节点文献
盐碱地改造用高效阻盐材料的制备及其性能研究
Preparation and Study of Properties of High-Efficiency Salt-Blocking Materials for Saline-Alkali Soil Reconstruction System
【摘要】 为改良盐碱土壤,制备了一种隔水阻盐性能优异的超疏水颗粒材料,构建隔水阻盐材料与蓄水模式结合的盐碱地改造体系。以大漠砂为芯材,通过表面覆膜进行疏水改性,探究树脂和微纳米辅材掺量对材料疏水性、抗渗性和透气性的影响规律。利用微型土柱模拟地下水盐迁移过程,探究材料的隔水性能和阻盐性能。结果表明,在树脂、疏水碳酸钙和纳米二氧化硅掺量分别为1.0%、0.8%和0.2%时,材料接触角达到153.6°,耐静水高度达230 mm,并维持良好的透气性能。在微型土柱模拟试验中,隔水阻盐材料对水分蒸发和盐分上移的抑制作用明显,蒸发抑制率为50%~70%,盐分抑制率大于99%且在20次阻盐循环后维持97.5%以上。
【Abstract】 In order to improve saline-alkali soil, a superhydrophobic particle material with an excellent waterproof and salt-blocking performance was prepared, which was used to build a saline-alkali soil reconstruction system with a water-storage mode. Substrate material and desert sand were modified with a hydrophobic coating.The influences of resin content and micro-/nano-material content on the hydrophobicity, impermeability and breathability of the material were studied. A self-designed mini soil-column was used to simulate the migration process of underground saline water, and the waterproof and salt-blocking properties of the prepared materials were explored. The results show that when resin, hydrophobic CaCO3 and nano-SiO2 contents were 1.0 %, 0.8 % and 0.2 %, respectively, the material achieved a water contact angle of 153.6°, a water-resistant height of 230 mm, and maintained a good air permeability. The mini soil-column simulation test indicates that the material has a strong inhibition effect on the water evaporation and the upward movement of salt, with an evaporation-inhibiting rate of 50 % to 70 % and a salt-blocking rate of more than 99 %, which maintains 97.5 % after 20 test cycles.
【Key words】 saline-alkali soil improvement; superhydrophobic materials; waterproof and saltblocking; evaporation-inhibition;
- 【文献出处】 同济大学学报(自然科学版) ,Journal of Tongji University(Natural Science) , 编辑部邮箱 ,2024年07期
- 【分类号】TB34;S156.4
- 【下载频次】51