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Accelerated corrosion of pipeline steel in the presence of Desulfovibrio desulfuricans biofilm due to carbon source deprivation in CO_2 saturated medium

机译:在CO_2饱和介质中由于碳源的缺乏,在脱硫弧菌生物膜存在下管道钢的加速腐蚀。

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The chemistry of bacterial biofilms as well as the nutritional composition of culture environments may differ at any time within a growth process, especially for SRB consortia within oil wells with limited carbon sources. In the oilfield, the presence of SRB biofilms on surfaces of steel substrates leads to microbiologically influenced corrosion and compromised material integrity. In this work, the survival of SRB cells and their impact on the pipeline steel corrosion within simulated CO2-saturated oilfield-produced water with different concentrations of organic carbon source have been investigated. Cell counts reduced with the level of carbon source reduction (CSR) after incubation but more sessile cells survived at 80% CSR (moderate carbon starvation) compared to 100% CSR (extreme carbon starvation). The energy needed for cellular survival as well as biological support toward MIC could have been harnessed by a combination of extracellular Fe oxidation and intracellular sulfate reduction even after carbon source starvation. Severe anodic steel dissolution was observed at the end of the culture period within the simulated CO2-saturated oilfield-produced water, and this is attributed to SRB-led MIC and CO2 corrosion. Pipeline steel corroded more when cultured within 80% CSR compared to the medium with both lactate and citrate. Steel substrate corroded less with 100% CSR due to severely weakened SRB biofilms from nutrient deprivation.
机译:在生长过程中,细菌生物膜的化学成分以及培养环境的营养成分可能随时不同,尤其是对于碳源有限的油井内的SRB财团而言。在油田中,钢基底表面上存在SRB生物膜会导致微生物影响腐蚀并损害材料完整性。在这项工作中,研究了SRB电池的存活率及其对模拟CO2饱和油田采出水中有机碳源浓度不同的管道钢腐蚀的影响。孵育后,细胞计数随碳源减少量(CSR)的水平而减少,但与100%CSR(极度碳饥饿)相比,更多无柄细胞在80%CSR(中度碳饥饿)下存活。即使在碳源饥饿之后,细胞外铁氧化和细胞内硫酸盐还原的结合也可以利用细胞存活所需的能量以及对MIC的生物支持。在培养期结束时,在模拟的CO2饱和油田采出水中,观察到严重的阳极钢溶解,这归因于SRB引导的MIC和CO2腐蚀。与含乳酸和柠檬酸盐的培养基相比,在80%的CSR中进行培养时,管线钢的腐蚀更多。由于受营养物剥夺严重削弱了SRB生物膜,因此钢基底受100%CSR腐蚀的可能性较小。

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