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首页> 外文期刊>New biotechnology >The biopolymer produced by Rhizobium viscosum CECT 908 is a promising agent for application in microbial enhanced oil recovery
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The biopolymer produced by Rhizobium viscosum CECT 908 is a promising agent for application in microbial enhanced oil recovery

机译:由硼杆菌CECT 908产生的生物聚合物是用于微生物增强的溢油回收的有望的试剂

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摘要

Polymer flooding is one of the most promising techniques used to increase the productivity of mature oil reservoirs. Polymers reduce the mobility ratio of the injected water relative to the crude oil, improving the displacement of the entrapped oil and consequently, increasing oil recovery. Biopolymers such as xanthan gum have emerged as environmentally friendly alternatives to the chemical polymers commonly employed by the oil industry. However, in order to seek more efficient biomolecules, alternative biopolymers must be studied. Here, the applicability of a biopolymer produced by Rhizobium viscosum CECT 908 in Microbial Enhanced Oil Recovery (MEOR) was evaluated. This biopolymer exhibited better rheological properties (including higher viscosity) when compared with xanthan gum. Its stability at high shear rates (up to 300 s(-1)), temperatures (up to 80 degrees C) and salinities (up to 200 g/L of NaCl) was also demonstrated. The biopolymer exhibited better performance than xanthan gum in oil recovery assays performed with a heavy crude oil, achieving 25.7 +/- 0.5% of additional recovery. Thus the R. viscosum CECT 908 biopolymer is a promising candidate for application in MEOR.
机译:聚合物洪水是最有前途的技术之一,用于提高成熟的石油储层生产力。聚合物可相对于原油的喷射水的迁移率降低,从而改善夹带的油的位移,从而提高了溢油的流离失所。黄原胶等生物聚合物出现为石油工业常用的化学聚合物的环保替代品。然而,为了寻求更有效的生物分子,必须研究替代的生物聚合物。这里,评价了通过Rhizobium粘度粘液CECT 908产生的生物聚合物的适用性进行了评估微生物增强的溢油(MEOR)。与黄原胶相比,该生物聚合物表现出更好的流变性质(包括较高粘度)。还证明了其高剪切速率(高达300秒),温度(高达80℃)和盐度(高达200g / L的NaCl)的稳定性。生物聚合物表现出比用重原油的油回收测定中的黄原子胶,实现25.7 +/- 0.5%的额外恢复。因此,R.气囊CECT 908生物聚合物是在MEOR中应用的有希望的候选者。

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