SiO2纳米颗粒与Fe3O4溶液对地质软土固结的影响

IF 0.7 4区 材料科学 Q3 Materials Science
Cong Yu, GuanJun Zhang, Yangzi Liu
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引用次数: 0

摘要

软土在沿海地区分布广泛,作为基础需要先进行处理。为解决地质软土的固结问题,提出了一种纳米sio2颗粒与纳米fe3o4溶液复合的方法。在此过程中,选择了纳米材料,设计了掺入纳米土的制备方法。随后,设计了实验装置,明确了主要仪器的使用方法,完成了实验流程设计。实验结果表明,在土壤的电子显微镜图像生成中,混合纳米sio2颗粒或纳米fe3o4溶液的土壤具有更致密的表征;在土壤电流变化实验中,掺入纳米sio2颗粒的土壤在72小时的最大电流为0.1052 A;在土壤排水试验中,掺入纳米铁3 O 4材料的土壤最终最大总排水达到1907 mL;在土壤pH值实验中,纳米sio2材料添加比例为3‰,纳米fe3o4材料添加比例为2‰时,土壤pH值较高。上述结果表明,研究所设计的采用纳米sio2材料或纳米fe3o4材料的地质软土固结方法可以有效改善土壤的排水性能和力学性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of SiO2 nanoparticles and Fe3O4 solution on the consolidation of geological soft soil
Soft soil is widely distributed in coastal areas and needs to be treated first when used as a foundation. A method of incorporating nano SiO 2 particles and nano Fe 3 O 4 solution is proposed to address the consolidation problem of geological soft soil. During the process, nanomaterials are selected and a preparation method for incorporating nanomaterial soil is designed. Subsequently, the experimental device is designed and the main instrument usage methods are specified, resulting in a complete experimental process design. The experimental results showed that in the generation of electron microscope images of soil, the soil mixed with nano SiO 2 particles or nano Fe 3 O 4 solution has a denser characterization; In the experiment of current variation in soil, the maximum current of the soil mixed with nano SiO 2 particles is 0.1052 A at 72 hours; In the soil drainage test, the maximum total drainage of the soil mixed with nano Fe 3 O 4 material at the end reached 1907 mL; In the soil pH value experiment, the pH value of the soil is higher when the proportion of nano SiO 2 material added is 3‰ and the proportion of nano Fe 3 O 4 material added is 2‰. The above results indicate that the geological soft soil consolidation method designed by the research institute incorporating nano SiO 2 materials or nano Fe 3 O 4 materials can effectively improve the drainage and mechanical properties of the soil.
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来源期刊
Materials Express
Materials Express NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
自引率
0.00%
发文量
69
审稿时长
>12 weeks
期刊介绍: Information not localized
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