冷却水系统中的结垢和腐蚀预防。第2部分:硫酸钙

T. Soror
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引用次数: 14

摘要

本文在室内模型上进行了新处理的聚丙烯酰胺对硫酸钙结垢及防治的实验研究。为了研究所使用的化学物质的抑制能力,在不同浓度的聚合物处理合成海水的溶液中进行了实验。与无抑制剂处理相比,聚丙烯酰胺处理的沉淀率明显降低。抑制剂可能被吸附在最初形成的晶体的活性生长位点上。从溶液中可溶钙离子含量的角度分析了不同浓度阻垢剂的性能。结果表明,在90℃条件下,添加10-15 ppm的聚合物,培养1天后,水垢量降至0.00%。硫酸钙沉积物专用的防垢剂最近已经开发出来并在实验室规模上进行了测试。研究了聚丙烯酰胺对接触合成冷却水环境的c钢和铜试样的缓蚀作用。电化学极化技术表明,缓蚀剂对c -钢表现为阳极型,对铜表现为混合型。聚合物的加入降低了腐蚀电流jcor和腐蚀速率CR,提高了缓蚀效率IE%。抑制作用是由于保护膜的形成。CaSO4的形态学研究。在合成海水中形成的2H2O石膏晶体表明,扫描电镜(SEM)研究表明,在聚合物存在下,硫酸钙晶体减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Scale and Corrosion Prevention in Cooling Water Systems Part II: Calcium Sulphate
This paper describes an experimental study on calcium sulphate scaling and prevention by newly treated poly- acrylamide in a laboratory model. In order to study the inhibiting capacity of the chemical used, experiments were per- formed in solutions involving treatment of synthetic sea water with different concentrations of the polymer. Polyacryla- mide gave significantly lower precipitation rate compared to the treatment in absence of inhibitor. The inhibitor probably is adsorbed on the active growth sites of the initially formed crystals. The performances of scale inhibitor with different concentrations were analyzed in terms of the amount of soluble calcium ions in solution. The results showed that the amount of scale was reduced to 0.00%, with, 10-15 ppm polymer additions, after 1 day incubation at 90°C. Antiscale agents specific to calcium sulphate deposits have recently been developed and tested on a laboratory scale. The work was also extended to study the corrosion inhibition of polyacrylamide to both C-steel and copper specimens in contact with synthetic cooling water environment. Electrochemical polarization techniques reveal that the inhibitor acts as anodic type with respect to C-steel and mixed type for copper. Corrosion current jcorr and corrosion rate CR were reduced and inhibi- tion efficiency IE% increases with polymer additions. The inhibition effects are due to the formation of protective film. Morphological investigation for CaSO4. 2H2O gypsum crystals formed in synthetic sea water indicate reduction of cal- cium sulphate crystals in the presence of the polymer as indicated by scanning electron microscopic (SEM) studies.
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