...
首页> 外文期刊>ISIJ international >Waste Heat Recovery from Iron Production by Using Magnesium Oxide/Water Chemical Heat Pump as Thermal Energy Storage
【24h】

Waste Heat Recovery from Iron Production by Using Magnesium Oxide/Water Chemical Heat Pump as Thermal Energy Storage

机译:氧化镁/水化学热泵作为热能储存设备从炼铁中回收余热

获取原文
           

摘要

A heat recovery system based on thermal energy storage from the iron-making process at medium temperature range (200–300°C) is presented. For an efficient waste heat recovery system the selection of suitable thermal energy storage material is essential. Accordingly, a new candidate for a chemical heat storage material used in a magnesium oxide/water chemical heat pump at medium-temperature was developed in this study. The new composite, named EML, was fabricated by mixing pure magnesium hydroxide with lithium bromide and expanded graphite, which are employed as reactivity and heat transfer enhancers, respectively. The effects of mass mixing ratios w of EG to Mg(OH)_(2) on dehydration and hydration were investigated by a thermogravimetric (TG) method, with the result that the w of 0.83 was the optimal mass mixing ratio for the EML composite. Thereby the heat output capacities of the EML composite (w = 0.83) were evaluated with varying reaction vapor pressure and hydration temperature. Heat output capacity per unit initial weight of the EML composite (w = 0.83) was calculated as 1168.7 kJ kg_(EML)~(–1) at a hydration temperature of 110°C and reaction vapor pressure of 57.8 kPa. This value was 1.2 times higher than the corresponding heat output capacity of pure Mg(OH)_(2) powder (958.5 kJ kg_(Mg(OH)_(2))~(-1)). This result showed that the EML composite has sufficient heat output capacity and mold-ability provided by EG for practical use in a heat exchange reactor. Thus, this composite could potentially be used as chemical heat storage materials for thermal heat storage.
机译:提出了一种基于中温范围(200–300°C)炼铁过程中热能存储的热回收系统。对于有效的废热回收系统,选择合适的储热材料至关重要。因此,本研究开发了一种用于中温氧化镁/水化学热泵的化学蓄热材料的新候选材料。通过将纯氢氧化镁与溴化锂和膨胀石墨混合,分别制得反应性和传热增强剂,制成了新型复合材料EML。用热重(TG)法研究了EG与Mg(OH)_(2)的质量比w对脱水和水化的影响,结果w为0.83是最佳质量。 EML复合材料的混合比。因此,在变化的反应蒸气压和水合温度下评估了EML复合材料的热输出能力(i w = 0.83)。在水化温度为110°C,反应蒸汽压力为57.8 kPa的情况下,EML复合材料的单位初始重量的热输出容量(w = 0.83)为1168.7 kJ kg_(EML)〜(-1)。该值是纯Mg(OH)_(2)粉末(958.5 kJ kg_(Mg(OH)_(2))〜(-1)的相应热输出容量的1.2倍。该结果表明,EML复合材料具有由EG提供的足够的热输出能力和可模塑性,可用于热交换反应器中。因此,该复合材料可以潜在地用作用于热储热的化学储热材料。

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