首页> 外文期刊>The American mineralogist >Diagenetic formation of interlayer-deficient fluorophlogopite as a clay mineral in Early Cambrian phosphorite (Lesser Himalaya, India): The trioctahedral analog of illite
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Diagenetic formation of interlayer-deficient fluorophlogopite as a clay mineral in Early Cambrian phosphorite (Lesser Himalaya, India): The trioctahedral analog of illite

机译:早寒武世磷矿(印度喜马拉雅山)中层间不足的氟金云母作为粘土矿物的成岩作用:伊利石的三面体类似物

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摘要

The occurrence of a trioctahedral analog of illite, the dioctahedral interlayer-deficient K-mica, has long been debated. Due to the inherent difficulties of determining structure and chemical composition of the extremely fine-grained material, earlier descriptions based on separated material are equivocal. Here we describe low-temperature (diagenetic) formation of fluorophlogopite, which is interlayer-deficient and therefore analogous to illite, using high-resolution in situ methods (transmission electron microscopy, TEM, with preparation by focused ion beam milling, combined with wavelength-dispersive analysis by field-emission gun electron microprobe). The average composition is K_(0.5)Mg_(2.8)V_(0.01)Fe_(0.005) [Si_(3.15)Al_(0.85)O_(10)(OH)_(0.65)F_(1.35)], including minor amounts of NH4 for charge compensation as determined by electron energy loss spectroscopy. The K-deficient Mg-mica occurs in layer packages of ~10 layers, and no indications for interlayering with other sheet silicate layers such as chlorite or vermiculite could be identified with TEM. X?ray powder diffraction patterns of separated material confirm the absence of smectite components. The mineral was identified in phosphorites from the lowermost Cambrian Tal Group, Mussoori Syncline, Lesser Himalayas, India. The rocks are alternating phosphatic mudstones and phosphatic dolostones, at times interbedded with phosphate-poor carbonate layers, which are rich in organic matter. Sedimentary fluorophlogopite occurs in both rock types and in two textural associations; one in vesicles filled with amorphic organic matter, the other as reaction rims around illite, which contains up to 5 wt% V_2O_3 in its rims. Textural arguments favor an early diagenetic formation of both, V-bearing illite and fluorophlogopite, closely associated with organic matter and linked to dolomitization. The high-F content stabilizes phlogopite to low temperatures. Our findings confirm that the stability field of fluorophlogopite extends from magmatic to metamorphic and sedimentary conditions.
机译:伊利石的三八面体类似物,即二八面体中间层缺陷型K云母的出现,一直存在争议。由于确定极细颗粒材料的结构和化学组成存在固有的困难,因此基于分离材料的早期描述是模棱两可的。在这里,我们使用高分辨率的原位方法(透射电子显微镜,TEM,通过聚焦离子束铣削制备,结合波长-波长)描述了氟金云母的低温(成岩)形成,氟金云母是层间缺陷的,因此类似于伊利石。场发射枪电子探针进行色散分析)平均组成为K_(0.5)Mg_(2.8)V_(0.01)Fe_(0.005)[Si_(3.15)Al_(0.85)O_(10)(OH)_(0.65)F_(1.35)],包括少量的NH4用于电荷补偿,由电子能量损失光谱法确定。缺钾的Mg云母出现在约10层的层状包装中,并且无法通过TEM识别与其他片状硅酸盐层(如亚氯酸盐或ver石)的中间层。分离出的材料的X射线粉末衍射图证实没有蒙脱石成分。矿物是在印度最低喜马拉雅山最低的寒武纪塔尔群(Mussoori Syncline)的磷矿中鉴定的。这些岩石是交替的磷质泥岩和磷质白云岩,有时夹杂着富含有机物的贫磷酸盐的碳酸盐层。含氟金云母沉积物同时存在于两种岩石类型和两种质地组合中。一个装在装有非晶态有机物的囊泡中,另一个装在伊利石周围的反应圈中,伊利石的圈中含高达5 wt%的V_2O_3。结构论证支持V族伊利石和氟金云母的早期成岩作用,它们与有机质紧密相关并与白云石化有关。高F含量使金云母稳定至低温。我们的发现证实,氟金云母的稳定性场从岩浆条件扩展到变质和沉积条件。

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