Aarhus University, Department of Environmental Science, Frederiksborgvej 399, 4000, Roskilde, Denmark.
Dr. Robert-Murjahn-Institut GmbH (RMI), Industriestraße 12, 64372, Ober-Ramstadt, Germany.
J Hazard Mater. 2019 Feb 15;364:125-133. doi: 10.1016/j.jhazmat.2018.10.018. Epub 2018 Oct 9.
Biocides are commonly applied to construction materials such as facade renders and paints in order to protect them from microbial spoilage. These renders and paints are exposed to weathering conditions, e.g., sunlight and rain. Pigments are interacting intensively with the spectrum of the incoming light; thus, an effect of paint pigments on phototransformation rates and reaction pathways of the biocides is hypothesized. In this study, the phototransformation of four commonly used biocides (carbendazim, diuron, octylisothiazolinone (OIT) and terbutryn) in four different paint formulations differing solely in pigments (red and black iron oxides, white titanium dioxide, and one pigment-free formulation) were investigated. Paints surfaces were irradiated under controlled conditions. The results show that biocides degrade most rapidly in the pigment-free formulation. The degradation in the pigment-free formulation followed a first-order kinetic model with the respective photolysis rate constants: k = 0.0090 h, k = 0.1205 h, k = 0.0079 h. Carbendazim concentrations did not change significantly. The degradation was considerably lower in the pigment-containing paints. The determination of several phototransformation products of terbutryn and octylisothiazolinone showed different transformation product ratios dependent on the pigment. Consequently, pigments not only reflect the incoming light, but also interact with the biocide photodegradation.
杀菌剂通常应用于建筑材料中,如外墙涂料和油漆,以保护它们免受微生物的侵蚀。这些涂料和油漆会暴露在风化条件下,例如阳光和雨水。颜料与入射光的光谱强烈相互作用;因此,假设涂料颜料会影响光转化速率和杀菌剂的反应途径。在这项研究中,研究了四种常用杀菌剂(多菌灵、敌草隆、辛基异噻唑啉酮(OIT)和特丁津)在四种不同的涂料配方中的光转化,这些配方仅在颜料上有所不同(红色和黑色氧化铁、白色二氧化钛和一种无颜料配方)。涂料表面在受控条件下进行了辐照。结果表明,杀菌剂在无颜料配方中的降解速度最快。无颜料配方中的降解遵循一级动力学模型,相应的光解速率常数为:k=0.0090 h,k=0.1205 h,k=0.0079 h。多菌灵的浓度没有明显变化。含颜料的涂料中的降解要低得多。对特丁津和辛基异噻唑啉酮的几种光转化产物的测定表明,转化产物的比例取决于颜料。因此,颜料不仅反射入射光,还与杀菌剂的光降解相互作用。