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Journal Article

Citation

Fan T, Liu Z, Ouyang J, Li M. J. Environ. Manage. 2020; 269: e110854.

Copyright

(Copyright © 2020, Elsevier Publishing)

DOI

10.1016/j.jenvman.2020.110854

PMID

32561025

Abstract

Coal dust diffusion during coal transportation and storage causes serious environmental pollution. The existing dust suppressant in previous studies was unable to achieve the expected effects owing to severe wind damage and rain erosion. Therefore, the current study synthesized and prepared an efficient and applicable dust suppressant for coal transportation and storage. Infrared spectroscopy and scanning electron microscope experiments were conducted during the synthesis to analyze the microstructure changes in the synthetic products. Moreover, viscosity was used as the evaluation index in the single-factor experiments to obtain the optimal synthesis conditions. Performance measurement results showed that the prepared dust suppressant had a strong protective effect on coal powder and could effectively resist the impact of wind damage and rain erosion. Compared with other dust suppressants, the proposed dust suppressant prepared showed more evident positive effects and longer lasting action time in the quantitative test. Moreover, the dried product could synergistically combust with coal powder, thereby possibly mitigating the tedious post-treatment process and increasing the utilization rate of resources.


Language: en

Keywords

Biodegradation; Efficient dust suppressant; Gelatin; Molecular modification; Synergistic combustion

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