首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Nuclear magnetic resonance characterization of shallow marine sediments from the Nankai Trough, Integrated Ocean Drilling Program Expedition 333
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Nuclear magnetic resonance characterization of shallow marine sediments from the Nankai Trough, Integrated Ocean Drilling Program Expedition 333

机译:综合海钻计划第333号探险队对南开海槽浅海沉积物的核磁共振表征

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We measured nuclear magnetic resonance (NMR) relaxation times on samples from Integrated Ocean Drilling Program Expedition 333 Sites C0011, C0012, and C0018. We compared our results to permeability, grain size, and specific surface measurements, pore size distributions from mercury injection capillary pressure, and mineralogy from X-ray fluorescence. We found that permeability could be predicted from NMR measurements by including grain size and specific surface to quantify pore networks and that grain size is the most important factor in relating NMR response to permeability. Samples within zones of anomalously high porosity from Sites C0011 and C0012 were found to have different NMR-permeability relationships than samples from outside these zones, suggesting that the porosity anomaly is related to a fundamental difference in pore structure. We additionally estimated the size of paramagnetic sites that cause proton relaxation and found that in most of our samples, paramagnetic material is present mainly as discrete, clay-sized grains. This distribution of paramagnetic material may cause pronounced heterogeneity in NMR properties at the pore scale that is not accounted for in most NMR interpretation techniques. Our results provide important insight into the microstructure of marine sediments in the Nankai Trough.
机译:我们在Integrated Ocean Drilling Program Expedition 333网站C0011,C0012和C0018的样品上测量了核磁共振(NMR)弛豫时间。我们将我们的结果与渗透率,晶粒度和比表面积测量,水银注入毛细管压力产生的孔径分布以及X射线荧光产生的矿物学进行了比较。我们发现,可以通过包括颗粒大小和比表面积以量化孔网络来从NMR测量中预测渗透率,并且晶粒大小是将NMR与渗透率相关联的最重要因素。发现来自站点C0011和C0012的异常高孔隙率区域内的样品与来自这些区域之外的样品具有不同的NMR渗透率关系,这表明孔隙率异常与孔隙结构的根本差异有关。我们还估计了引起质子弛豫的顺磁性位点的大小,发现在我们的大多数样品中,顺磁性材料主要以离散的粘土大小的颗粒形式存在。顺磁性材料的这种分布可能会在孔尺度上引起NMR特性的明显异质性,这在大多数NMR解释技术中都没有考虑。我们的结果为了解南开海槽海洋沉积物的微观结构提供了重要的见识。

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