School of Chemistry and Chemical Engineering, Henan University, Kaifeng 475004, China.
Water Sci Technol. 2011;64(2):423-30. doi: 10.2166/wst.2011.526.
Polysuccinimide (abridged as PSI) was synthesized by urea and maleic anhydride. Aminobenzenesulfonic acid (ABSA) was introduced at different mole ratio to PSI to generate polyaspartic acid (abridged as PASP)/ABSA graft copolymer. The scale inhibition behavior of resultant PASP/ABSA copolymer was evaluated by using static scale inhibition method. The transmittance of the supernatant of the copolymer solution was measured to evaluate its dispersion ability for ferric oxide. The corrosion inhibition performance of the copolymer for iron plates immersed in the refined testing water (including 0.555 g of CaCl2 2H2O, 0.493 g of MgSO4 7H2O, 50 mg PASP/ABSA graft copolymer and 0.168 g of NaCl) was tested. It was found that PASP/ABSA copolymer was able to efficiently inhibit CaCO3 and Ca3(PO4)2 scales and had good corrosion inhibition ability as well, and it also had good dispersion ability for Fe2O3. Besides, the inhibition efficiency of PASP/ABSA against CaCO3 and Ca3(PO4)2 scales and its dispersion capacity for Fe2O3 was highly dependent on dosage. The reason may lie in that PASP/ABSA copolymer simultaneously possesses carboxylic ion and sulfonic group which can chelate Ca2+ to form stabilized and dissoluble chelates, resulting in increase of solubility of calcium salts in water. Also it may lie in that the introduction of acidic hydrophilic sulfonic group with a strong electrolytic capacity into PASP molecule simultaneously enhances the dispersion of the inhibitor molecules and hinders the formation of Ca3(PO4)2 scale.
聚琥珀酰亚胺(简称 PSI)由尿素和马来酸酐合成。将不同摩尔比的对氨基苯磺酸(ABSA)引入 PSI 中,生成聚天冬氨酸(简称 PASP)/ABSA 接枝共聚物。采用静态阻垢法评价所得 PASP/ABSA 共聚物的阻垢性能。通过测量共聚物溶液上清液的透光率来评估其对氧化铁的分散能力。将共聚物浸泡在精制测试水中(包括 0.555 g CaCl2·2H2O、0.493 g MgSO4·7H2O、50 mg PASP/ABSA 接枝共聚物和 0.168 g NaCl)的铁片的腐蚀抑制性能。结果表明,PASP/ABSA 共聚物能有效抑制 CaCO3 和 Ca3(PO4)2 垢,同时具有良好的腐蚀抑制能力,对 Fe2O3 也具有良好的分散能力。此外,PASP/ABSA 对 CaCO3 和 Ca3(PO4)2 垢的抑制效率及其对 Fe2O3 的分散能力与用量高度相关。原因可能在于 PASP/ABSA 共聚物同时具有羧酸离子和磺酸基,能与 Ca2+螯合形成稳定的可溶螯合物,从而增加水中钙盐的溶解度。也可能是由于在 PASP 分子中引入了具有强电解质能力的亲水性磺酸基,同时增强了抑制剂分子的分散性并阻碍了 Ca3(PO4)2 垢的形成。