IF 4.9 2区 工程技术 Q1 ENGINEERING, CHEMICAL Minerals Engineering Pub Date : 2025-01-24 DOI:10.1016/j.mineng.2025.109177
Miao Pan , Tong Xu , Jiawang Lu , Chenlong Duan , Wei Shi , Long Huang , Yidong Shen , Jiale Yuan , Jinpeng Qiao , Haishen Jiang
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摘要

废细浮选尾矿(WFFTs)是由矿物浮选过程中产生的细小尾矿颗粒和选矿废水组成的一种矿浆。由于处理过程不合理,会造成资源浪费和生态污染。本研究旨在通过分级、磁选和脱水工艺对 WFFT 进行再处理,回收有用的建筑材料和水资源。振动脱水是产品脱水过程中必不可少的第一步,可帮助回收选矿废水,减少后续脱水操作的工作量,显著降低能耗。本研究提出了一种具有可变弹性的筛面结构,以提高脱水性能。此外,还系统探讨了含水率与振动强度梯度、固体浓度、进料速度和筛孔尺寸等因素的响应规律,验证了振动筛在工业脱水中的优势。尾砂、磁性材料和非磁性材料的平均含水率分别为 17.43 %、19.36 % 和 17.23 %。振动脱水技术的突破确保了尾矿处理工艺的高效稳定运行,从而成功实现了将水力浮选尾矿转化为建筑用砂、干混砂浆和建筑陶瓷等有用资源。有趣的是,选矿厂预计每年产生的经济效益远远超过 260 万美元。这项研究为建设环境友好型采矿企业提供了一条可能的创新之路。
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Enhanced vibration dewatering to facilitate efficient disposal process for waste fine flotation tailings
Waste fine flotation tailings (WFFTs) constitute a type of ore slurry consisting of fine tailing particles and beneficiation wastewater produced in the mineral flotation process. It can lead to resource wastage and ecological pollution due to irrational disposal process. This study aimed at recovering the useful building materials and water resources via reprocessing WFFTs by classification, magnetic separation, and dewatering processes. Vibration dewatering is essential and first step during the dewatering of product, which can aid in recovering beneficiation wastewater and reduce the workload of the subsequent dewatering operations, significantly lowering the energy consumption. In this study, a screen surface structure with variable elasticity was proposed to enhance the dewatering performance. Further, the response laws of moisture content with respect to the factors such as vibration intensity gradient, solid concentration, feed rate, and screen aperture size were systematically explored, and the advantages of the vibration screen in industrial dewatering were verified. The average moisture contents of tailings sand, magnetic material, and non-magnetic material were 17.43 %, 19.36 %, and 17.23 %, respectively. The breakthrough of the vibration dewatering technology ensured efficient and stable operation of the tailing disposal process, and thus the transformation of WFFTs into useful resources such as building sand, dry-mixed mortar, and building ceramics was successfully achieved. Interestingly, the beneficiation plant was expected to generate economic benefits far exceeding $2.6 million per year. This study provides a possible innovative path for building an environmentally-friendly mining enterprise.
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来源期刊
Minerals Engineering
Minerals Engineering 工程技术-工程:化工
CiteScore
8.70
自引率
18.80%
发文量
519
审稿时长
81 days
期刊介绍: The purpose of the journal is to provide for the rapid publication of topical papers featuring the latest developments in the allied fields of mineral processing and extractive metallurgy. Its wide ranging coverage of research and practical (operating) topics includes physical separation methods, such as comminution, flotation concentration and dewatering, chemical methods such as bio-, hydro-, and electro-metallurgy, analytical techniques, process control, simulation and instrumentation, and mineralogical aspects of processing. Environmental issues, particularly those pertaining to sustainable development, will also be strongly covered.
期刊最新文献
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