摘要
进行了风光互补非碳冶金的实验探索,包括高温熔炼、电解制氢还原铁矿石和水溶液电解制铁三方面实验。风光互补非碳冶金实验装置由4个基本单元构成:发电单元、蓄电单元、控制单元和冶金单元。实验结果表明非碳冶金技术可以获得冶金过程所需的能量和1600℃以上的高温,也能够提供还原反应用氢和水溶液电解制铁所需的电子。该技术方案可推广用于Ti,Cu,Ni,Al,Mg等金属的提取和冶炼。
Experimental on non-carbon metallurgy was explored, which contained smelting in high temperature, iron production by electrolytic and hydrogen production by electrolysis. Four technical units of experimental was summarized: power generation, electric power storage, control, metallurgy. Energy and high temperature over 1 600 ℃ can be offered by technology on non-carbon metallurgy, electron also can be offered for hydrogen reduction and electrolysis. This Ni, Al, Mg. technology also can be used to extract and smelt other metals as Ti,
出处
《工业加热》
CAS
2014年第3期16-19,共4页
Industrial Heating
关键词
非碳冶金
熔炼
电解
氢还原
non-carbon metallurgy
melting
electrolysis
hydrogen reduction