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首页> 外文期刊>Journal of Hazardous Materials >Degradation of nitro-aromatic explosives using recyclable magnetic photocatalyst: Catalyst synthesis and process optimization
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Degradation of nitro-aromatic explosives using recyclable magnetic photocatalyst: Catalyst synthesis and process optimization

机译:使用可回收的磁性光催化剂降解硝基芳族炸药:催化剂合成和工艺优化

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In this research, degradation of P-Nitrophenol (PNP) as a model nitro-aromatic compound was carried out by photocatalytic process using magnetic Titania nano particles (MTNPs). The recyclable MTNPs were synthesized with average diameter of 22 nm and a narrow size distribution. The process was modeled and optimized by a second order reduced polynomial model. Based on the model prediction, the process can be degraded PNP up to 90% under the optimum conditions of the initial pH =4, [PNP]= 15 mg L-1, [MTNPs] = 85 mg L-1, and T = 25 degrees C. PNP mineralization was obtained 69%, at the optimum condition after 120 min of the process. The process kinetic was well fitted by pseudo first order kinetic model and electrical energy consumption of the process was obtained about 177.8 kWh/m(3). Furthermore, the effect of sodium sulfite, sodium sulfate and sodium nitrite on the photocatalytic degradation process was assessed. The results showed that sulfite or sulfate ions decrease and nitrite ions increase the process efficiency. Also, a sample of redwater as a nitro-aromatic effluent was treated. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项研究中,通过使用磁性二氧化钛纳米颗粒(MTNPs)进行光催化工艺降解了作为模型硝基芳香化合物的对硝基苯酚(PNP)。合成的可回收MTNP的平均直径为22 nm,尺寸分布较窄。通过二阶简化多项式模型对过程进行建模和优化。根据模型预测,在初始pH = 4,[PNP] = 15 mg L-1,[MTNPs] = 85 mg L-1和T =在该过程120分钟后的最佳条件下,获得25摄氏度的PNP矿化度为69%。通过拟一级动力学模型很好地拟合了过程动力学,并且该过程的电能消耗约为177.8 kWh / m(3)。此外,评估了亚硫酸钠,硫酸钠和亚硝酸钠对光催化降解过程的影响。结果表明,亚硫酸根离子或硫酸根离子减少,而亚硝酸根离子增加了处理效率。另外,处理了作为硝基芳族流出物的红水样品。 (C)2016 Elsevier B.V.保留所有权利。

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