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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Self-limiting growth on dolomite: Experimental observations with in situ atomic force microscopy
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Self-limiting growth on dolomite: Experimental observations with in situ atomic force microscopy

机译:白云石上自限生长:原位原子力显微镜的实验观察

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In situ Atomic Force Microscopy (AFM) and Lateral Force Microscopy (LFM) studies on dolomite (1014) were performed during exposure to supersaturated aqueous solutions (supersaturated in dolomite, calcite, aragonite, vaterite, huntite and magnesite) at pH = 9 at various Ca2+/Mg2+ aqueous ion activity ratios. At high saturation ratios, rapid growth of a single layer (similar to 3 angstrom thick) of a carbonate followed by much slower growth of a second layer was observed. Growth of the second layer was highly inhibited, suggesting that the first layer was essentially self-limited, and inhibited further layer-by-layer growth. The growth of the first layer was observed over a wide range of Ca2+/Mg2+ ratios, suggesting that the dolomite surface is favorable to formation of a range of Ca-Mg carbonates. LFM data revealed contrast in the tip-surface frictional forces on the first grown layer, but this contrast was only observed in layers grown from middle to high Ca2+/Mg2+ solutions. Thus, LFM may have detected or responded to differences in the structure and/or composition between the first layer relative and the dolomite substrate. Dissolution of the first layer occurred from significantly supersaturated solutions relative to ordered stoichiometric dolomite permitting an estimate of the excess interfacial strain energy of up to 10 mJ/m(2). Copyright (c) 2005 Elsevier Ltd
机译:在暴露于pH = 9的过饱和水溶液(过饱和的白云石,方解石,文石,球ate石,石和菱镁矿)中,在不同的pH值下,对白云石(1014)进行了原位原子力显微镜(AFM)和横向力显微镜(LFM)研究。 Ca2 + / Mg2 +水溶液离子活度比。在高饱和比下,观察到碳酸盐单层(类似于3埃厚)的快速增长,然后第二层的增长慢得多。第二层的生长受到高度抑制,表明第一层基本上是自限性的,并抑制了进一步的逐层生长。在较宽的Ca2 + / Mg2 +比范围内观察到了第一层的生长,这表明白云石表面有利于形成一系列Ca-Mg碳酸盐。 LFM数据显示了在第一个生长层上的尖端表面摩擦力的对比,但是这种对比仅在从中等Ca2 + / Mg2 +溶液生长到高Ca2 + / Mg2 +溶液的层中观察到。因此,LFM可能已经检测到或响应于第一层相对层和白云石基底之间的结构和/或组成的差异。第一层的溶解是从相对于有序化学计量白云石的明显过饱和的溶液中发生的,从而允许估计最高10 mJ / m(2)的过量界面应变能。版权所有(c)2005 Elsevier Ltd

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