提高铬铁矿回收率和可持续性的螺旋分离器设计与优化

IF 5.3 Q2 ENGINEERING, ENVIRONMENTAL
Navid Hosseini Alaee , Jafar Sargheyni , Mehdi Pezeshkan , Pooria Kianoush
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引用次数: 0

摘要

铬铁矿需求的增加,加上开采和加工成本的上升,需要开发更高效的选矿技术。本研究提出了一种新型螺旋选矿机,专门用于从低品位矿石中生产铬铁矿精矿,解决了资源效率和环境可持续性问题。这种分离器的效率和性能取决于其技术和操作特性。利用先进的数学建模技术,包括reynolds平均湍流Navier-Stokes方程和Bagnold效应,该研究模拟了螺旋分离器表面的泥浆行为以及轻质和重质材料的分离。螺旋分离器的创新设计结合了独特的几何特征,增强了颗粒分层,从而显著提高了操作性能。结果表明,与传统方法相比,该原型在操作性能上有了显著提高,实现了更高的回收率和更低的能耗。此外,分离器的设计最大限度地减少了废物的产生,有助于实现更可持续的处理方法。这些发现强调了螺旋分离器在提高铬铁矿加工经济可行性的同时减轻环境影响的潜力,使其成为现有技术的有希望的替代方案。该研究通过为低品位铬铁矿的回收提供量身定制的解决方案,为矿物加工领域做出了贡献,并强调了整合创新工程实践以促进资源开采可持续性的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Design and optimization of a spiral separator for enhanced chromite recovery and sustainability

Design and optimization of a spiral separator for enhanced chromite recovery and sustainability
The increasing demand for chromite, coupled with rising mining and processing costs, necessitates the development of more efficient mineral processing technologies. This research presents a novel spiral separator specifically designed to produce chromite concentrate from low-grade ores, addressing both resource efficiency and environmental sustainability. The efficiency and performance of this separator depend on its technical and operational characteristics. Utilizing advanced mathematical modeling techniques, including Reynolds-averaged turbulent Navier-Stokes equations and the Bagnold effect, the study simulates slurry behavior on the spiral separator's surface and the segregation of light and heavy materials. The innovative design of the spiral separator incorporates unique geometric features that enhance particle stratification, leading to significant improvements in operational performance. The resulting prototype demonstrates significant enhancements in operational performance, achieving improved recovery rates and reduced energy consumption compared to traditional methods. Additionally, the separator's design minimizes waste generation, contributing to a more sustainable processing approach. These findings underscore the spiral separator's potential to improve economic viability in chromite processing while mitigating environmental impacts, making it a promising alternative to existing technologies. This research contributes to the field of mineral processing by providing a tailored solution for low-grade chromite recovery and highlights the importance of integrating innovative engineering practices to promote sustainability in resource extraction.
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来源期刊
Cleaner Engineering and Technology
Cleaner Engineering and Technology Engineering-Engineering (miscellaneous)
CiteScore
9.80
自引率
0.00%
发文量
218
审稿时长
21 weeks
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