College of Chemistry and Materials Science, Nanjing Normal University, Nanjing, China.
Water Sci Technol. 2012;66(1):193-200. doi: 10.2166/wst.2012.157.
The aim of this study is to report on the performance of a novel non-phosphorus antiscalant, acrylic acid (AA)-allylpolyethoxy carboxylate (APEC), being developed for calcium-sulfate scale inhibition in industrial water systems. The performance of AA-APEC on calcium-sulfate scale inhibition was compared with that of the two commercial inhibitors, polyamino polyether methylene phosphonates (PAPEMP) and polyacrylic acid (PAA), containing the same polyethylene glycol segments or carboxyl functional groups as AA-APEC. The study indicated that AA-APEC could act as a highly effective calcium sulfate inhibitor, having strong ability to inhibit the precipitation of calcium sulfate at a dosage of 2 mg L(-1), showing approximately 83.6% inhibition. The results also showed that AA-APEC dosage, the solution pH, inhibiting temperature, concentration of Ca(2+), and SO(4)(2-) all play important roles in inhibiting calcium-sulfate precipitation. The precipitation thermodynamics and kinetics at different temperatures were also discussed. X-ray diffractometer (XRD) and scanning electron microscope (SEM) analysis showed that AA-APEC strongly affected the texture and the morphology of the deposited calcium sulfate. Calcium sulfate has been inhibited through stabilization by adsorption onto crystal growth sites of nascent crystals altering their morphology.
本研究旨在报告一种新型的非磷阻垢剂——丙烯酸(AA)-烯丙基聚乙氧基羧酸盐(APEC)的性能,该阻垢剂是为工业水系统中硫酸钙的抑制而开发的。AA-APEC 对硫酸钙的阻垢性能与两种商业抑制剂聚氨基聚醚甲叉膦酸盐(PAPEMP)和聚丙烯酸(PAA)进行了比较,这两种商业抑制剂均含有与 AA-APEC 相同的聚乙二醇段或羧基官能团。研究表明,AA-APEC 可以作为一种高效的硫酸钙抑制剂,在 2mg/L(-1)的剂量下具有很强的抑制硫酸钙沉淀的能力,抑制率约为 83.6%。结果还表明,AA-APEC 用量、溶液 pH 值、抑制温度、Ca(2+)浓度和 SO(4)(2-)浓度对硫酸钙沉淀的抑制都起着重要作用。还讨论了不同温度下的沉淀热力学和动力学。X 射线衍射仪(XRD)和扫描电子显微镜(SEM)分析表明,AA-APEC 强烈影响了沉积硫酸钙的结构和形态。通过吸附在新生晶体的生长点上,改变其形态,从而稳定硫酸钙,达到抑制硫酸钙的目的。