首页> 外文期刊>ACS applied materials & interfaces >Toward Reservoir-on-a-Chip: Fabricating Reservoir Micromodels by in Situ Growing Calcium Carbonate Nanocrystals in Microfluidic Channels
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Toward Reservoir-on-a-Chip: Fabricating Reservoir Micromodels by in Situ Growing Calcium Carbonate Nanocrystals in Microfluidic Channels

机译:走向蓄水池:通过在微流体通道中原位生长碳酸钙纳米晶体制造储层微模

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摘要

We introduce a novel and simple method to fabricate calcium carbonate (CaCO3) micromodels by in situ growing a thin layer of CaCO3 nanocrystals with a thickness of 1-2 mu m in microfluidic channels. This approach enables us to fabricate synthetic CaCO3 reservoir micromodels having surfaces fully covered with calcite, while the dimensions and geometries of the micromodels are controllable on the basis of the original microfluidic channels. We have tuned the wettability of the CaCO3-coated microchannels at simulated oil reservoir conditions without introducing any chemical additives to the system; thus the resulting oil-wet surface makes the micromodel more faithfully resemble a natural carbonate reservoir rock. With the advantage of its excellent optical transparency, the micromodel allows us to directly visualize the complex multiphase flows and geochemical fluid calcite interactions by spectroscopic and microscopic imaging techniques. The CaCO3-coated microfluidic channels provide new capabilities as a micromodel system to mimic real carbonate reservoir properties, which would allow us to perform a water-oil displacement experiment in small-volume samples for the rapid screening of candidate fluids for enhanced oil recovery (EOR). The immiscible fluid displacement process within carbonate micromodels has been demonstrated showing the water-oil-carbonate interactions at pore-scale in real time by fluorescence microscopic imaging.
机译:我们介绍一种新颖而简单的方法,通过原位生长薄层的CaCO3纳米晶体的薄层制备碳酸钙(CaCO 3)微模,厚度为1-20μm。这种方法使我们能够制造具有完全覆盖方解石的表面的合成Caco3储存器微模芯,而微模尺寸和几何形状在原始的微流体通道的基础上可控。我们在模拟油藏条件下调整了Caco3涂层微通道的润湿性,而不将任何化学添加剂引入系统;因此,所得的油湿表面使微摩尔更忠实地类似于天然碳酸盐储层岩石。随着其优异的光学透明度的优点,微偶像允许我们通过光谱和微观成像技术直接可视化复杂的多相流和地球化学流体方解石相互作用。 CaCO3涂层的微流体通道提供新的能力,以模仿真正的碳酸盐储层性能,使我们能够在小体积样品中进行水油位移实验,以便快速筛选候选流体以增强溢油(EOR) )。已经证明碳酸盐微晶内不混溶的流体位移过程显示通过荧光显微镜成像实时在孔隙尺度处的水 - 碳酸盐相互作用。

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