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The Decomposition of Zinc Ferrite in Electric Arc Furnace Dust by Carbon

机译:碳电弧炉锌锌铁素体的分解

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The objective of this research is to study the mechanism of the decomposition of zinc ferrite to obtain crude zinc oxide (ZnO) and iron oxide by using carbon (activated carbon) powder as the reducing agent. Zinc ferrite could be mostly found in electric arc furnace dust (EAFD). Carbon with a purity of 99.99 percent by weight was ground to be fine powder with an average size of 75 microns. Then the mixer between zinc ferrite with carbon powder and EAFD with carbon at the ratio of 1:1, 1:2 and 1:3 by mole was carried out. The samples were treated in the range of temperatures at 600, 700 and 800 °C in TGA. The treated samples were analyzed by XRD in order to identify the phase transformation of zinc ferrite. It was found that the quantity of zinc ferrite, both either pure zinc ferrite and the zinc ferrite in EAFD were decreased after treating by carbon when using treating time at 120 minutes with the temperatures of 600, 700 and 800 °C, and ratio of zinc ferrite with carbon powder at 1:3 by mole. Moreover about 70% of zinc ferrite was decomposed to be zinc oxide (ZnO) and iron oxides.
机译:本研究的目的是研究锌铁氧体分解的机理通过使用碳(活性炭)粉末作为还原剂获得粗氧化锌(ZnO)和氧化铁。铁素体可以在电弧炉灰尘(EAFD)中找到。纯度为99.99%重量的碳是研磨的细粉,平均尺寸为75微米。然后进行含有碳粉锌与含碳的碳粉和EAFD之间的混合器,用摩尔的比例为1:1,1:2和1:3。将样品在TGA中600,700和800℃的温度范围内处理。通过XRD分析处理的样品,以鉴定锌铁素体的相变。发现在120分钟的处理时,在120分钟的温度下在120分钟的温度下使用碳处理锌铁素体的纯锌铁氧体和EAFD中的锌铁氧体的量减少,并且在600,700和800℃的温度下,以及锌的比例铁氧体含有碳粉,摩尔含有1:3。此外,约70%的锌铁素体被分解为氧化锌(ZnO)和氧化铁。

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