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首页> 外文期刊>The Korean journal of chemical engineering >Application of Ni-doped ZnO rods for the degradation of an azo dye from aqueous solutions
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Application of Ni-doped ZnO rods for the degradation of an azo dye from aqueous solutions

机译:镍掺杂ZnO棒在水溶液中降解偶氮染料中的应用

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Ni-doped ZnO rods were applied as a photocatalyst for the degradation of an azo dye (Reactive Black 5). Effects of solution pH, catalyst dosage, initial RB5 concentration, H2O2 concentration, different purging gases, and type of organic compounds on the removal efficiency of RB5 were studied. Ni-doped ZnO rods were synthesized by co-precipitation method. Neutral pH was selected as an optimal pH condition due to a photo-corrosion of ZnO in acidic and basic conditions. Photocatalytic degradation efficiency of RB5 was increased as the catalyst dosage increased up to 1 g/L, while it was decreased by increasing initial RB5 concentration. Pseudo-first-order rate constant (k (obs) ) decreased from 0.122 to 0.0051 min(-1) and electrical energy per order (E (Eo) ) increased from 39.34 to 941.18 (kWh/m(3)) by increasing RB5 concentration from 5 to 100mg/L, respectively. Photocatalytic degradation efficiency of RB5 increased by increasing H2O2 concentration, but this trend was not observed above 10 mM. Photocatalytic degradation efficiency of RB5 increased in the presence of folic acid and citric acid while interference was observed in the presence of humic acid, EDTA, oxalic acid, and phenol. Photocatalytic activity was maintained even after five successive cycles.
机译:掺镍的ZnO棒用作光催化剂,用于降解偶氮染料(活性黑5)。研究了溶液pH,催化剂用量,RB5初始浓度,H2O2浓度,不同吹扫气体以及有机化合物类型对RB5去除效率的影响。采用共沉淀法合成了掺Ni的ZnO棒。由于在酸性和碱性条件下ZnO的光腐蚀,因此选择中性pH作为最佳pH条件。 RB5的光催化降解效率随催化剂用量增加至1 g / L而增加,而随着RB5初始浓度的增加而降低。伪一阶速率常数(k(obs))从0.122降低到0.0051 min(-1),每阶电能(E(Eo))从39.34增加到941.18(kWh / m(3))浓度分别为5至100mg / L。 RB5的光催化降解效率通过增加H2O2浓度而增加,但是在10 mM以上未观察到这种趋势。在叶酸和柠檬酸存在下,RB5的光催化降解效率提高,而在腐殖酸,EDTA,草酸和苯酚的存在下观察到干扰。即使在连续五个周期后仍保持光催化活性。

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