Effect of Textile Sludge on Strength, Shrinkage, and Microstructure of Polypropylene Fiber Concrete

Author:

Cheng Zhiqing12,He Lei2,Wang Lijun3,Liu Yu2,Yang Shiqiang2,He Zhihai4,Liu Chun5

Affiliation:

1. School of Civil Engineering, Central South University, Changsha 410075, China

2. Yunnan Traffic Science Research Institute Co., Ltd., Kunming 650011, China

3. Yunnan Highway Network Toll Management Co., Ltd., Kunming 650011, China

4. College of Civil Engineering, Shaoxing University, Shaoxing 312000, China

5. School of Architectural Engineering, Zhejiang Guangsha Vocational and Technical University of Construction, Dongyang 322100, China

Abstract

Textile sludge has complex components and certain toxicity, which is in urgent need of resource treatment. The effect of textile sludge replacing cement and aggregates on the properties of polypropylene fiber concrete has been investigated by testing the compressive strength, drying shrinkage, heavy metal leaching concentration, micro morphology, and nanomechanical properties. The results show that the utilization of 10% textile sludge replacing cement increases the later strengths of concrete and decreases the drying shrinkage due to its denser microstructure. With the further content increase of textile sludge replacing cement, the strengths of concrete are reduced and the drying shrinkage is increased. The utilization of textile sludge replacing aggregates increases the compressive strengths of concrete and the drying shrinkage at every age, and among them, the concrete with 15% textile sludge replacing aggregates shows the highest compressive strengths, and the drying shrinkage of concrete increases with the content increase of textile sludge replacing aggregates. The concrete with textile sludge is a good solidification with heavy metal ions. The utilization of 10% textile sludge replacing cement improves the microstructure of concrete and helps to produce more high-density calcium silicate hydrate and reduces the thickness of the interfacial transition zone.

Funder

Science and Technology Project of Yunnan Province

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

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