Modification of Recycled Concrete Aggregate and Its Use in Concrete: An Overview of Research Progress

Author:

Su Yingqiang1,Yao Yuchong1,Wang Yang12,Zhao Xuan1,Li Li3ORCID,Zhang Jie4

Affiliation:

1. Architectural Engineering Institute, Huzhou Vocational & Technical College, Huzhou 313002, China

2. Huzhou Key Laboratory of Green Building Technology, Huzhou 313002, China

3. College of Water Resources and Architectural Engineering, Northwest A&F University, Yangling, Xianyang 712100, China

4. Department of Architectural Engineering, Jiyuan Vocational & Technical College, Jiyuan 459099, China

Abstract

The differences in physical properties, chemical properties, and mechanical properties between reclaimed concrete aggregate and natural aggregate are discussed in this paper. In this paper, the commonly used improvement techniques of recycled concrete aggregate are reviewed. Physical modification involves peeling the attached mortar layer using mechanical and thermodynamic means, including mechanical grinding and shaping, heat treatment, and microwave or electric pulse treatment. Chemical modification is based on the chemical reaction of some materials with recycled aggregate attached mortar, including acid treatment removal, water glass strengthening, carbonation strengthening, inorganic slurry strengthening, and polymer strengthening. Microbial modification is mainly based on the metabolic activity of specific microorganisms that induce carbon deposition modification. The results show that the reinforced technology of recycled aggregate has made some progress in improving the performance of recycled aggregate, but there are still some problems, such as inconsistent strengthening effects and the unstable compatibility of composite materials. In this paper, future research directions, such as the development of new strengthening materials and the integration of multi-functional strengthening technology, are described in order to provide some theoretical support for the utilization of recycled concrete aggregate.

Funder

Zhejiang Provincial Natural Science Foundation of China

Huzhou public welfare application research project

Publisher

MDPI AG

Subject

General Materials Science

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