Su Zhiyuan, Tang Qingguo, Zhao Weiwei, Liang Cong, Liu Qian, Wang Fei, Duan Xinhui, Liang Jinsheng
Institute of Power Source and Ecomaterials Science, Hebei University of Technology, Tianjin 300130, China.
Key Laboratory of Special Function Materials for Ecological Environment and Information, Ministry of Education, Hebei University of Technology, Tianjin 300130, China.
Materials (Basel). 2022 Jun 15;15(12):4235. doi: 10.3390/ma15124235.
In this study, ball mill pretreated iron ore tailings were modified with tetraethoxysilane (TEOS) and hexadecyltrimethoxysilane (HDTMS) to obtain iron ore tailings/polysiloxane (IOT/POS) superhydrophobic powders, which were subsequently mixed with chloroprene rubber solution (CRS) to prepare durable superhydrophobic composite coatings. The effect of HDTMS amount and reaction time on the wettability of the superhydrophobic powder was investigated. The influence of the superhydrophobic powders concentration on the wettability of the composite coatings as well as the degree of damage of the superhydrophobicity of the composite coating was analyzed by using the sandpaper abrasion and tape peeling tests. Further, SEM and FTIR were used to analyze the formation mechanism of the IOT/POS superhydrophobic powders and coatings. The results showed for an HDTMS amount of 2.5 mmol and reaction time of 4 h, the contact angle of the IOT/POS powder was 157.3 ± 0.6°, whereas the slide angle was determined to be 5.9 ± 0.8°. For an IOT/POS powder content of 0.06 g/mL in CRS, the contact angle value of the superhydrophobic composite coating was 159.2 ± 0.5°, whereas the slide angle value was 5.5 ± 0.8°. The superhydrophobic composite coating still maintained the superhydrophobicity after the sandpaper abrasion and tape peeling tests, which indicated the iron ore tailings solid waste has the potential to prepare superhydrophobic coatings.
在本研究中,用四乙氧基硅烷(TEOS)和十六烷基三甲氧基硅烷(HDTMS)对球磨预处理的铁矿石尾矿进行改性,以获得铁矿石尾矿/聚硅氧烷(IOT/POS)超疏水粉末,随后将其与氯丁橡胶溶液(CRS)混合,制备出耐久性超疏水复合涂层。研究了HDTMS用量和反应时间对超疏水粉末润湿性的影响。通过砂纸磨损和胶带剥离试验,分析了超疏水粉末浓度对复合涂层润湿性以及复合涂层超疏水性损伤程度的影响。此外,利用扫描电子显微镜(SEM)和傅里叶变换红外光谱(FTIR)分析了IOT/POS超疏水粉末和涂层的形成机理。结果表明,当HDTMS用量为2.5 mmol、反应时间为4 h时,IOT/POS粉末的接触角为157.3±0.6°,而滑动角为5.9±0.8°。当CRS中IOT/POS粉末含量为0.06 g/mL时,超疏水复合涂层的接触角值为159.2±0.5°,而滑动角值为5.5±0.8°。经过砂纸磨损和胶带剥离试验后,超疏水复合涂层仍保持超疏水性,这表明铁矿石尾矿固体废弃物具有制备超疏水涂层的潜力。