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Exploratory experiment of non carbon metallurgy with wind-solar hybrid power

机译:风光混合动力非碳冶金探索性实验

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In order to solve high carbon emission and high consumption of energy in metallurgical industry, and also to solve overcapacity of solar-cell panels, experimental research of non carbon metallurgy was explored, which contained melting in high temperature, producing electrolytic iron and hydrogen production by electrolysis. A complete set of non-carbon metallurgy system should include four technical units: power generation, electric power storage, control module and metallurgy unit. Experimental result indicates enough Energy and high temperature over 1600°C can be provided by non-carbon metallurgy technology, electron also can be offered for hydrogen reduction and electrolysis. This technology also can be used to extract and smelt other metals as Ti, Cu, Ni, Al, Mg.
机译:为了解决冶金行业的高碳排放和高能耗,以及解决太阳能电池板的产能过剩问题,进行了非碳冶金的实验研究,该实验包括高温熔化,生产电解铁和制氢。电解。一套完整的非碳冶金系统应包括四个技术单元:发电,电力存储,控制模块和冶金单元。实验结果表明,非碳冶金技术可以提供足够的能量和1600°C以上的高温,还可以提供电子用于氢还原和电解。该技术还可用于提取和冶炼其他金属,例如Ti,Cu,Ni,Al,Mg。

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