Ferrari Michele, Cirisano Francesca
CNR-ICMATE National Research Council, Institute of Condensed Matter Chemistry and Technologies for Energy, Via De Marini 6, 16149 Genova, Italy.
Nanomaterials (Basel). 2023 Sep 11;13(18):2541. doi: 10.3390/nano13182541.
The large and necessary diffusion of huge solar plants in extra urban areas implies the adoption of maintenance strategies especially where human intervention would require high costs and logistic problems. Animal dejections like bird droppings and agricultural sprays are environmental agents able to significantly decrease light absorption and, in some cases, cause serious damage to the electric conversion systems in a photovoltaic panel. In this work, the performance of a superhydrophobic (SH) coating in terms of durable self-cleaning properties and transparency has been studied in the presence of commercial and simulated contaminants on glass reference and solar panel surfaces. Wettability studies have been carried out both in static and dynamic conditions in order to compare the compositional effect of commercial liquids used as fertilizers or pesticides and molecules like pancreatin as model substances simulating bird droppings. From these studies, it can be observed that the superhydrophobic coating, independently from the surface where it is applied, is able to repel water and substances used such as fertilizers or pesticides and substances simulating bird droppings, maintaining its properties and transparency. This kind of approach can provide information to design suitable spray formulations without the above-mentioned drawbacks to be used in natural environment areas and agrosolar plants.
大型太阳能发电厂在城市周边地区广泛且必要的分布意味着需要采取维护策略,尤其是在人工干预成本高昂且存在后勤问题的地方。鸟粪等动物排泄物和农用喷雾剂是能够显著降低光吸收的环境因素,在某些情况下,还会对光伏板中的电转换系统造成严重损害。在这项工作中,研究了超疏水(SH)涂层在玻璃参考表面和太阳能板表面存在商业污染物和模拟污染物时的持久自清洁性能和透明度。为了比较用作肥料或杀虫剂的商业液体以及诸如胰蛋白酶等模拟鸟粪的分子物质的成分影响,在静态和动态条件下都进行了润湿性研究。从这些研究中可以观察到,超疏水涂层无论应用于何种表面,都能够排斥水以及用作肥料或杀虫剂的物质和模拟鸟粪的物质,同时保持其性能和透明度。这种方法可以为设计合适的喷雾配方提供信息,这些配方不存在上述缺点,可用于自然环境区域和农业太阳能发电厂。