实验,该蒙脱石从位于Betic Cordilleras(西班牙南部)外围地区的次火山岩上形成的土壤中分离出来。将0.25 g的量添加到不同的溶液中:海水,以及通过将KOH分别添加到最终[K]值分别为0.1、0.5和1 M的海水中而制备的三种K编码的海水溶液。实验在50℃下进行了30天。 XRD图谱显示海水或0.1 M [K]溶液中的残留物没有矿物学变化。随着pH和K摩尔浓度的增加,蒙脱石峰(最初为1.4 nm)变得更宽。在1 M [K]溶液的残留物中,蒙皂石峰的这种变化更为明显。在0.5 M [K]溶液的残留物中,在1.0 nm处出现小的肩部,表明伊利石开始形成。但是,其外观在对应于1 M [K]溶液的残留物的XRD图谱中更清晰。来自1 M [K]溶液的风干,糖化和加热样品的XRD数据表明存在蒙脱石,无序层状伊利石-蒙脱石(I-S)和伊利石。对对应于1 M [K]实验的残留物进行TEM / AEM研究。 HRTEM图像显示,蒙脱石和伊利石以铁包蜥蜴石的分离小包的形式出现,是蒙脱石与伊利石反应的副产物,与伊利石层化和互生。蒙脱石在伊利石包装及其核心中均以“边缘”的形式出现。伊利石小包岩心中蒙脱石的存在表明,通过溶解-沉淀机制直接替换整个蒙脱石层,是从蒙脱石到伊利石的横向过渡不完全的。实验研究表明,蒙脱石可能会在涉及高pH值富K溶液的广泛地质和人工环境中转化。

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