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A New Frontier Technique for Nano-analysis on Flooded Chalk -TERS (Tip Enhanced Raman Spectroscopy)

机译:泛气粉笔 - 粉笔纳米分析前沿技术(尖端增强拉曼光谱)

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Understanding the chalk-fluid interactions at the sub-micron scale is one of the most challenging goals in Enhanced Oil Recovery. The grain size of newly grown minerals far below 1 micron asks for a high performing imaging: we present a new methodology using the TERS (Tip Enhanced Raman Spectroscopy), a new frontier technique that combines Raman Spectroscopy with Atomic Force Microscopy, allowing impressively high-resolution chemical analyses down to an outstanding spatial resolution (~ 20 nm). TERS permits the recognition of minerals thanks to the vibrational mode peaks that are diagnostic of composition and structure. Carbonate-group minerals are easily identified by Raman spectroscopy. First analyses allow us to state that magnesite and calcite could be identified in, respectively, ultra-long-term flooding experiments of chalk at reservoir conditions and in unflooded samples; no dolomite or high Mg-calcite have been found. Few microns squared areas have been imaged by AFM using ultra polished thin sections with a 50 nanometers step. Transmission electron microscopy has been employed to confirm the results of TERS and add dark and bright field grain-imaging to the investigations. This confirms the need for high-resolution methodology such as TERS and TEM to fully understand EOR effects at sub-micron scale.
机译:了解亚微米级别的粉笔流体相互作用是增强储油中最具挑战性的目标之一。新种群的粒度远低于1微米,要求高性能成像:我们使用TERS(尖端增强拉曼光谱)提出了一种新的方法,这是一种与原子力显微镜相结合的拉曼光谱,允许令人印象深刻 - 分辨率化学分析到出色的空间分辨率(〜20 nm)。由于构成和结构诊断的振动模式峰值,允许识别矿物质。通过拉曼光谱容易识别碳酸盐组矿物质。首先分析允许我们调节菱镁矿和方解石可以分别在储层条件和未结合的样品中进行粉笔的超长期洪水实验;没有发现白云石或高镁棉铁料。 AFM使用具有50纳米步骤的超抛光薄部分对几微米平方区域进行了成像。透射电子显微镜已被用于确认丝根的结果,并为调查添加黑暗和明亮的场晶粒成像。这证实了需要高分辨率方法,如TERS和TEM,以完全了解亚微米级的EOR效果。

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