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Effects of Wet Grinding on the Structure and Granularity of Biological Origin Aragonite and Its Polymorphic Transformation into Calcite

机译:湿磨对生物来源文石的结构和粒度及其多态转变为方解石的影响

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The structure and granularity of biological origin aragonite from abalone shell during wet grinding in a ball mill were studied with X-ray diffractometer, with morphology studied by scanning electron microscope (SEM). It is shown from the results that the particle sizes of aragonite decreased with grinding time, so did the X-ray diffraction (XRD) peak intensities, while the full widths at half maximum increased. A calcite XRD peak with low intensity and great width was observed in nearly all the samples with various grinding time, whereas the intensity of the peak increased obviously after grinding time 300 min. It is shown from the SEM results that the size of aragonite dropped with grinding time until it reached 20 nm and then kept constant, while that of calcite dropped first and then rose at the minimum about 10 nm until to the constant size as in aragonite. It was observed that the mineral content obtained from XRD show an obviously change that the calcite increases while aragonite decreases, which indicated the occurring of a polymorphic transformation of aragonite into calcite.
机译:用X射线衍射仪研究了鲍鱼壳湿磨过程中鲍鱼壳生物来源文石的结构和粒度,并用扫描电子显微镜(SEM)研究了形貌。从结果可以看出,文石的粒径随研磨时间而减小,X射线衍射(XRD)峰强度也随之减小,而半峰全宽增大。在几乎所有不同研磨时间的样品中,均观察到一个方解石XRD峰,强度低,宽度大,而研磨300min后,峰强度明显增加。从SEM结果可以看出,文石的尺寸随着研磨时间的降低而下降,直到达到20nm,然后保持恒定,而方解石的尺寸先下降,然后至少在约10nm处上升,直到达到文石中的恒定尺寸。观察到由XRD得到的矿物含量显示方解石增加而文石减少则有明显变化,这表明发生了文石向方解石的多晶型转变。

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