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首页> 外文期刊>Bulletin of engineering geology and the environment >Geotechnical properties and microstructure of lignin‑treated silty clay in seasonally frozen regions
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Geotechnical properties and microstructure of lignin‑treated silty clay in seasonally frozen regions

机译:在季节性冷冻区中木质素处理的木质素处理的泥土粘土的岩土性质和微观结构

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摘要

Freeze-thaw weathering is critical to road engineering in seasonally frozen regions. To solve the adverse effects of inorganic stabilization materials on the environment, the lignin of the original polymer compound is used to improve the durability of silty clay. Lignin content, curing duration, and freeze-thawing were determined to have a significant influence on the geotechnical properties and microstructure of lignin-treated silty clay. An increase in lignin content resulted not only in an increase in the optimum moisture content, pH, and water absorption of the soils, but also a decrease in the maximum dry density, plasticity index, specific gravity, thermal conductivity, and swelling capacity. In contrast, an increase in lignin content led to an initial increase followed by a decrease in the liquid limit, plastic limit, and California bearing ratio of the soils. After freeze-thawing, the thermal conductivity and California bearing ratio of lignin-treated silty clay decreased, whereas the swelling capacity and water absorption increased. The optimum lignin content for silty clay in the Jilin Province of China is approximately 4%. The soil particles are bonded with the cementitious material. No new mineral composition, chemical elements, or functional groups are formed after the treatment. The bearing capacity and frost resistance of lignin-treated silty clay are affected by the cementitious materials, coated grains, and filled pores.
机译:Freeze-Thaw风化对季节性冻结地区的道路工程至关重要。为解决无机稳定材料对环境的不利影响,原始聚合物化合物的木质素用于改善粉质粘土的耐久性。确定木质素含量,固化持续时间和冻融,对木质素处理的粉质粘土的岩土性质和微观结构产生显着影响。木质素含量的增加不仅导致了土壤的最佳水分含量,pH和吸水性的增加,而且还减少了最大干密度,可塑性指数,比重,导热性和溶胀容量。相比之下,木质素含量的增加导致初始增加,然后减少了土壤的液体限制,塑料极限和加州轴承比。冻融后,木质素处理的粉质粘土的导热系数和加州轴承比减少,而溶胀容量和吸水率增加。中国吉林省贫困粘土的最佳木质素含量约为4%。土壤颗粒与水泥材料粘合。在治疗后没有形成新的矿物质组合物,化学元素或官能团。木质素治疗的粉质粘土的承载力和霜冻受水泥材料,涂层晶粒和填充孔的影响。

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