Investigation of Enzyme-Based Soil Stabilization in Field Application

被引:5
|
作者
Sidiq, Amir [1 ]
Robert, Dilan J. [1 ]
O'Donnell, Brian [2 ]
Setunge, Sujeeva [1 ]
Swarup, Anoop [2 ]
Tostvrsnik, Frank [3 ]
机构
[1] RMIT Univ, Royal Melbourne Inst Technol, Civil & Infrastruct Engn, 376-392 Swanston St, Melbourne, Vic 3001, Australia
[2] Ctr Pavement Excellence Asia Pacific Ltd CPEAP Ltd, 1 Huntingtower Crescent, Langwarrin, Vic 3910, Australia
[3] Site Geotech,3-8 George Ave, Tyabb, Vic 3913, Australia
关键词
Soil stabilization; Enzyme; Cement; Field stabilization; Mechanical properties; Microstructural testing; LIME; PERFORMANCE; BEHAVIOR; SAND;
D O I
10.1061/(ASCE)MT.1943-5533.0004742
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The low bearing capacity of expansive soils often results in serviceability issues and premature failures of infrastructure built upon them. Various studies have demonstrated the use of different soil treatment methods using mechanical or chemical approaches to stabilize the weak ground as a precaution. Most of the reported studies are limited to either lab-based investigations or field monitoring works without the scientific connection between theory and translation. This study aims to verify the field application of a novel soil stabilization method by conducting laboratory-controlled experiments and field performance testing as verification. Enzyme-based soil stabilization was adopted for in-situ clay soil in combination with ordinary portland cement as a sustainable stabilization approach. Soil samples were collected at different regions from the field to evaluate the effectiveness and the mechanism of soil stabilization in the field by the means of replicating stabilization at the laboratory scale using identical mixing proportions of the additives. The mechanical behavior of stabilized soil was assessed through the unconfined compression strength and California bearing ratio test methods. In addition, the changes in the chemical composition of the soil due to the additives were evaluated through the X-ray diffraction testing technique and microporosity test using 2D images translated to 3D profiles from X-ray micro CT tomography. The efficacy of field stabilization was evaluated by conducting the falling weight deflectometer test in the stabilized site. Results from the study are useful to understand the efficacy of field soil stabilization and enhance the reliability of enzyme-based stabilization in practice.
引用
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页数:13
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