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The potential impact of using a surfactant and an alcoholic co-surfactant on SRB activity during EOR

机译:使用表面活性剂和酒精凝结剂在eOR期间对SRB活性的潜在影响

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Surfactants and co-surfactants play an important role in enhanced oil recovery for they improve petroleum solubility and reduce interfacial tensions between oil, water and the rock formation. Ethanol is receiving renewed attention as potential co-surfactant because of the negative results obtained with the use of salts and alkaline substances. Sulphate-reducing bacteria (SRB) can use surfactants and co-surfactants as carbon sources and, consequently, this can increase the biological accumulation of sulphide (souring). The aim of this research is to correlate SRB activity with different concentrations of co-surfactant (ethanol) as an attempt to quantifying in which concentration such compound can potentially increase or inhibit souring. The results show that the combination of surfactant (lauryl glucoside) and co-surfactant (ethanol) can increase SRB activity to about 2.3-fold. The highest sulphate consumption rate of 591 mu g l(-1) h(-1) was observed in experiments with 0.03% and 1.5% (v/v) of surfactant and ethanol, respectively. The experiments indicated that SRB activity is only controlled by ethanol concentrations above 6.5% (v/v). Ethanol can potentially decrease costs with the use of biocides and significantly increase oil recovery ratios. Tests with the model Desulfovibrio vulgaris were not comparable with the results obtained with the SRB consortium.
机译:表面活性剂和共表面活性剂在增强的溢油中发挥着重要作用,改善了石油溶解度,并降低了油,水和岩层之间的界面紧张。由于使用盐和碱性物质获得的负面结果,乙醇正在作为潜在的共表面活性剂接受重新注意。硫酸盐还原细菌(SRB)可以使用表面活性剂和共表面活性剂作为碳源,因此这可以增加硫化物(酸)的生物积累。该研究的目的是将SRB活性与不同浓度的共表面活性剂(乙醇)相关,以定量该化合物的浓度可以增加或抑制溶解。结果表明,表面活性剂(月桂糖苷)和共表面活性剂(乙醇)的组合可以将SRB活性增加至约2.3倍。在0.03%和1.5%(V / V)的表面活性剂和乙醇的实验中观察到591μg1(-1)H(-1)的最高硫酸盐消耗率。实验表明,SRB活性仅被6.5%(v / v)以上的乙醇浓度控制。乙醇可以通过使用杀生物剂来降低成本,并显着增加石油回收率。与模型Desulfovibrio寻常试验与用SRB联盟获得的结果没有比较。

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