ISSN 1009-6248CN 61-1149/P 双月刊

主管单位:中国地质调查局

主办单位:中国地质调查局西安地质调查中心
中国地质学会

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    煤矿钻井泥浆–木质素复合固化风积沙试验研究

    Study of the Solidification Process of Wind-Transported Sand Utilizing a Composite of Coal Mine Drilling Slurry and Lignin

    • 摘要: 随着新时代西部大开发的推进,中国西北沙漠周边地区建筑材料的短缺问题愈发严重,致使风积沙作为主要的建筑选择成为一项迫切需求。本研究创新性的利用当地废弃钻井泥浆与木质素的复合材料对风积沙的进行改良,探索了不同配比的复合固化材料对于沙土样本的无侧限抗压强度及其抗渗特性的影响。研究结果表明:①钻井泥浆与木质素作为固化剂能够显著提升沙土样本的无侧限抗压强度,其强度表现出线性递增的趋势,并且随着养护时间的延长,先是减小然后趋于平稳。②随着固化剂的添加,样品的抗渗能力有明显提升,并且在龄期的延续中这一趋势表现为初期下降后趋于平稳;适当比例的钻井泥浆与木质素通过填充样品内部的孔隙、包裹土壤颗粒并优化其结构,使土体变得更为紧实;结合离子固化剂的粘结作用,能够有效降低孔隙的尺寸和连通性,从而提升其抗水渗透的能力。③提出了一种复合风积沙固化剂,其最优配比为3%的钻井泥浆与8%的木质素,该固化剂经济实惠且生态环保。本研究可为西北风积沙地区建筑材料的改善及钻井泥浆的资源化利用提供一种新思路。

       

      Abstract: With the promotion of the national policy of developing the western region, the shortage of building materials in the surrounding areas of the northwest desert in China has become increasingly severe, making wind blown sand the main building choice an urgent need. This study innovatively utilized local waste drilling mud and lignin composite materials to improve aeolian sand, exploring the effects of different ratios of composite solidification materials on the unconfined compressive strength and impermeability characteristics of sand samples. The research results show that: ① Drilling mud and lignin as solidifiers can significantly improve the unconfined compressive strength of sand samples, and its strength shows a linear increasing trend, and with the extension of curing time, it first decreases and then tends to stabilize. ② With the addition of curing agent, the impermeability of the sample has been significantly improved, and this trend shows an initial decrease followed by a stabilization over time. The appropriate proportion of drilling mud and lignin fills the pores inside the sample, wraps around soil particles, and optimizes their structure, making the soil more compact. At the same time, combined with the bonding effect of ion curing agents, it can effectively reduce the size and connectivity of pores, thereby enhancing their ability to resist water infiltration. ③ A composite wind blown sand solidifier was proposed, with an optimal ratio of 3% drilling mud and 8% lignin. This solidifier is economical and environmentally friendly. This study can provide a new idea for the improvement of building materials and the resource utilization of drilling mud in the northwest wind blown sand area.

       

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