首页> 外文会议>NACE International CORROSION/2006 Conference Papers >STUDY OF EFFICIENCY OF INDUSTRIAL CORROSION INHIBITORS FOR COOLING WATER SYSTEMS AT OIL REFINING INDUSTRY
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STUDY OF EFFICIENCY OF INDUSTRIAL CORROSION INHIBITORS FOR COOLING WATER SYSTEMS AT OIL REFINING INDUSTRY

机译:炼油行业冷却水系统工业腐蚀抑制剂的效率研究

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The aim of this work is to study the influence of some industrial corrosion inhibitors in the presence of biocides, biodispersants and scale inhibitors (anti-scaling agents) of four manufacturers on corrosion of mild steel (C1018) in the cooling water of the Oil Refinery. The chemistry of inhibitors investigated is based on phosphates, phosphonates, zinc and magnesium salts. Weight loss method was used for the determination of the efficiency of corrosion inhibitors. The experiments were carried out in agitated cooling water exposed to air at 25℃. The duration of the corrosion experiments was 7 days. Corrosion rate of carbon steel in uninhibited cooling water was 0.32 mm/year. The minimum acceptable value of inhibition efficiency (65%) was determined according to the reduction corrosion rate of mild steel from 0.32 mm/year to the maximum allowable corrosion rate of 0.11 mm/y in the cooling water of the Oil Refinery. It was shown that in most cases, the concentrations of inhibitors for acceptable protection of mild steel do not coincide with the inhibitor concentrations recommended by manufacturers. Some chemicals recommended by manufacturers accelerated general corrosion of mild steel and even resulted in pitting corrosion. In order to compare different corrosion inhibitors, an “Inhibitor Index” (I.I.) was introduced and calculated. This index takes into account a minimum acceptable value which is 65% of inhibition efficiency and the experimental efficiencies measured above 65%, which were reached at particular quantities of inhibitors. Corrosion inhibitor with the highest I.I. = 9.1 was selected and recommended for use in the cooling water system of the Oil Refinery. This inhibitor together with biocides and anti-scaling agent has been successfully used since 1996.
机译:这项工作的目的是研究在四个炼油厂的杀菌剂,生物分散剂和阻垢剂(防垢剂)存在下某些工业腐蚀抑制剂对炼油厂冷却水中低碳钢(C1018)的腐蚀的影响。 。所研究的抑制剂的化学性质基于磷酸盐,膦酸酯,锌和镁盐。失重法用于测定缓蚀剂的效率。实验是在25℃暴露于空气的搅拌冷却水中进行的。腐蚀实验的持续时间为7天。碳钢在不受约束的冷却水中的腐蚀速率为0.32毫米/年。抑制效率的最小可接受值(65%)是根据炼油厂冷却水中低碳钢的腐蚀速率从0.32 mm /年降低到最大允许腐蚀速率为0.11 mm / y确定的。结果表明,在大多数情况下,对低碳钢可接受的保护所用的抑制剂浓度与制造商建议的抑制剂浓度不一致。制造商推荐的某些化学药品会加速低碳钢的全面腐蚀,甚至导致点蚀。为了比较不同的腐蚀抑制剂,引入并计算了“抑制剂指数”(I.I.)。该指数考虑了最小可接受值,该最小可接受值是抑制效率的65%,测量的实验效率高于65%,这是在特定量的抑制剂下达到的。 I.I.最高的缓蚀剂选择= 9.1并推荐用于炼油厂的冷却水系统。自1996年以来,该抑制剂与杀生物剂和防垢剂一起被成功使用。

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