Bai Zhi, Xu Haifeng, Yang Bo, Yao Jixin, Li Guang, Guo Kai, Wang Nan, Liang Nannan
School of Mechanical and Electronic Engineering, Suzhou University, Suzhou 234000, China.
School of Information Engineering, Suzhou University, Suzhou 234000, China.
Materials (Basel). 2022 Sep 2;15(17):6110. doi: 10.3390/ma15176110.
Improving the evaporation rate of solar steam generation (SSG) has always been a research hotspot to solve the shortage of water resources. Using cotton, FeO, polyvinyl alcohol (PVA) and diatomite (DM) as raw materials, DM/PVA/FeO@cotton composites with both firmness and hydrophilicity were prepared. FeO has a wide range of light absorption characteristics and good photothermal conversion performance, and is an ideal photothermal conversion material. PVA enhances the adhesion between FeO, cotton and DM and enhances the hardness of the sample and the internal porous structure. The existence of DM greatly improves the hydrophilicity of the sample, ensuring that the water in the lower layer can be continuously transported to the surface of the sample, and DM makes the surface of the sample rough, which reduces the reflection of sunlight and improves the efficiency of light heat conversion. Under one-sun irradiation, the temperature of the sample surface increases by 52.6 °C, the evaporation rate can reach 1.32 kg m h and the evaporation efficiency is 82.9%. Using this sample as the photothermal conversion layer of the SSG device, the removal rate of salt ions in seawater is more than 98% and the removal rate of heavy metal ions in sewage is close to 100%. This work provides a new idea and design method for SSG in the field of seawater desalination and sewage treatment.
提高太阳能蒸汽发生器(SSG)的蒸发速率一直是解决水资源短缺问题的研究热点。以棉花、FeO、聚乙烯醇(PVA)和硅藻土(DM)为原料,制备了兼具坚固性和亲水性的DM/PVA/FeO@棉花复合材料。FeO具有广泛的光吸收特性和良好的光热转换性能,是一种理想的光热转换材料。PVA增强了FeO、棉花和DM之间的附着力,提高了样品的硬度和内部多孔结构。DM的存在大大提高了样品的亲水性,确保下层的水能够持续输送到样品表面,并且DM使样品表面粗糙,减少了太阳光的反射,提高了光热转换效率。在一个太阳光照下,样品表面温度升高52.6℃,蒸发速率可达1.32 kg m⁻² h⁻¹,蒸发效率为82.9%。将该样品用作SSG装置的光热转换层,海水中盐离子的去除率超过98%,污水中重金属离子的去除率接近100%。这项工作为海水淡化和污水处理领域的SSG提供了新的思路和设计方法。