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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Use of new generation chemicals and nano materials in heavy-oil recovery: Visual analysis through micro fluidics experiments
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Use of new generation chemicals and nano materials in heavy-oil recovery: Visual analysis through micro fluidics experiments

机译:用新一代化学品和纳米材料在重油恢复中:通过微流体实验进行视觉分析

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A series of 2-D etched glass micromodel (sandstone replica with a fracture) experiments were designed to investigate the mechanics of chemical injection with and without pre-solvent injection to recover heavy-oil from heterogeneous porous media. Conventional surfactants (sulfonate series) as well as new generation chemicals (nanofluids, ionic liquids) were tested for this purpose. After testing and screening effective chemicals without pre-solvent injection, the same chemicals were used to retrieve the solvent and recovery additional oil for presolvent injected systems. The micromodel was saturated by dyed processed oils and a selected solvent was injected through the fracture. After the solvent was diffused into matrix completely to recover the oil in it, the model was heated mimicking a thermal method to reach the boiling point of the solvent and retrieve it. Following the heating phase, aqueous phase was injected to retrieve the remaining solvent in the liquid or vapor phase. Visual observations on chemical flooding process clarified the complex interactions among different phases considering small-scale heterogeneities. This information can help screen promising chemical and determine the efficiency of chemical injection with and without pre-solvent injection for EOR in heterogeneous sands and carbonates.
机译:设计了一系列2-D蚀刻玻璃微模(带骨折的砂岩复制品)实验旨在研究化学注射的机制,无需预溶剂注射,以回收异质多孔介质的重油。为此目的测试常规表面活性剂(磺酸盐系列)以及新一代化学品(纳米流体,离子液体)。在没有预溶剂注射的情况下进行测试和筛选有效化学物质后,使用相同的化学品来检索用于预净化系统的溶剂和恢复附加油。通过染色的加工油饱和微模倍异,通过裂缝注入选定的溶剂。在完全溶剂中扩散到基质中以回收油以回收油,模型模拟模仿热方法以达到溶剂的沸点并检索它。在加热阶段之后,注射水相以在液体或气相中取回剩余的溶剂。视觉观察化学洪水过程阐明了考虑小规模异质性的不同阶段之间的复杂相互作用。该信息可以帮助筛选有前途的化学品,并确定化学注射的效率和在异质砂和碳酸盐中的EOR预溶剂注射。

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