首页> 外文期刊>Acta metallurgica Sinica >SYNTHESIS OF NANO-ZnO PARTICLES FOR ALUMINUM METALLURGY AS INERT ANODE MATERIAL
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SYNTHESIS OF NANO-ZnO PARTICLES FOR ALUMINUM METALLURGY AS INERT ANODE MATERIAL

机译:铝冶金用纳米ZnO颗粒作为惰性阳极材料的合成

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摘要

Nano-ZnO particle was produced by evaporating zinc powders in air at air flow-rate from 0.2 to 0.6m~3/h. Nano-ZnO particles was formed by the oxidation of the evaporated zinc vapor. X-ray diffraction shows the powders to be ZnO with lattice parameters of a=0.3249nm and c=0.5205nm. The particle size is dependent upon the transit time from the source to the collection area. The size of particles was ranged between 81 to 103nm. The average density resulted was 4.865g/cm~3. Normal ZnO and nano-ZnO were investigated to use them in aluminum metallurgy as an inert anode material. A certain amount of both oxides were molded subsequently inserted to the molten cryolite-aluminum oxide to investigate the corrosive behavior of both oxides. When the sintering temperature increased up to 1300 deg C, the weight loss ratio rose to 5.01 percent-7.33 percent and up to 7.67 percent-10.18 percent for nano-ZnO and normal ZnO, respectively. However, when the samples in the molten cryolite aluminum oxide were put for long time, the corrosive rate was found to be higher. It was found that the corrosive loss weight ratio of nano-ZnO anode was much lower than the normal one made from ordinary-ZnO providing that the nano-ZnO is more possible to be use inert anode material.
机译:纳米ZnO颗粒是通过将锌粉在空气中以0.2至0.6m〜3 / h的空气流量蒸发而制得的。通过蒸发的锌蒸气的氧化形成纳米ZnO颗粒。 X射线衍射显示粉末为ZnO,晶格参数为a = 0.3249nm和c = 0.5205nm。颗粒大小取决于从源到收集区域的传输时间。颗粒的尺寸在81至103nm之间。平均密度为4.865g / cm〜3。研究了普通的ZnO和纳米ZnO,将它们用于铝冶金中作为惰性阳极材料。随后将一定量的两种氧化物模制成型,然后将其插入熔融的冰晶石-氧化铝中,以研究两种氧化物的腐蚀行为。当烧结温度升高到1300℃时,纳米ZnO和普通ZnO的重量损失率分别上升到5.01%-7.33%和7.67%-10.18%。但是,长时间放置在熔融冰晶石氧化铝中的样品时,发现腐蚀速率更高。发现纳米ZnO阳极的腐蚀损失重量比远低于由普通ZnO制成的普通阳极,只要该纳米ZnO更可能用作惰性阳极材料即可。

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