Preparation of nanometer ZnO with oxygen control byvacuum and behavior of impurity elements
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摘要: 以熱鍍鋅渣為原料,空氣為氧源,通過真空控氧法制得了純度大于99.98%的納米氧化鋅,探討了反應溫度和體系的真空度對產物形貌的影響,研究了原料中的主要雜質元素在不同氧化條件下的行為及其對產物品質的影響.結果表明:不同的反應溫度或體系的真空度對產物的形貌影響很大;當控制溫度和真空度在適當范圍時,產物大多為六方纖鋅礦結構的納米四針狀氧化鋅,針體細長,長徑比較大;雜質元素Fe和Pb在不同氧化條件下的不同行為對產物品質產生不同的影響;鐵進入產物主要是因為鋅的機械夾帶作用和Fe-Zn系正偏差效應,而鉛進入產品中是因為自身的蒸氣壓和Pb-Zn系正偏差效應.Abstract: Nanometer zinc oxide was prepared through oxygen control by vacuum using hot galvanizing dross as raw materials and air as an oxygen source,and the product purity is up to 99.98%.The influences of the reaction temperature and the vacuum degree of the reaction system on the morphologies of the product were investigated.The behavior of main impurity elements and their influence on the product quality were studied under different oxidation conditions.It is shown that the reaction temperature and the vacuum degree of the reaction system have great influence on the morphologies of the product.The product is mostly hexagonal wurtzite structure of nanometer tetrapod ZnO,the needles are slender,and the length-to-diameter ratio is large at suitable temperature and vacuum degree.The different behaviors of impurity Fe and Pb affect the product quality in different ways under different oxidation conditions.The joining of Fe into the product is mainly due to mechanical entrainment of zinc and the positive bias effect of Fe-Zn systems;however,Pb joins in the product because of its evaporation pressure and the positive bias effect of Pb-Zn systems.
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Key words:
- zinc oxide /
- nanoneedles /
- zinc dross /
- vacuum /
- impurity elements
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