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Microwave Enhanced Producing of High-Purity Metallic Manganese and Composite Manganese Based Alloys

机译:微波增强的高纯度金属锰和复合锰基合金生产

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Experimental research was carried out using representative samples of manganese processing waste disposed in Georgia to achieve secondary recovery of high-purity metallic manganese and form the waste. Manganese hydroxide obtained through microwave ammonium chloride processing of manganese containing sludge was used for obtaining manganese sulphate, electrolytic manganese and manganese based composite alloys. The experimental data showed that microwave utilization of manganese bearing waste can form the basis for the low-cost and environmentallyfriendly industrial production of high purity metallic manganese, which can be used for synthesis of manganese doped semiconductors. It can also be used for SHS producing of composite manganese based low-carbon and low phosphorous alloys. The developed methods can partially replace the standard technologies of ferroalloys industry, which uses reducing manganese oxides by carbon. This would significantly decrease the carbon monoxide and carbon dioxide emissions during production of ferromanganese and metallic manganese while reducing the emission of greenhouse gases and mitigating global warming.
机译:使用在格鲁吉亚的锰处理废物的代表性样本进行了实验研究,以实现高纯度金属锰的二次恢复并形成废物。通过微波氯化铵加工获得锰含锰的锰氢氧化物用于获得硫酸锰,电解锰和锰基复合合金。实验数据显示,锰轴承废物的微波利用可以为高纯度金属锰的低成本和环保工业生产的基础,可用于合成锰掺杂的半导体。它还可以用于基于复合锰的低碳和低磷合金的SHS生产。开发的方法可以部分取代铁合金工业的标准技术,该工业用碳减少锰氧化物。这将显着降低铁莫丹人和金属锰的生产过程中的一氧化碳和二氧化碳排放,同时减少温室气体的排放和减轻全球变暖。

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