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绿色鳞片和缓蚀剂的合成与机理。

Synthesis and Mechanism of a Green Scale and Corrosion Inhibitor.

机构信息

College of Chemistry and Molecular Sciences, Henan University, Kaifeng 475004, China.

College of Pharmacy and Chemical Engineering, Zhengzhou University of Industrial Technology, Zhengzhou 451150, China.

出版信息

Int J Mol Sci. 2024 Sep 21;25(18):10150. doi: 10.3390/ijms251810150.

Abstract

A new green water treatment agent, a poly(aspartic acid)-modified polymer (PASP/5-AVA), was synthesized using polysuccinimide and 5-aminovaleric acid (5-AVA) in a hybrid system. The structure was characterized, and the scale and corrosion inhibition performance were carried out with standard static scale inhibition and electrochemical methods, respectively. The mechanism was explored using XRD, XPS, SEM, and quantum chemistry calculations. The results indicated that PASP/5-AVA exhibited better scale and corrosion inhibition performance than PASP and maintained efficacy and thermal stability of the scale inhibition effect for a long time. Mechanistic studies indicated that PASP/5-AVA interferes with the normal generation of CaCO and CaSO scales through lattice distortion and dispersion, respectively; the combined effect of an alkaline environment and terminal electron-withdrawing -COOH groups can induce the stable C ionic state formation in -CH- of the extended side chain, thus enhancing its chelating ability for Ca ions. At the same time, the extension of the side chain length also enhances the adsorption ability of the agent on the metal surface, forming a thick film and delaying the corrosion of the metal surface. This study provides the necessary theoretical reference for the design of green scale and corrosion agents.

摘要

一种新型绿色水处理剂,聚天冬氨酸-改性聚合物(PASP/5-AVA),在混合体系中使用聚琥珀酰亚胺和 5-氨基戊酸(5-AVA)合成。对其结构进行了表征,并分别采用标准静态阻垢法和电化学方法对其阻垢和缓蚀性能进行了研究。利用 XRD、XPS、SEM 和量子化学计算等方法对其作用机理进行了探讨。结果表明,PASP/5-AVA 具有比 PASP 更好的阻垢和缓蚀性能,并且长时间保持阻垢效果的有效性和热稳定性。机理研究表明,PASP/5-AVA 通过晶格变形和分散分别干扰 CaCO 和 CaSO 垢的正常生成;碱性环境和末端吸电子-COOH 基团的联合作用可以诱导扩展侧链-CH-中-C 离子态的稳定形成,从而增强其对 Ca 离子的螯合能力。同时,侧链长度的延长也增强了药剂在金属表面的吸附能力,形成了一层厚厚的薄膜,从而延缓了金属表面的腐蚀。该研究为绿色阻垢和缓蚀剂的设计提供了必要的理论参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d43/11432533/64840f7588a9/ijms-25-10150-g001.jpg

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