Experimental study on ionic soil stabilizer combined with vacuum preloading to solidify sludge

IF 3.7 2区 工程技术 Q3 ENGINEERING, ENVIRONMENTAL Bulletin of Engineering Geology and the Environment Pub Date : 2023-09-02 DOI:10.1007/s10064-023-03394-y
Jinsheng Lei, Wanchun Liu, Xinghua Chen, Jianbing Wu
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Abstract

Combined reinforcement methods have increasingly become the trend for ultra-soft soil foundation treatment with super high-water content and a large amount of floating mud. Based on the vacuum-aided grouting technique and principle of vacuum preloading soft foundation reinforcement, an efficient in situ sludge solidification technology ionic soil stabilizer (ISS) combined with a vacuum preloading device to improve the mechanical properties of sludge and effectively avoid secondary pollution from sludge is proposed and verify it through laboratory test. Based on the vacuum-assisted grouting technology and the principle of vacuum preloading soft foundation reinforcement, the sludge solidification technology of negative pressure (vacuum) combined with ISS is studied. The physical and mechanical property indexes, soil settlement, drainage, etc. are analyzed before and after the sludge solidification to establish the potential of the vacuum preloading-assisted grouting technology and ionic solidification process. The experimental results showed that ISS combined with vacuum preloading has better curing efficiency and curing effect than vacuum preloading alone. Under the combined action of ISS, the surface settlement and drainage volumes of sludge treated by the vacuum preloading method increased by 26.46% and 78.54%, respectively, and the water content of the solidified sludge greatly decreased. Under the action of vacuum preloading, ISS injection made the soil easier to compact, decreased pore volume, and improved the compressive strength of the sludge.

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离子土壤稳定剂与真空预压联合固化污泥的试验研究
对于超高含水率、大浮泥量的超软土地基处理,组合加固方法日益成为趋势。基于真空辅助注浆技术和真空预压软基加固原理,提出了一种有效的原位污泥固化技术——离子土壤稳定剂(ISS)与真空预压装置相结合,以改善污泥的力学性能,有效避免污泥的二次污染,并通过实验室试验进行了验证。基于真空辅助注浆技术和真空预压软基加固原理,研究了负压(真空)与ISS相结合的污泥固化技术。通过对污泥固化前后的物理力学指标、土壤沉降、排水等进行分析,确立了真空预压辅助注浆技术和离子固化工艺的发展潜力。实验结果表明,真空预压与真空预压相结合的固化效率和固化效果优于单独的真空预压。在ISS的共同作用下,真空预压法处理的污泥表面沉降量和排水量分别增加了26.46%和78.54%,固化污泥的含水量大大降低。在真空预压作用下,ISS注入使土壤更容易密实,孔隙体积减小,污泥抗压强度提高。
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来源期刊
Bulletin of Engineering Geology and the Environment
Bulletin of Engineering Geology and the Environment 工程技术-地球科学综合
CiteScore
7.10
自引率
11.90%
发文量
445
审稿时长
4.1 months
期刊介绍: Engineering geology is defined in the statutes of the IAEG as the science devoted to the investigation, study and solution of engineering and environmental problems which may arise as the result of the interaction between geology and the works or activities of man, as well as of the prediction of and development of measures for the prevention or remediation of geological hazards. Engineering geology embraces: • the applications/implications of the geomorphology, structural geology, and hydrogeological conditions of geological formations; • the characterisation of the mineralogical, physico-geomechanical, chemical and hydraulic properties of all earth materials involved in construction, resource recovery and environmental change; • the assessment of the mechanical and hydrological behaviour of soil and rock masses; • the prediction of changes to the above properties with time; • the determination of the parameters to be considered in the stability analysis of engineering works and earth masses.
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