Development and Performance Study of Composite Protein Foaming Agent Based on Human Hair Residue

Author:

Zhang Xuebo1234ORCID,Du Shuaiqi1,Han Linxiu1,Feng Xiaojun5ORCID,Yang Ming1

Affiliation:

1. College of Safety Science and Engineering, Henan Polytechnic University, Jiaozuo 454003, China

2. State Key Laboratory Cultivation Base for Gas Geology and Gas Control, Jiaozuo 454003, China

3. The Collaborative Innovation Center of Coal Safety Production of Henan Province, Jiaozuo 454003, China

4. Henan Shenhuo Grp Co., Ltd., Yongcheng 476600, China

5. School of Safety Engineering, China University of Mining and Technology, Xuzhou 221116, China

Abstract

The instability and collapse of boreholes during coal seam gas extraction significantly affect the effectiveness of gas extraction. In response, this study selected human hair residue as the base material for composite protein foaming agents, leveraging the high protein content of animal hoof and hair materials to develop a high-strength, high-permeability, and environmentally friendly new type of foam concrete. This research found that the optimal ratio of foaming agent base solution to water is 1:4 when sodium hydroxide is used for protein hydrolysis. Comparing the foaming effects of sodium dodecyl sulfate (K12), α-sodium alpha-alkenyl sulfonate (AOS), sodium lauryl polyoxyethylene ether sulfate (SLS), and sodium dodecyl benzene sulfonate (LAS), sodium lauryl polyoxyethylene ether sulfate (SLS) exhibited the best foaming performance, while α-sodium alpha-alkenyl sulfonate (AOS) had the best foam stability. The optimal foam performance was achieved by mixing 2.0 g per liter of sodium lauryl polyoxyethylene ether sulfate and 0.3% calcium stearate. The experimental results showed that this foam concrete, with 25 mL of foaming agent, has a high strength exceeding 11 MPa and a high permeability with an average of 2.13 MD. This paper utilizes environmentally friendly materials and preparation processes. By using renewable resources such as human hair residue as raw materials, it helps reduce the dependence on natural resources and promotes sustainable development. This research demonstrates significant sustainability and provides the mining industry with an eco-friendly and efficient solution, with the potential to achieve positive economic and environmental benefits in practical applications.

Funder

National Natural Science of China

Henan Polytechnic University

Program for Innovative Research Team (in Science and Technology) in University of Henan Province

Publisher

MDPI AG

Reference27 articles.

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4. The mechanics of frost heave with stratigraphic microstructure evolution;Ye;Eng. Geol.,2023

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