铜冶炼渣缓冷工艺优化与有价金属解离度关系研究OA
Research on the Relationship Between the Optimization of Slow Cooling Process for Copper Smelting Slag and the Dissociation Degree of Valuable Metals
针对铜渣资源化中金属回收率低、能耗高的问题,研究了缓冷工艺优化与有价金属解离度的关系.以某底吹炉渣为对象,采用可编程控制设定多梯度降温速率及特定温区恒温时长,结合X射线衍射、场发射扫描电镜及能谱分析、高分辨率矿物自动分析系统,对改性产物进行三维物相重构、微区形貌表征与解离度定量测算.结果表明:降温速率由急冷降至缓慢结晶域时,铁橄榄石相结晶完整度指数级增长,被包裹的硫化铜及共生金属相平均粒径由微米级粗化至58μm以上;在表观粘度剧变的临界温区引入120min等温平台,可激发微细冰铜液滴的布朗运动与重力沉降碰撞聚并效应.最优缓冷制度下,铜族元素单体解离度达87.6%,较原始水淬渣提升34.2个百分点,精矿铜品位及绝对回收率分别稳定在24.5%和89.3%.通过精准控制硅酸盐熔体在液相线至固相线温区的冷却动能,可重塑多相凝固结构,解除铁硅酸盐基体对伴生有价金属的物理包裹,优化铜及贵金属的解离特性,为工业固废资源化回收提供了有效支撑.
To address low metal recovery and high energy consumption in copper slag utilization,the relationship between slow cooling optimization and valuable mineral liberation was studied.Using a bottom-blown furnace slag,programmable cooling with multi-gradient rates and isothermal holds was applied.Modified products were analyzed by XRD,SEM-EDS,and automated mineralogy for 3D phase reconstruction,micro-morphology,and liberation quantification.Results:Reducing the cooling rate from quenching to a slow crystallization regime exponentially increases fayalite crystallinity,coarsening encapsulated copper sulfides and associated metals from micrometers to>58 μm.A 120 min isothermal hold in the critical viscosity-transition zone promotes Brownian motion and gravity settling of fine matte droplets,leading to coalescence.Under optimal slow cooling,copper liberation reaches 87.6%(34.2 percentage points higher than water-quenched slag),with concentrate copper grade and recovery stabilized at 24.5%and 89.3%,respectively.Precisely controlling the cooling kinetics of the silicate melt from liquidus to solidus reshapes the multiphase structure,eliminates physical encapsulation by the fayalite matrix,and optimizes liberation of copper and precious metals,effectively supporting industrial solid waste recycling.
黄帅武
易门铜业有限公司,云南 易门 651100
社会科学
铜冶炼冶炼渣缓冷工艺工艺优化金属解离度
copper smeltingSmelting slagSlow cooling processProcess optimizationMetal dissociation degree
《世界有色金属》 2026 (7)
10-12,3
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