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Preliminary Study on Nitrate Injection to Control Souring Problem in Oil Reservoir: Benefits and Side Effects on Steel Material (UNS S31603)

机译:硝酸盐注入控制油藏变质问题的初步研究:对钢材的好处和副作用(UNS S31603)

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Nitrate injection is a common approach used to control reservoir souring. This method relies on nitrate reducing bacteria (NRB) ability to suppress sulphate reducing bacteria (SRB) growth. These experiments were conducted to investigate the underlying principal of nitrate injection to stainless steel material. Anaerobic tests were performed by immersing UNS S31603 samples for 28 days at 50°C in electrochemical cells containing 10% crude oil in brine water, supplemented with sodium nitrate. Four different conditions were evaluated: control cell (no bacteria), NRB inoculated cell, SRB inoculated cell and Mixed (NRB and SRB) bacteria inoculated cell. The Open Circuit Potential (OCP) of the steel was monitored throughout the test. In addition, Linear Polarization Resistant (LPR) and Cyclic Polarization Scan (CPS) were carried out at the end of the immersion time. These results demonstrated that the addition of nitrate promoted NRB growth and suppressed SRB growth; hence H_2S production can be eliminated. However, NRB formed patchy biofilms on the steel surfaces that weakened steel passivity and decreased its Critical Pitting Potential (CPP). This makes the steel more susceptible to localized corrosion.
机译:硝酸注射是一种用于控制储层溶解的常见方法。该方法依赖于硝酸盐还原细菌(NRB)抑制硫酸盐还原细菌(SRB)生长的能力。进行了这些实验,以研究硝酸注射的下面原理与不锈钢材料。通过将Unt S31603样品浸入50℃的电化学细胞中浸入盐水中10%原油的电化学细胞中进行28天来进行厌氧测试。评估了四种不同的条件:控制细胞(无细菌),NRB接种的细胞,SRB接种的细胞和混合(NRB和SRB)菌接种细胞。在整个测试中监测钢的开路电位(OCP)。另外,在浸入时间结束时进行线性偏振抗性(LPR)和循环偏振扫描(CPS)。这些结果表明,添加硝酸盐促进了NRB生长并抑制了SRB生长;因此,可以消除H_2S生产。然而,NRB在钢表面上形成了块状生物膜,钢表面削弱并降低了其临界凹陷电位(CPP)。这使得钢更容易受到局部腐蚀的影响。

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