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Effects of Polymer-Polymer Complexes on the Corrosion of Mild Steel in Cooling Water System (Part 4)

机译:聚合物 - 聚合物复合物对冷却水系统温和钢腐蚀的影响(第4部分)

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摘要

To clarify a complicating behavior of corrosion inhibition in a solution with high concentration of ionic species (HC solution) in cooling water system, the relationship between corrosion rate of mild steel, amount of polymer adsorption and amount of scale deposition was analyzed by using the polymer-polymer complexes (PPCs). The corrosion rate in a HC solution was dependent on the amount of polymer adsorption and the amount of scale deposition. It was corroborated that the corrosion rate was related to the amount of apparent polymer adsorption determined by equation (5) reported previously in ref. 21): In particular, the physical significance of coefficient A in equation (5) was made clear. And then, it suggested that the corrosion rate in this experimental condition was anticipated by polymer adsorption and scale deposition tests in a short term apart from corrosion weight loss test in a long term.
机译:为了澄清在冷却水系统中具有高浓度离子物质(HC溶液)的溶液中腐蚀抑制的复杂性行为,通过使用聚合物分析温和钢的腐蚀速度,聚合物吸附量的关系,高分子吸附量和水垢沉积量的关系 - 聚合物复合物(PPC)。 HC溶液中的腐蚀速率取决于聚合物吸附的量和水垢沉积量。 它被证实,腐蚀速率与通过先前在REF中报道的等式(5)测定的表观聚合物吸附量有关。 21):特别地,澄清了方程(5)中系数A的物理意义。 然后,它表明,通过长期除了腐蚀减肥试验之外,通过聚合物吸附和比例沉积试验预期该实验条件中的腐蚀速率。

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