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昆明冶金高等专科学校学报 ›› 2025, Vol. 41 ›› Issue (1): 1-.DOI: 10. 3969/j. issn. 1009 - 0479. 2025. 01. 001

• 冶金技术与材料 •    下一篇

锰铁采选冶一体企业废弃物资源综合利用研究

  

  1. 昆明冶金高等专科学校建筑工程学院,云南 昆明 650033
  • 收稿日期:2023-12-28 出版日期:2025-02-07 发布日期:2025-09-26
  • 作者简介:徐兴卫(1979-),男,云南宣威人,副教授,工学硕士,主要从事废弃物综合利用研究。
  • 基金资助:
    云南省技术委托开发重点项目“铜、铁选矿、冶炼尾渣制作绿色高强混凝土”(2023530101000771)。

Research on the Comprehensive Utilization of Waste Resources in Integrated Ferromanganese Mining, Ore Dressing, and Smelting Enterprises

  1. Faculty of Architectural Engineering, Kunming Metallurgy College, Kunming 650033, China
  • Received:2023-12-28 Online:2025-02-07 Published:2025-09-26

摘要: 锰铁矿开采、选矿和冶炼过程中,产生的采矿弃渣、选矿尾泥、冶炼抛渣、余热和密闭炉收集煤气,以 及废弃物的处置是企业高质量发展的瓶颈。为攻克厂(场)区内废弃物资源化循环利用壁垒,实现采、选、冶一 体化企业废弃物零排放,对锰铁矿废弃物制各接合料工艺进行了优化研究。在已有的小型实验数据和工程应用反 请的基础上,通过正交试验设计进行掺合科配比方案研究,利用极差分析和方差分析优选出废弃物循环利用最佳 物料平衡比例,并对最优配比实施工程应用校对。结果显示:1) 在采矿弃渣占比65%、选矿尾泥占比20%、冶炼 批渣占比16%、激发剂占比1.5%的条件下,制备掺合料满足国标技术指标,且各阶段产出废弃物基本达到处理平 街;2) 考虑到掺合物流半径限制问题,进一步就企业周围物流半径内主要混凝土原材料与掺合料的适应性开展 研究,结果表明,研究制备的掺合料对不同种类的水泥和外加剂具有较好的适应性;3)采选冶一体化锰矿企业使 用本研究成果可实现废弃物平街处置,提高企业综合竞争力,且达到废弃物零排放。

关键词: 非金属材料, 资源综合利用, 掺合料 , 正交试验设计

Abstract:

During the mining, beneficiation, and smelting processes of manganese iron ore, mining waste, beneficiation tailings, smelting slag, residual heat and gas collected in closed furnaces, as well as waste disposal are a bottleneck for the high-quality development of enterprises. To overcome this challenge and a- chieve the resource recycling of waste within the factory area, as well as zero waste discharge in integrated mining, beneficiation, and metallurgy enterprises, this study focuses on optimizing the process of preparing admixtures from manganese iron ore waste. Based on existing small-scale experimental data and feedback from engineering applications, an orthogonal experimental design was used to study the blending ratio of waste materials. Range analysis and variance analysis were applied to optimize the material balance ratio for waste recycling, and engineering application verification was performed for the optimal ratio. The research results show that: 1) Under the conditions of mining waste accounting for 65% , beneficiation tailings for 20% , smelting slag for 16% , and activator for 1. 5% , the prepared admixture meets the national standard technical requirements, and the waste generated at each stage is effectively balanced in terms of disposal.

2) Considering the limitation of the logistics radius for admixtures, the study further explores the compati- bility of primary concrete raw materials and the admixtures within the logistics radius around the enterprise. The results demonstrate that the admixtures prepared in this study exhibit good compatibility with various types of cement and admixtures. 3) The integrated mining, beneficiation, and smelting manganese ore en- terprises can achieve balanced waste disposal, enhance the overall competitiveness of the enterprise, and a- chieve zero waste discharge by applying the results of this study.

Key words: font-family:", background-color:#FFFFFF, ">non-metallic materials, comprehensive resource utilization, admixture, orthogonal experi- mental design

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