Experimental Study of Packed Bed Heat Transfer in a Shaft Kiln to Pre-Heat Manganese Ore with Hot Air

Sifiso N. Sambo, L. Hockaday, T. Seodigeng
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Abstract

Research work to demonstrate the feasibility of using hot air to preheat manganese ore to 600˚C before feeding into a submerged arc furnace is underway. A shaft kiln will be used as the transfer unit where energy transfer takes place by passing hot air through a packed bed of manganese ore. This paper report on the results obtained from experimental measurements of the transfer process at the air-manganese ore interface. Hot air at 650˚C was produced with an electrical heater and fed into a packed shaft type column. As a requirement for continuous unit operation, the transient analysis provides details of the required residence time before materials flow to the furnace can meet temperature requirements. Understanding of the transfer processes provides optimum column sizing and process control information to be used as the basis for scaling the shaft kiln design for preheating of manganese ores. This will enable the use of concentrated solar thermal power to preheat manganese resources with air used as the thermal transfer fluid.
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热风预热锰矿立窑充填床传热试验研究
锰矿石入炉前热风预热至600℃的可行性研究工作正在进行中。将使用立窑作为传递单元,通过将热空气通过锰矿充填床进行能量传递。本文报告了从空气-锰矿界面传递过程的实验测量结果。650℃的热空气由电加热器产生,并送入填料轴型塔。作为机组连续运行的一项要求,瞬态分析提供了物料流入炉膛达到温度要求之前所需停留时间的详细信息。对转移过程的了解,为锰矿石预热立窑的设计提供了最佳的塔柱尺寸和过程控制信息。这将使利用集中的太阳能热能预热锰资源,空气用作传热流体。
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