深部井下结构紧凑型煤矸智能化精确分选技术及装备
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1.Role of molecular simulation in understanding the mechanism of low-rank coal flotation: A review
- 关键词:
- Low-rank coal; Flotation; Molecular simulation; Interfacial interactionmechanism;BUBBLE-PARTICLE ATTACHMENT; OXIDIZED COAL; PYROLYSIS CHARACTERISTICS;DYNAMICS SIMULATIONS; KAOLINITE PARTICLES; FROTH FLOTATION; BROWN-COAL;LIGNITE; SURFACE; OIL
Flotation is the main method for recovering and reusing fine low-rank coal by taking advantage of the difference in physicochemical properties of the mineral surface, but its efficiency has not yet reached a satisfactory level. Particles, flotation reagents, and air bubbles are highly dispersed and interact with each other in a flotation cell. Therefore, a basic understanding on the fundamental mechanism of the above interactions involved in a low-rank coal flotation system is the prerequisite for improving low-rank coal flotation recovery. In recent years, with the development of theoretical chemistry and computational chemistry, molecular simulation has gradually become a powerful tool for studying low-rank coal flotation, which has shed new light on the molecular structure of low-rank coal and the interfacial interaction in low-rank coal flotation at the molecular or atomic levels. In this paper, we first review the basic theory of molecular simulation, and then we review the recent advances in the molecular structure of low-rank coal. Coal-water, coal-reagent, coal-bubble, and coal-clay interactions are discussed comprehensively from the viewpoint of molecular simulation. This review is closed with a brief conclusion and perspective discussion.
...2.The role of surface forces in mineral flotation
- 关键词:
- Surface force; Mineral flotation; Inter-particle interaction;Inter-bubble interaction; Bubble-particle interaction;BUBBLE-PARTICLE ATTACHMENT; HYDROPHOBIC FORCE; SOLID-SURFACES; AIRBUBBLES; FILMS; WATER; VANDERWAALS; ELECTROLYTE; STABILITY; MEDIA
Flotation is an interfacial separation technique, which plays a major role in mineral processing industry. It separates particles according to their wetting properties. In flotation pulp, particles and bubbles are highly dispersed in aqueous medium and in the presence of various flotation reagents. Almost all interfacial interactions including inter-particle, inter-bubble, and bubble-particle interactions in the complex pulp medium are driven by surface forces. Therefore, a fundamental understanding of the role of surface forces in flotation is a prerequisite to enhance practical flotation performance and adapt it for treatment of complex and refractory ores. In this paper, recent advances in the field of surface forces encountered in mineral flotation are reviewed. In particular, we highlight the latest progress in the attachment mechanism between bubble and particle with the aid of atomic force microscope and interference microscope. The current knowledge gap and future directions are also discussed.
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