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首页> 外文期刊>Polymer engineering and science >Improved Viscoelasticity of Xanthan Gum Through Self-Association With Surfactant: beta-Cyclodextrin Inclusion Complexes for Applications in Enhanced Oil Recovery
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Improved Viscoelasticity of Xanthan Gum Through Self-Association With Surfactant: beta-Cyclodextrin Inclusion Complexes for Applications in Enhanced Oil Recovery

机译:通过与表面活性剂的自缔合提高黄原胶的粘弹性:β-环糊精包合物在增强采油中的应用

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This article presents the chemical formulation and rheological properties of a novel self-assembling biopolymer (SAP) system, which could be a useful alternative in polymer flooding for oil recovery, especially under harsh reservoir conditions of temperature, salinity, and hardness. The nonbonding associations of the side branches of xanthan gum with the surfactant: -cyclodextrin inclusion complexes in aqueous solution generate an improved viscoelastic SAP network system. This system exhibits superior mechanical and thermal stability, and also tolerance to elevated brine salinity and hardness due to the interlocking effect. Sandpack flood tests conducted at reservoir conditions (Pelican Lake reservoir, Alberta, Canada) demonstrate that the SAP system can produce considerably higher resistance factors than the baseline xanthan gum during flow in porous media, which indicates its effectiveness in controlling the mobility of the displacing fluid. Moreover, this system shows potential as in situ permeability modifier. POLYM. ENG. SCI., 55:523-532, 2015. (c) 2014 Society of Plastics Engineers
机译:本文介绍了一种新型自组装生物聚合物(SAP)系统的化学配方和流变特性,该系统可作为聚合物驱中采油的有用替代品,尤其是在温度,盐度和硬度的苛刻储层条件下。黄原胶侧枝与表面活性剂:-环糊精包合复合物在水溶液中的非结合缔合产生了改进的粘弹性SAP网络系统。该系统具有优异的机械和热稳定性,并且由于互锁效应,还可以耐受盐水盐分和硬度的升高。在储层条件下进行的沙堆洪水测试(加拿大艾伯塔省鹈鹕湖水库)表明,在多孔介质流动期间,SAP系统产生的抗药性比基线黄原胶高得多,这表明其在控制驱替液流动性方面的有效性。而且,该系统显示出作为原位渗透率调节剂的潜力。 POLYM。 ENG。 SCI。,55:523-532,2015.(c)2014年塑料工程师学会

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