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International Journal of Frontiers in Engineering Technology, 2025, 7(4); doi: 10.25236/IJFET.2025.070404.

Analysis of Lead Dust Treatment System Based on Cold Sintering Technology

Author(s)

Ji Houbao, Jin Wenxuan, Zhang Yihang, Yan Bingxin

Corresponding Author:
​Ji Houbao
Affiliation(s)

School of Mechanical and Electronic Engineering, Wuhan University of Technology, Wuhan, China

Abstract

This paper presents a preliminary design for a lead dust treatment system based on cold sintering technology. The system aims to achieve energy savings by leveraging the low-energy consumption advantage of cold sintering over traditional high-temperature sintering methods in the sintering industry. Furthermore, it utilises marble waste residue and cement as joint solidifiers to reduce the porosity of the solidification products, thereby seeking to stabilise lead dust and resource-recycle solid waste. This paper completes the preliminary design of the system and explores the feasibility of its technical principles, laying the theoretical foundation for subsequent experimental validation. This work represents only an initial technical concept and has not undergone rigorous mathematical derivation, experimental verification, or data support. Further in-depth research and systematic evaluation are required.

Keywords

Cold Sintering Technology, Lead Dust Treatment, Marble Waste Residue, Preliminary Concept

Cite This Paper

Ji Houbao, Analysis of Lead Dust Treatment System Based on Cold Sintering Technology. International Journal of Frontiers in Engineering Technology (2025), Vol. 7, Issue 4: 25-30. https://doi.org/10.25236/IJFET.2025.070404.

References

[1] Wang, Z.F., Zhao, P., Jing, M.H., Zhang, Y.K. and Feng, L. (2020). Pb Leaching Characteristics of Solidified Municipal Solid Waste Incineration Fly Ash by Cold Sintering. Environmental Pollution and Control, 42, 44-48,53.

[2] A.S.E. Belaidi, L. Azzouz, E. Kadri, S. Kenai. (2012). Effect of Natural Pozzolana and Marble Powder on the Properties of Self-Compacting Concrete. Construction and Building Materials, 31, 251-257.

[3] Feng, J.J., Zhang, Y.R., Ma, M.S., Lu, Y.Q. and Liu, Z.F. (2023). Current Status and Development Trend of Cold Sintering Process. Journal of Inorganic Materials, 38, 125-136.

[4] Wang, J.H. and Lu, J.S. (2023). Research Progress in Resource Utilization of Marble Waste Residue. Chemical Minerals and Processing, 52, 70-78.

[5] Li, C.Y., He, Y. and Yan, Y.F. (2025). Mechanism and Environmental Risk Assessment of Heavy Metals in High Temperature Sintering Solidification of Wastes. Journal of Ecology and Rural Environment, 41, 437-449.