Mosleh Soleiman, Rahimi Mahmood Reza, Ghaedi Mehrorang, Dashtian Kheibar, Hajati Shaaker
Process Intensification Laboratory Chemical Engineering Department, Yasouj University, Yasouj 75918-74831, Iran.
Process Intensification Laboratory Chemical Engineering Department, Yasouj University, Yasouj 75918-74831, Iran.
Ultrason Sonochem. 2018 Jan;40(Pt A):601-610. doi: 10.1016/j.ultsonch.2017.08.007. Epub 2017 Aug 9.
CuO/CuO/Cu nanoparticles were prepared by sonochemical combined thermal synthesis method and used as new photocatalyst for simultaneous photocatalytic degradation of safranin O (SO) and methylene blue (MB) dyes in rotating packed bed reactor equipped to blue light emitting diode (LED). The physicochemical properties of the synthesized CuO/CuO/Cu nanoparticles were investigated by XRD, SEM and DRS analysis. The band-gap of the prepared CuO/CuO/Cu-NPs was estimated to be about 1.42eV which is appropriate for photodegradation process under blue light irradiation. In rotating packed bed reactors, two key parameters are very important, one high centrifugal field and other porous media, which intensify mass transfer operation leads to photodegradation improvement. The maximum photodegradation efficiency was obtained at pH of 6 and subsequently the effects of CuO/CuO/Cu-NPs dosage, rotational speed, initial dyes concentration, flow rate and reaction time were studied by central composite design (CCD) and optimized values were found to be 0.3g/L, 900rpm, 10mg/L of both dyes, 0.3L/min and 90min, respectively. Finally, results showed that synergistic effects induced by forming CuO/CuO heterojunction containing Cu-NPs co-cocatalyst greatly accelerate electron transfer and effectively retard the reduction of CuO by photo-generated electrons.
采用超声化学联合热合成法制备了CuO/CuO/Cu纳米颗粒,并将其用作新型光催化剂,在配备蓝光发光二极管(LED)的旋转填充床反应器中同时光催化降解番红O(SO)和亚甲基蓝(MB)染料。通过XRD、SEM和DRS分析对合成的CuO/CuO/Cu纳米颗粒的物理化学性质进行了研究。所制备的CuO/CuO/Cu-NPs的带隙估计约为1.42eV,这适合在蓝光照射下进行光降解过程。在旋转填充床反应器中,两个关键参数非常重要,一个是高离心场,另一个是多孔介质,它们强化传质操作从而导致光降解性能提高。在pH为6时获得了最大光降解效率,随后通过中心复合设计(CCD)研究了CuO/CuO/Cu-NPs用量、转速、初始染料浓度、流速和反应时间的影响,发现优化值分别为0.3g/L、900rpm、两种染料均为10mg/L、0.3L/min和90min。最后,结果表明,由含Cu-NPs助催化剂的CuO/CuO异质结形成所诱导的协同效应极大地加速了电子转移,并有效地阻碍了光生电子对CuO的还原。