首页> 外文会议>IEEE Industry Applications Society Annual Meeting >Temperature monitoring of electrolytic cells using wireless battery-free harsh environment sensors
【24h】

Temperature monitoring of electrolytic cells using wireless battery-free harsh environment sensors

机译:使用无无线严酷环境传感器的电解池温度监控

获取原文

摘要

Proper control of temperature and electrolyte circulation flow is mandatory in electrolytic cells to produce dense and high-purity cathodes. The electrochemical kinetics of electrolytic processes is inherently dependent on these electrolyte variables. Continuous monitoring of electrolyte condition integrated to operation and housekeeping procedures, allows enhancing cathode quality and electrodeposition time, better utilization of electrolyte additives, and early identification of temperature excursions and electrolyte flow blockages. These abnormal cell conditions can produce excessive evaporation and energy consumption, anode passivation that impair cathode production in copper electrorefining, or safety issues from the production of flammable hydrogen in copper electrowinning. Therefore, the monitoring of changes in temperature and electrolyte flow can give critical indicators of process deviations and providing early warnings to face the wide variability of performance and safety conditions of cells caused by electrolyte condition mismanagement. This paper proposes a non-invasive wireless sensor for the monitoring of the temperature and electrolyte circulation flow estimation through each cell, suitable to highly-corrosive sulfuric acid environments. The condition monitoring sensor design is small size, lightweight, meets battery-free operation and non-sparking safety requirements. It uses an inductive link-based system for powering and a RF link for communicating. The result is a sensor that surpasses the features of standard instrumentation currently used for electrolytic process monitoring.
机译:在电解池中必须严格控制温度和电解液循环流量,以生产致密和高纯度的阴极。电解过程的电化学动力学本质上取决于这些电解质变量。集成到操作和内务处理程序中的电解质状况的连续监控,可以提高阴极质量和电沉积时间,更好地利用电解质添加剂,及早发现温度波动和电解质流动阻塞。这些异常的电池条件会产生过多的蒸发和能量消耗,阳极钝化会削弱铜电解精炼中的阴极产量,或者会因铜电解沉积中产生易燃氢而产生安全问题。因此,监测温度和电解液流量的变化可以提供关键的工艺偏差指标,并提供预警,以应对因电解液状况管理不当而引起的电池性能和安全状况的广泛变化。本文提出了一种无创无线传感器,用于监测通过每个电池的温度和电解质循环流量估算,适用于高腐蚀性硫酸环境。状态监测传感器的设计体积小,重量轻,满足无电池运行和无火花的安全要求。它使用基于感应链路的系统供电,并使用RF链路进行通信。结果是传感器超越了当前用于电解过程监控的标准仪器的功能。

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