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Study on the photocatalytic degradation of diesel pollutants in seawater by a prepared nano Ag-droped Zinc Oxide

机译:用制备的纳米滴氧化锌柴油碳水柴油污染物光催化降解研究

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ZnO and Ag-droped ZnO photocatalysts with different Ag loadings (0.5, 1.0, 1.5, 2.0at%) and different calcination temperature (300, 400, 500, 600, 700°C) were synthesized by a sonochemical method. The morphology and crystal pattern of some prepared catalysts were characterized by XRD and SEM techniques which demonstrated that the prepared catalysts were of hexagonal wurtzite structure. Ag loadings, calcination temperature and other factors, dosage of photocatalyst, reaction time and pH value of seawater, were also taken into consideration in the procedure of photocatalytic degradation reaction under UV light. An orthogonal experiment was carried out to investigate the best combination of factors which can reach the best diesel pollution removal rate and the influence order of factors. Reaction time and dosage of catalyst were the most influential factors in this experiment, and the factor of calcination temperature was the weakest influential factor. The removal rate of diesel can up to 78% when the experiment was undertaken under the very conditions: the dosage of catalyst 2.0g/L, reaction time 2.0h, Ag loading of catalyst 1.0 at%, calcinations temperature 400°C and pH value 8.5.
机译:的ZnO和Ag-DROP掉的ZnO光催化剂具有不同的Ag负载量(0.5,1.0,1.5,2.0原子%)和不同的煅烧温度(300,400,500,600,700℃)通过声化学方法合成的。一些制备的催化剂的形态和晶体图案是由这表明所制备的催化剂是六方纤锌矿结构的X射线衍射和SEM技术表征。的Ag负载量,焙烧温度和其它因素,光催化剂,反应时间和海水的pH值剂量,也考虑到在UV光下的光催化分解反应的方法。正交试验进行了调查的因素可以达到最好的柴油污染去除率和因素的影响秩序的最佳组合。反应时间和催化剂用量是在这个实验中最有影响力的因素,和焙烧温度的因素是最弱的影响因素。柴油的去除率可以高达当实验的非常条件下进行78%:催化剂2.0克/ L,反应时间为2.0h,在%的催化剂1.0的Ag负载量,焙烧温度400℃和pH值的剂量8.5。

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