A Novel Humidity Self-Regulating Interior Wall Coating Composite Based on Red Mud Derived from Alumina Production

27 Pages Posted: 7 May 2022

See all articles by Jinpeng Feng

Jinpeng Feng

Guangxi University

Shuhan Liu

Guangxi University

Jiann-Yang Hwang

Michigan Technological University

Wei Mo

Guangxi University

Xiujuan Su

Guangxi University

Shaojian Ma

Guangxi University

Zongwu Wei

Guangxi University

Abstract

Aimed to resolve the problem of excessively high indoor humidity in subtropical areas and develop a new resource disposal technique for red mud, a novel humidity self-regulating interior wall coating composite (HRCRM) was successfully prepared using red mud as a matrix material and vermiculite as a humidity regulator. The effects of component proportion, ambient humidity, exposure time on hygroscopicity of this composite were systematically investigated. This composite exhibited good humidity regulating ability with the largest water absorption rate of 16.38% under experimental conditions. Moreover, the various properties were tested including surface drying time, hardness, adhesion, coating appearance, water resistance and reusability, meeting the national standard requirements well. The mechanism was comprehensively analyzed by XRD, TG-DTG, FESEM, and FTIR, indicating that the humidity self-adjusting function of HRCRM was realized by regulating the interlayer water storage of vermiculite. This study can provide theoretical and technical guidance for residential environment improvement in subtropical areas and comprehensive utilization of red mud.

Keywords: Red mud, Vermiculite, humidity, Self-regulation

Suggested Citation

Feng, Jinpeng and Liu, Shuhan and Hwang, Jiann-Yang and Mo, Wei and Su, Xiujuan and Ma, Shaojian and Wei, Zongwu, A Novel Humidity Self-Regulating Interior Wall Coating Composite Based on Red Mud Derived from Alumina Production. Available at SSRN: https://ssrn.com/abstract=4102702 or http://dx.doi.org/10.2139/ssrn.4102702

Jinpeng Feng (Contact Author)

Guangxi University ( email )

East Daxue Road #100
Nanning, 530004
China

Shuhan Liu

Guangxi University ( email )

East Daxue Road #100
Nanning, 530004
China

Jiann-Yang Hwang

Michigan Technological University ( email )

Wei Mo

Guangxi University ( email )

East Daxue Road #100
Nanning, 530004
China

Xiujuan Su

Guangxi University ( email )

East Daxue Road #100
Nanning, 530004
China

Shaojian Ma

Guangxi University ( email )

East Daxue Road #100
Nanning, 530004
China

Zongwu Wei

Guangxi University ( email )

East Daxue Road #100
Nanning, 530004
China

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