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Use of carbon steel ball bearings to determine the effect of biocides and corrosion inhibitors on microbiologically influenced corrosion under flow conditions

机译:使用碳钢滚珠轴承以确定杀生物剂和腐蚀抑制剂对流动条件下微生物学影响腐蚀的影响

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A consortium of sulfate-reducing bacteria consisting mostly of Desulfovibrio, Desulfomicrobium, and Desulfocurvus from oil field produced water was cultivated in a chemostat, receiving medium with 20 mM formate and 10 mM sulfate as the energy and 1 mM acetate as the carbon source. The chemostat effluent, containing 5 mM sulfide and 0.5 mM of residual acetate, was passed through 1-ml syringe columns with 60 carbon steel ball bearings (BBs) of 53.6 +/- 0.1 mg each at a flow rate of 0.8 ml/h per column. These were treated every 5 days with 1.6 ml of 300 ppm of glutaraldehyde (Glut), tetrakis(hydroxymethyl)phosphonium sulfate (THPS), benzalkonium chloride (BAC), or Glut/BAC, a mixture of Glut and BAC. Alternatively, BBs were treated with 33% (v/v) of a water-soluble (CR_W) or an oil-soluble (CR_O1 or CR_O3) corrosion inhibitor for 20 s after which the corrosion inhibitor was drained off and BBs were packed into columns. The effluent of untreated control columns had no acetate. Treatment with the chemically reactive biocides Glut and THPS, as well as with Glut/BAC, gave a transient increase of acetate indicating decreased microbial activity. This was not seen with BAC alone indicating it to be the least effective biocide. Relative to untreated BBs (100%), those treated periodically with Glut, THPS, BAC, or Glut/BAC had a general weight loss corrosion rate of 91, 81, 45, and 36% of the untreated rate of 0.104 +/- 0.004 mm/year, respectively. Single treatment with corrosion inhibitors decreased corrosion to 48, 2, and 1% of the untreated rate for CR_W, CR_O1 and CR_O3, respectively. Analysis of the distribution of corrosion rates from the weight loss of individual BBs (N = 120) indicated the presence of a more slowly and a more rapidly corroding group. BAC treatment prevented emergence of the latter, and this quaternary ammonium detergent appeared most effective in decreasing corrosion not because of its biocidal properties, but because of its corrosion inhibitory properti
机译:在脱硫渣,脱硫核和脱硫和从油田生产的水中组成的硫酸盐还原细菌的联盟在化学稳定剂中培养,接受20mM甲酸酯的培养基和10mm硫酸盐作为能量和1mM乙酸盐作为碳源。含有5mm硫化物和0.5mm的残留乙酸盐的化学腐酯流出物通过1-ml注射器柱,其中60个碳钢球轴承(BBS)为53.6 +/- 0.1mg,每个流量为0.8ml / h柱子。每5天用1.6ml 300ppm的戊二醛(凝乳),四(羟甲基)硫酸鏻(THPS),苯扎氯铵(BAC),苯并烷基铵(BAC),苯并/ BAC,苯并抑制和BAC的混合物每5天处理。或者,将BBS用33%(V / V)的水溶性(CR_W)或油溶性(CR_O1或CR_O3)腐蚀抑制剂进行处理,然后将腐蚀抑制剂排出,BBS填充到柱中。未处理对照柱的流出物没有乙酸盐。用化学反应性杀生物剂和THP和THP和Glut / Bac处理处理,得到乙酸酯的瞬时增加,表明微生物活性降低。对于BAC而言,这并未看出,这表明它是最不有效的杀生物剂。相对于未经处理的BBS(100%),通过淡绿色,THP,BAC或GLUT / BAC治疗的那些,其一般重量损失腐蚀速率为91,81,45和36%的未处理率为0.104 +/- 0.004 mm /年。腐蚀抑制剂的单一处理分别降低了CR_W,CR_O1和CR_O3的未治疗率的48,2和1%的腐蚀。分析来自单个BBS的重量损失(n = 120)的腐蚀速率分布表明存在更缓慢和更快速的腐蚀组。 BAC治疗可防止后者的出现,这种季铵洗涤剂在降低腐蚀中出现最有效的腐蚀,而不是因为其抗腐蚀性抑制性能

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