School of Civil Engineering, Sun Yat-Sen University, No.135 XinGangXiLu, Guangzhou, 510275, China.
Guangdong Engineering Research Centre for Major Infrastructure Safety, School of Civil Engineering, Sun Yat-Sen University, Guangzhou, 510275, China.
Sci Rep. 2022 Aug 29;12(1):14711. doi: 10.1038/s41598-022-19108-5.
The loose structure and low mechanical strength of the surface soil make it vulnerable to damage under erosion conditions. Slope ecological protection is one of the effective methods to improve the stability of slope soil. Although it has been proved that polymer modified materials can effectively improve the soil properties and the environmental protection effect of slope, so far, the improvement mechanism has not been fully understood, especially the chemical mechanism of the material on the enhancement of soil mechanical properties is not clear. In the present study, the effects of nano-aqueous adhesive (NAA) on unconfined compressive strength, shear strength and aggregate characteristics of soil were studied by a series of laboratory experiments. The results show that NAA can increase the strength, aggregate number and stability of the soil, to effectively improve the stability of surface soil. In addition, through infrared spectroscopy and SEM test, it was found that NAA molecules were mainly distributed in the interlayer position of flaky clay minerals, mainly connected with clay minerals through hydrogen bonds, thereby effectively enhancing the cohesion of soil particles.
疏松的表层土壤结构和较低的机械强度使其在侵蚀条件下容易受到破坏。边坡生态保护是提高边坡土壤稳定性的有效方法之一。尽管已经证明聚合物改性材料可以有效地改善土壤性质和边坡的环保效果,但到目前为止,其改善机制还没有得到充分的理解,特别是材料对土壤力学性能的增强的化学机制还不清楚。在本研究中,通过一系列实验室实验研究了纳米水性胶黏剂(NAA)对无侧限抗压强度、剪切强度和土壤团聚体特征的影响。结果表明,NAA 可以提高土壤的强度、团聚体数量和稳定性,从而有效提高表层土壤的稳定性。此外,通过红外光谱和 SEM 测试发现,NAA 分子主要分布在片状黏土矿物的层间位置,主要通过氢键与黏土矿物相连,从而有效地增强了土壤颗粒的内聚力。