首页> 外文期刊>International journal of hydrogen energy >The fabrication of magnetic recyclable nitrogen modified titanium dioxide/strontium ferrite/ diatomite heterojunction nanocomposite for enhanced visible-light-driven photodegradation of tetracycline
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The fabrication of magnetic recyclable nitrogen modified titanium dioxide/strontium ferrite/ diatomite heterojunction nanocomposite for enhanced visible-light-driven photodegradation of tetracycline

机译:磁性可回收氮改性的二氧化钛/锶铁氧体/硅藻土异质结纳米复合材料的制备,用于增强可见光驱动的四环素光降解

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Powdery photocatalyst has long been studied in various aspects, yet its low recovery in suspension system is still the bottleneck which hinders its practical application. An alternative method to overcome this shortcoming is to develop magnetic recyclable ferrite-based hybrid photocatalyst. In this work, we prepared nitrogen modified titania/strontium ferrite/diatomite (N-TSD) ternary hybrid via sol-gel method. The physicochemical properties of various hybrid catalysts were characterized and studied, and their photocatalytic properties were evaluated via the degradation of antibiotic tetracycline (TC) under visible light. The formation of heterojunction between N modified TiO2 and strontium ferrite hindered the recombination of photo-induced charge carriers and improved the photocatalytic activity. The photodegradation rate of TC was accelerated by the high adsorption ability of diatomite, due to the adsorption and degradation synergistic effect between catalysts and substrate diatomite. Based on the degradation results, the optimal N dopant amount, as well as optimal catalyst dosage was determined. The ternary N-TSD composite could simply be recovered from TC solution via an external magnet, and the repetition tests indicated no obvious decrease of photoactivity, even after 5 turns. This nanocomposite was considered appropriate to be applied in wastewater remediation process, thanks to its high photocatalytic efficiency under visible light irradiation, as well as its good reusability and stability. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:粉末状光催化剂已经在各个方面进行了长期的研究,但是其在悬浮体系中的低回收率仍然是阻碍其实际应用的瓶颈。解决此缺点的另一种方法是开发磁性可循环使用的铁氧体基杂化光催化剂。在这项工作中,我们通过溶胶-凝胶法制备了氮改性的二氧化钛/锶铁氧体/硅藻土(N-TSD)三元杂化物。对各种杂化催化剂的理化性质进行了表征和研究,并通过在可见光下降解四环素(TC)来评价其光催化性能。 N修饰的TiO2与锶铁氧体之间异质结的形成阻碍了光诱导载流子的复合并提高了光催化活性。硅藻土的高吸附能力促进了TC的光降解速率,这归因于催化剂与基质硅藻土之间的吸附和降解协同作用。根据降解结果,确定最佳的N掺杂量以及最佳的催化剂用量。三元N-TSD复合物可以简单地通过外部磁体从TC溶液中回收,并且重复测试表明,即使经过5圈,光活性也没有明显降低。由于该纳米复合材料在可见光照射下具有较高的光催化效率以及良好的可重复使用性和稳定性,因此被认为适合用于废水修复过程。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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