Zalewska Anna, Kowalik Joanna, Tworek Magdalena
Faculty of Technology and Chemical Engineering, Division of Polymer Technology and Protective Coatings, Bydgoszcz University of Science and Technology, 3 Seminaryjna Street, 85-326, Bydgoszcz, Poland.
Environ Sci Pollut Res Int. 2023 Jan 26. doi: 10.1007/s11356-023-25384-z.
The sustainable development of the paint and varnish industry is a prerequisite for action to minimize the negative environmental impact of paint products. They consist not only in reducing the emission of harmful VOC substances into the atmosphere but also in modifying the composition of the paint material in order to improve the properties of the coatings and at the same time reduce the amount of waste. Selection of the appropriate composition of the water-borne composition is still a problem to be solved. Therefore, aqueous polymer dispersions of Arlberdingk AC 2514 containing an acrylic resin modified with an ionic liquid of didecyldimethylammonium nitrate (DDANO) were tested. Non-ionic surfactants (Rokanol L-10 and Rokacet S-24), polyurethane thickener (DSX 1514), and mineral thickener (bentonite) were also used for stabilization. The influence of individual components on changes in the stability and particle size of dispersion systems was investigated. Physicomechanical tests of coatings obtained from polymer dispersion systems were also performed. Studies have shown that with the increase in the amount of DDANO in the system, the particle size of the varnish composition decreases and the gloss and relative hardness of the coatings decrease. The optimal amount of DDANO in the dispersion is 1.5% w/w. DSX 1514 increased the stability, reduced the migration rate of the dispersion particles, and improved the elasticity and impact resistance of the protective membranes. It has been shown that the stability varies depending on the type of thickener and surfactant (SAA) used. SAA increases the value of the TSI (Turbiscan Stability Index), which takes the values of 3.8 (0.3 g bentonite) and 3.6 (0.6 g bentonite), respectively, with Rokanol L-10 16% w/w. Water-soluble acrylic resin with the tested additives can be potentially used for the production of stable dispersions with extended life.
涂料和清漆行业的可持续发展是采取行动将涂料产品对环境的负面影响降至最低的前提条件。这些影响不仅包括减少有害挥发性有机化合物(VOC)物质向大气中的排放,还包括改变涂料材料的成分,以改善涂层性能,同时减少废物量。选择合适的水性组合物的组成仍然是一个有待解决的问题。因此,测试了含有用硝酸二癸基二甲基铵(DDANO)离子液体改性的丙烯酸树脂的阿伯丁克AC 2514水性聚合物分散体。还使用了非离子表面活性剂(Rokanol L-10和Rokacet S-24)、聚氨酯增稠剂(DSX 1514)和矿物增稠剂(膨润土)进行稳定化处理。研究了各组分对分散体系稳定性和粒径变化的影响。还对由聚合物分散体系获得的涂层进行了物理力学测试。研究表明,随着体系中DDANO含量的增加,清漆组合物的粒径减小,涂层的光泽度和相对硬度降低。分散体中DDANO的最佳含量为1.5% w/w。DSX 1514提高了稳定性,降低了分散颗粒的迁移率,并改善了保护膜的弹性和抗冲击性。结果表明,稳定性因所用增稠剂和表面活性剂(SAA)的类型而异。SAA会增加TSI(Turbiscan稳定性指数)的值,当使用16% w/w的Rokanol L-10时,TSI值分别为3.8(0.3 g膨润土)和3.6(0.6 g膨润土)。含有测试添加剂的水溶性丙烯酸树脂有可能用于生产具有延长使用寿命的稳定分散体。