...
首页> 外文期刊>Environmental Technology >Recovery of copper and aluminium from coaxial cable wastes using comparative mechanical processes analysis
【24h】

Recovery of copper and aluminium from coaxial cable wastes using comparative mechanical processes analysis

机译:使用比较机械工艺分析从同轴电缆废物中恢复铜和铝

获取原文
获取原文并翻译 | 示例
           

摘要

This work aims to perform a comparative study of two mechanical processes for the recycling of metals from coaxial cables (aluminium and copper-clad steel): Process I - comminution, sieving and electrostatic separation; and Process II - comminution, magnetic separation and electrostatic separation. Characterization techniques were performed on the cables to discover their composition. The parameters evaluated of electrostatic separation were: roll speed (n), electrostatic electrode distance (D2), voltage applied to the electrodes (U) and splitter angle (gamma). The best conditions for electrostatic separation were: Process I - n = 30 rpm, D2 = 8 cm, U = 30 kV and gamma = 0 degrees; Process II - n = 10 rpm, D2 = 10 cm, U = 25 kV and gamma = 2.5 degrees. Process I presented aluminium with purity of 99.51% and recovery efficiency of 94.53%, as well as copper-clad steel with purity of 96.79% and recovery efficiency of 99.68%. Process II presented aluminium with purity of 96.51% and recovery of 70.12%, as well as copper-clad steel with purity of 99.53% and recovery of 99.46%. A simplified economic assessment was performed on both process, and Process I has demonstrated to be the most profitable for coaxial cable recycling. The results showed that Process I is promising for the recovery of metals from cables due to its simplicity and lower cost, being capable of wide application to other processes that contain a mixture of conductive and non-conductive particles.
机译:这项工作旨在对来自同轴电缆(铝和铜包钢)的金属回收金属的两种机械过程进行比较研究:方法I - 粉碎,筛分和静电分离;和工艺II - 粉碎,磁分离和静电分离。在电缆上进行表征技术以发现其组合物。静电分离评估的参数是:辊速(n),静电电极距离(D2),施加到电极(U)和分离角(伽马)的电压。静电分离的最佳条件是:方法I - n = 30rpm,d2 = 8cm,u = 30kV和伽马= 0度;过程II - n = 10 rpm,d2 = 10cm,u = 25 kV和伽马= 2.5度。方法我呈现纯度为99.51%的铝,恢复效率为94.53%,以及铜包钢,纯度为96.79%,恢复效率为99.68%。方法II纯度纯度为96.51%,回收率为70.12%,以及纯铜钢,纯度为99.53%,回收率为99.46%。在两个过程中进行了简化的经济评估,并对加工电缆回收的过程表明是最有利可图的。结果表明,由于其简单性和更低的成本,该方法I承诺从电缆中回收金属,其能够广泛应用于含有导电和非导电颗粒的混合物的其他方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号