Preparation of a Low-Cement-Content Silty Soil Stabilizer Using Industrial Solid Wastes

Author:

Li Haijun1,Ma Wenqiang2,Wang Kai1,Feng Yujie2,Zhang Shengtao1,Zhou Shengya2,Zhang Hanming2

Affiliation:

1. Shandong Hi-Speed Group, Jinan 250098, China

2. School of Qilu Transportation, Shandong University, Jinan 250002, China

Abstract

Silty soil performs poorly when used in roads. Cement is generally used as a stabilizer to treat silty soil and enable it to meet the requirements for roadbed filling. However, cement is an environmentally unfriendly material and can cost much. Meanwhile, solid wastes of ground granulated blast furnace slag (GBFS), fly ash (FA), and flue gas desulfurized (FGD) gypsum are produced in large quantities annually. Therefore, stabilizer A (cement:ground GBFS:fly ash:FGD gypsum = 30:44:15:11) and stabilizer B (cement:ground GBFS:fly ash:FGD gypsum = 40:38:13:9) were investigated in this study by reducing the cement content in the stabilizer and improving the utilization rate of solid wastes. The compressive strength development, California bearing ratio (CBR), temperature shrinkage, mineral composition, and micro-morphology of the stabilized silty soil were measured. The main findings are as follows: firstly, the addition of solid wastes can mitigate the adverse effect of delay time on compressive strength development. Secondly, the proposed stabilizers can significantly improve the CBR, which can reach 60% with a 4% dosage. Additionally, Stabilizer B is believed to improve the resistance to temperature shrinkage, and a higher stabilizer dosage can reduce the rate of decrease in water stability coefficient. Both X-ray diffraction analysis and scanning electron microscope observations show that the main hydration products that contribute to the stabilization are C-S-H and ettringite.

Funder

tsqn

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference46 articles.

1. Effects of compactness and water Yellow-River alluvial silt content on its mechanical behaviors;Xiao;Rock Soil Mech.,2008

2. Experimental study on the engineering characteristics of modified silt in the Yellow River alluvial plain;Gao;Constr. Build. Mater.,2023

3. Research on Treatment Methods for Unfavorable Geological Sections and Special Roadbeds;Jin;Reliab. Rep.,2023

4. Application of Subgrade Replacement Technology in Highway Engineering;Guojun;Sci-Tech Innov. Product.,2023

5. Stabilization of collapsible soils with nanomaterials, fibers, polymers, industrial waste, and microbes: Current trends;Khodabandeh;Constr. Build. Mater.,2023

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