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Relation Between Chemical Composition of a Green Nanofluid and Its Foam Film Stabilization For Robust Foam Injection EOR

机译:绿色纳米流体化学成分与其泡沫薄膜稳定性的关系

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Foams were introduced to enhanced oil recovery (EOR) for the purpose of improving sweep efficiency via mitigating gas breakthrough. In prior works, well-defined nanocellulose-based nanofluids, which can well stabilize foam film as a green alternative to reduce the environmental impact, were successfully prepared in our group. However, due to the costly manufacturing process, its field scale application is restricted. In order to further simply the manufacturing process and minimize the cost, in this study, we proposed another family of functional nanocellulose, in which lignin fraction was remained as well as carboxyl groups. The primary objective of the present work is to investigate the synergism between the lignin-nanocellulose (LNC) and surfactant in foam film stabilization. Particular attention was placed on the relation between the chemical composition of L-NC and its stabilizing effect. Direct measurements of foamability, drainage halftime, foam morphology, foam decay, etc., were performed. The results showed that after the contents of lignin and carboxyl group were well tailored, the resultant L-NC can significantly improve the stability of foam either in the absence or presence of crude oil. The flooding dynamics observed in core plugs indicated that the L-NC stabilized foams could properly migrate in porous media and generated larger flow resistance accross the cores than surfactant-only foam.
机译:引入泡沫以增强采油(EOR),以便通过缓解气体突破来提高扫描效率。在现有作用中,在本组中,可以在本组成功地编制了稳定的纳米纤维素基纳米流体,该基于纳米纤维素的纳米流体作为绿色替代品以降低环境影响的绿色替代品。但是,由于昂贵的制造过程,其现场比例应用受到限制。为了进一步简单地简单地制造工艺并最小化成本,在本研究中,我们提出了另一个功能纳米细胞的家族,其中留下了木质素级分以及羧基。本作作品的主要目的是研究木质素 - 纳米纤维素(LNC)与泡沫膜稳定中的表面活性剂之间的协同作用。 L-NC的化学成分与其稳定效果之间的关系特别注意。进行可发泡,排水半场,泡沫形态,泡沫衰减等的直接测量。结果表明,在花木质素和羧基的含量均匀定制后,所得L-NC可以显着改善泡沫的稳定性,无论是原油的不存在或存在。在核心插头中观察到的洪水动态表明,L-NC稳定的泡沫可以在多孔介质中适当地迁移,并产生比表面活性剂的泡沫更大的流动阻力。

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