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首页> 外文期刊>Separation and Purification Technology >Construction of coated Z-scheme Er3+:Y3Al5O12/Pd-CdS@BaTiO3 sonocatalyst composite for intensifying degradation of chlortetracycline hydrochloride in aqueous solution
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Construction of coated Z-scheme Er3+:Y3Al5O12/Pd-CdS@BaTiO3 sonocatalyst composite for intensifying degradation of chlortetracycline hydrochloride in aqueous solution

机译:涂层Z-Scheme ER3 +:Y3Al5O12 / PD-CDS @ BATIO3 SONOCATALYST复合材料,用于加强水溶液中盐酸氯化碳烃的降解

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A novel Er3+:Y3Al5O12/Pd-CdS@BaTiO3 composite is successfully fabricated as a coated Z-scheme sonocatalyst. The performance of the prepared Er3+:Y3Al5O12/Pd-CdS@BaTiO3 composite is investigated through chlortetracycline hydrochloride (CTC) degradation. The degradation ratio of CTC can reach 84.02% in the US/Er3+:Y3Al5O12/Pd-CdS@BaTiO3 system for 150 min. Moreover, some affecting factors such as ultrasonic irradiation time, catalyst dosage, initial CTC concentration and used times are considered. The experimental results indicated that the coated Z-scheme Er3+:Y3Al5O12/Pd-CdS@BaTiO3 sonocatalyst displayed outstanding sonocatalytic performance for the removal of CTC in aqueous media under ultrasonic irradiation. In Er3+:Y3Al5O12/Pd-CdS@BaTiO3 composite, CdS and BaTiO3 form a coated Z-scheme sonocatalytic system, some palladium (Pd) nanorods connecting BaTiO3 and CdS as conducive channels promote electrons transfer, effectively suppressing the recombination of electrons and holes pairs. Other some Pd nanorods as co-catalyst can transfer the electrons to its surface. The transferred electrons react with O-2, producing center dot O-2(-). And the BaTiO3 provides a large oxidization surface, which is conducive to CTC degradation. Besides, the up-conversion luminescent material (Er3+:Y3Al5O12) can increase the utilization of light. Finally, a possible sonocatalytic CTC degradation mechanism in the US/Er3+:Y3Al5O12/Pd-CdS@BaTiO3 system is proposed. Perhaps, the coated Er3+:Y3Al5O12/Pd-CdS@BaTiO3 composite is an applicable Z-scheme sonocatalyst to effectively treat the wastewater containing tetracycline under ultrasonic irradiation.
机译:新型ER3 +:Y3Al5O12 / PD-CDS @ BATIO3复合材料成功制成涂层Z-Scheme Sonocatalyst。通过氯化碳环(CTC)降解研究制备的ER3 +:Y3AL5O12 / PD-CDS @ BATIO3复合物的性能。 CTC的降解率可以在US / ER3 +:Y3AL5O12 / PD-CDS @ BATIO3系统中达到84.02%,持续150分钟。此外,考虑了一些影响诸如超声辐射时间,催化剂剂量,初始CTC浓度和使用时间的影响的一些影响因素。实验结果表明,涂​​布的Z-SchemeSER3 +:Y3Al5O12 / PD-CDS @ BATIO3 Sonocatalyst显示出在超声波照射下除去水性介质中CTC的优异的单催化性能。在ER3 +:Y3AL5O12 / PD-CDS @ BATIO3复合材料,CDS和BATIO3形成涂层Z方案SONOCATALYTIC系统,一些钯(PD)纳米棒连接BATIO3和CDS作为有用通道促进电子传递,有效地抑制电子和孔对的重组。作为助催化剂的其他一些Pd纳米棒可以将电子转移到其表面。转移的电子与O-2反应,产生中心点O-2( - )。 BATIO3提供了一种大的氧化表面,其有利于CTC降解。此外,上转换发光材料(ER3 +:Y3AL5O12)可以增加光的利用。最后,提出了US / ER3 +:Y3AL5O12 / PD-CDS @ BATIO3系统中的一种可能的同胞催化CTC降解机制。或许,涂覆的ER3 +:Y3AL5O12 / PD-CDS / PD-CDS / PATIO3复合材料是一种适用的Z-Scheme Sonocatalyst,以在超声辐射下有效地处理含有四环素的废水。

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