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GO 负载对 FeO 的影响:一种可见光辅助的卡马西平降解催化剂材料。

Effect of rGO loading on FeO: A visible light assisted catalyst material for carbamazepine degradation.

机构信息

Department of Environmental Engineering, Kyungpook National University, 80 Daehak-ro, Buk-gu, Daegu 41566, Republic of Korea.

Radioactive Waste Disposal R&D Department, Korea Radioactive Waste Agency, 174 Gajeong-ro, Yuseong-gu, Daejeon 34129, Republic of Korea.

出版信息

Sci Total Environ. 2019 Jun 1;667:741-750. doi: 10.1016/j.scitotenv.2019.02.376. Epub 2019 Feb 27.

DOI:10.1016/j.scitotenv.2019.02.376
PMID:30851607
Abstract

Carbamazepine (CBZ), an anticonvulsant drug, is one of the most recalcitrant pharmaceuticals detected in wastewater. For the photocatalytic degradation of CBZ, visible light assisted heterogeneous Fenton-like hybrid composites were synthesized via a co-precipitation method by anchoring magnetite (FeO) with reduced graphene oxide (rGO). The rGO loading not only reduced the aggregation of FeO nanoparticles, but also increased the adsorption capacity of the hybrid composites. The mass ratio of rGO in the composites substantially affected CBZ photocatalytic degradation and a 10 wt% rGO loading (rGF10) provided nearly complete CBZ degradation within 3 h. Moreover, the addition of rGO reduced the charge recombination of the bare FeO nanoparticles and provided more accessible reactive sites, enhancing the degradation capacity. The visible light excited FeO nanoparticles yielded reactive species such as hydroxyl radicals (·OH), holes (h), and superoxide radicals (O·) during the photodegradation process that were evaluated by using specific scavengers during the degradation experiment. The hybrid catalyst was effective under wide pH ranges (from 3 to 9) and showed faster degradation rates in the acidic condition. The composites were magnetically separable, easily regenerated, and exhibited considerably high photocatalytic activity up to five cycles.

摘要

卡马西平 (CBZ) 是一种抗惊厥药物,是废水中最难处理的药物之一。为了实现 CBZ 的光催化降解,通过共沉淀法将磁铁矿 (FeO) 锚定在还原氧化石墨烯 (rGO) 上,合成了可见光辅助的非均相类芬顿杂化复合材料。rGO 的负载不仅减少了 FeO 纳米粒子的聚集,而且提高了复合材料的吸附能力。复合材料中 rGO 的质量比极大地影响了 CBZ 的光催化降解,10wt%rGO 负载 (rGF10) 在 3h 内几乎完全降解了 CBZ。此外,rGO 的添加减少了裸露的 FeO 纳米粒子的电荷复合,并提供了更多的可及反应位点,从而提高了降解能力。在光降解过程中,可见光激发的 FeO 纳米粒子产生了活性物质,如羟基自由基 (·OH)、空穴 (h) 和超氧自由基 (O·),在降解实验中使用特定的清除剂对其进行了评估。该杂化催化剂在较宽的 pH 范围 (从 3 到 9) 下有效,并在酸性条件下表现出更快的降解速率。该复合材料具有磁性分离性,易于再生,并表现出高达五个循环的高催化活性。

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