首页> 外文会议>TMS(The Minerals, Metals amp; Materials Society) Annual Meeting and Symposium on Magnesium Technology; 20040314-20040318; Charlotte,NC; US >A COMPARISON OF THE GREENHOUSE IMPACTS OF MAGNESIUM PRODUCED BY ELECTROLYTIC AND PIDGEON PROCESSES
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A COMPARISON OF THE GREENHOUSE IMPACTS OF MAGNESIUM PRODUCED BY ELECTROLYTIC AND PIDGEON PROCESSES

机译:电解法和Piggeon法产生的温室气体对镁的影响比较

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摘要

With a focus on the global warming impact, this paper deals with the cradle-to-gate life cycle study of the following two practical production systems for producing magnesium ingots: (ⅰ) Magnesite ore is processed using the Australian Magnesium process to produce anhydrous magnesium chloride, which is then electrolysed to produce magnesium; and (ⅱ) Dolomite ore is calcined to produce magnesium oxide, which is then thermally reduced with ferrosilicon using the Pidgeon process, based on the current practice used in China for magnesium production The global warming impact of the ingots produced by the Australian Magnesium process is ~ 24.3 kg CO2-eq/kg of Mg ingot, assuming to HFC-134a is used as the blanketing gas, and electricity and steam are co-generated using Australian black coal. The impact of the magnesium ingots produced in China using the Pidgeon process is ~ 42 kg CO2-eq/kg Mg ingot. This value is based on the current usage of sulphur powder for blanketing molten magnesium while casting. The values of GHG impact for the two systems are discussed in light of energy consumption and process contributions.
机译:本文着眼于全球变暖的影响,研究了以下两种生产镁锭的实际生产系统的从摇篮到大门的生命周期研究:(ⅰ)菱镁矿矿石使用澳大利亚镁工艺进行加工以生产无水镁氯化物,然后电解产生镁; (ⅱ)根据中国目前的镁生产实践,将白云石矿石煅烧以生产氧化镁,然后使用Pidgeon工艺将其与硅铁热还原。澳大利亚镁工艺生产的铸锭对全球变暖的影响是假设以HFC-134a为覆盖气体,每千克镁锭的CO2当量为24.3千克CO2当量/千克,而澳大利亚的黑煤则可同时产生电和蒸汽。在中国使用Pidgeon工艺生产的镁锭的影响约为42 kg CO2-eq / kg Mg锭。该值基于硫粉在铸造时覆盖熔融镁的当前用量。根据能耗和过程贡献,讨论了这两个系统的温室气体影响值。

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