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首页> 外文期刊>Clay Minerals >Characterization of two forms of sepiolite and related Mg-rich clay minerals from Yenidogan (Sivrihisar, Turkey)
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Characterization of two forms of sepiolite and related Mg-rich clay minerals from Yenidogan (Sivrihisar, Turkey)

机译:Yenidogan(土耳其Sivrihisar)的两种海泡石和相关的富含Mg的粘土矿物的表征

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摘要

An Early Pliocene sedimentary succession in the Yenidogan area, Sivrihisar, Turkey, consists of sepiolite, stevensite, kerolite, dolomite and magnesite. The geology, mineralogy and geochemistry of the succession was examined by extensive field work along several trenches and a representative measured section, followed by X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), thermal, and chemical analyses. Structurally, two distinct forms of sepiolites were distinguished by XRD: (a) well crystallized sepiolite with a 110 reflection at 12.07-12.3 A, and (b) poorly crystallized sepiolite in which the 110 reflection occurs at 12.7-13.0 A (denoted as sepiolite-13A). Differences in crystal chemistry, thermal and morphological properties of these forms, the vibrational spectra and XRD characterization of the related phyllosilicates were also documented. Stevensite, kerolite and sepiolite were formed by direct precipitation from alkaline lake water rich in Mg and Si. Sepiolite-13A was probably formed by transformation from precursor smectite via dissolution-precipitation, more likely during early diagenesis. Environmental conditions such as ion concentration, salinity and variations in Ph may have controlled the formation of the phyllosilicates.
机译:土耳其西弗里希萨尔(Sivrihisar)的耶尼多根(Yenidogan)地区的上新世早期沉积演替包括海泡石,stevensite,kerolite,白云石和菱镁矿。通过沿数个沟槽和一个有代表性的被测断面进行广泛的野外工作,然后通过X射线衍射(XRD),傅里叶变换红外光谱(FTIR),扫描电子显微镜(SEM),热学,检查了该演替的地质,矿物学和地球化学。以及化学分析。在结构上,通过XRD可以区分两种不同形式的海泡石:(a)结晶良好的海泡石,在12.07-12.3 A处有110反射,(b)结晶较差的海泡石,其中110反射发生在12.7-13.0 A处(称为海泡石)。 -13A)。还记录了这些形式的晶体化学,热学和形态学特性,相关层状硅酸盐的振动光谱和XRD表征的差异。富镁和硅的碱性湖水中直接沉淀形成了史蒂文石,钾铁矿和海泡石。海泡石13A可能是通过溶解沉淀从前体蒙脱石转变而形成的,更有可能在早期成岩过程中形成。诸如离子浓度,盐度和Ph值变化等环境条件可能已经控制了页硅酸盐的形成。

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