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基于赤泥的胶凝材料稳定土的工程性质与微观结构

Engineering Properties and Microstructure of Soils Stabilized by Red-Mud-Based Cementitious Material.

作者信息

Li Wentao, Huang Ke, Chen Feng, Li Lihua, Cheng Yang, Yang Kang

机构信息

Key Laboratory of Health Intelligent Perception and Ecological Restoration of River and Lake, Ministry of Education, Hubei University of Technology, Wuhan 430068, China.

School of Civil Engineering, Architecture and Environment, Hubei University of Technology, Wuhan 430068, China.

出版信息

Materials (Basel). 2024 May 14;17(10):2340. doi: 10.3390/ma17102340.

Abstract

Red mud (RM) is an industrial waste generated in the process of aluminum refinement. The recycling and reusing of RM have become urgent problems to be solved. To explore the feasibility of using RM in geotechnical engineering, this study combined magnesium oxide (MgO) (or calcium oxide (CaO)) with RM as an RM-based binder, which was then used to stabilize the soil. The physical, mechanical, and micro-structural properties of the stabilized soil were investigated. As the content of MgO or CaO in the mixture increased, the unconfined compressive strength (UCS) of the RM-based cementitious materials first increased and then decreased. For the soils stabilized with RM-MgO or RM-CaO, the UCS increased and then decreased, reaching a maximum at RM:MgO = 5:5 or RM:CaO = 8:2. The addition of sodium hydroxide (NaOH) promoted the hydration reaction. The UCS enhancement ranged from 8.09% to 66.67% for the RM-MgO stabilized soils and 204.6% to 346.6% for the RM-CaO stabilized soils. The optimum ratio of the RM-MgO stabilized soil (with NaOH) was 2:8, while that of the RM-CaO stabilized soil (with NaOH) was 4:6. Freeze-thaw cycles reduced the UCS of the stabilized soil, but the resistance of the stabilized soil to freeze-thaw erosion was significantly improved by the addition of RM-MgO or RM-CaO, and the soil stabilized with RM-MgO had better freeze-thaw resistance than that with RM-CaO. The hydrated magnesium silicate generated by the RM-MgO stabilized soil and the hydrated calcium silicate generated by the RM-CaO stabilized soil helped to improve the UCS of the stabilized soil. The freeze-thaw cycles did not weaken the formation of hydration products in the stabilized soil but could result in physical damage to the stabilized soils. The decrease in the UCS of the stabilized soil was mainly due to physical damage.

摘要

赤泥(RM)是铝精炼过程中产生的一种工业废料。赤泥的回收和再利用已成为亟待解决的问题。为了探索赤泥在岩土工程中应用的可行性,本研究将氧化镁(MgO)(或氧化钙(CaO))与赤泥结合作为一种基于赤泥的粘结剂,然后用于稳定土壤。对稳定土的物理、力学和微观结构特性进行了研究。随着混合物中MgO或CaO含量的增加,基于赤泥的胶凝材料的无侧限抗压强度(UCS)先增加后降低。对于用RM-MgO或RM-CaO稳定的土壤,UCS先增加后降低,在RM:MgO = 5:5或RM:CaO = 8:2时达到最大值。氢氧化钠(NaOH)的加入促进了水化反应。RM-MgO稳定土的UCS增强幅度为8.09%至66.67%,RM-CaO稳定土的UCS增强幅度为204.6%至346.6%。RM-MgO稳定土(含NaOH)的最佳比例为2:8,而RM-CaO稳定土(含NaOH)的最佳比例为4:6。冻融循环降低了稳定土的UCS,但添加RM-MgO或RM-CaO显著提高了稳定土的抗冻融侵蚀能力,且RM-MgO稳定的土壤比RM-CaO稳定的土壤具有更好的抗冻融性。RM-MgO稳定土生成的水化硅酸镁和RM-CaO稳定土生成的水化硅酸钙有助于提高稳定土的UCS。冻融循环并未削弱稳定土中水化产物的形成,但可能会对稳定土造成物理损伤。稳定土UCS的降低主要是由于物理损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca57/11123238/b576dc908548/materials-17-02340-g001.jpg

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