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An experimental investigation of the role of microfracture surfaces in controlling quartz precipitation rate: Applications to fault zone diagenesis

机译:微裂纹表面在控制石英沉淀速率中作用的实验研究:在断层带成岩中的应用

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We present the results of quartz growth experiments, which were designed to assess the role of microfracture surfaces in controlling quartz-precipitation rates during fault-zone diagenesis. Experiments were run in hydrothermal cold-seal vessels at 300-450 degrees C and 150 MPa confining pressure for up to 1344 h. Microfractures routinely form at grain contacts during these experiments. Microfracture kinematic-aperture distributions indicate that microfractures form within the first 48 h of each experiment. Regardless of experimental temperature or duration, microfracture-sealing cements account for approximately the same amount of new quartz cement in each experiment. With increasing experimental duration, sealed microfractures were progressively overgrown by grain-boundary overgrowth cements. Spatial and temporal trends in the distribution of overgrowth- and microfracture-sealing cements indicate that precipitation rates on newly formed microfractures greatly exceed those on detrital-grain boundaries. This effect persists regardless of natural iron-oxide grain coatings present in a subset of our experiments. While our results agree with previous research that demonstrated increased growth rates on fracture surfaces in faults in fully lithified rock, fundamental differences in the nature of deformation in our experiments provide insight into quartz cementation in cataclastic deformation bands in faults offsetting high-porosity sandstones. (C) 2015 Elsevier Ltd. All rights reserved.
机译:我们介绍了石英生长实验的结果,这些实验旨在评估断层带成岩过程中微裂缝表面在控制石英沉淀速率中的作用。实验是在300-450摄氏度,150 MPa的围压下在热液冷密封容器中进行的长达1344小时。在这些实验中,晶粒接触处通常会形成微裂纹。微裂纹的运动孔径分布表明,在每个实验的前48小时内都形成了微裂纹。无论实验温度或持续时间如何,在每个实验中,微裂缝密封胶合剂占新石英胶合剂的量大致相同。随着实验持续时间的增加,封闭的微裂缝逐渐被晶界过度生长的水泥所覆盖。过度生长和微裂缝封闭胶结物分布的时空趋势表明,新形成的微裂缝上的降水速率大大超过碎屑边界上的降水速率。无论我们的实验子集中存在天然氧化铁晶粒涂层如何,这种效果都会持续存在。虽然我们的结果与先前的研究结果一致,该研究表明完全石化岩层断层的破裂表面生长速率增加,但我们实验中形变性质的根本差异为洞悉高孔隙度砂岩的断层裂变形变带中的石英胶结提供了见识。 (C)2015 Elsevier Ltd.保留所有权利。

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