Photocatalytic Performance and Degradation Mechanism of Aspirin by TiO2 through Response Surface Methodology
Li, Lezhuo; Ma, Qiuling; Wang, Sanfan; Song, Sanxiang; Li, Bo; Guo, Ruonan; Cheng, Xiuwen; Cheng, Qingfeng
刊名CATALYSTS
2018-03
卷号8期号:3
ISSN号2073-4344
DOI10.3390/catal8030118
英文摘要In the present work, the photocatalytic performance of P25TiO(2) was investigated by means of the degradation of aspirin, while the reaction system was systematically optimized by central composite design (CCD) based on the response surface methodology (RSM). In addition, three variables of initial pH value, initial aspirin concentration and P25 concentration were selected to assess the dependence of degradation efficiencies of aspirin. Meanwhile, a predicted model of degradation efficiency was estimated and checked using analysis of variance (ANOVA). The results indicated that the PC removal of aspirin by P25 was significantly influenced by all these variables in descending order as follows: P25 concentration > initial aspirin concentration > initial pH value. Moreover, the parameters were optimized by the CCD method. Under the conditions of an initial pH value of 5, initial aspirin concentration of 10 mg/L and P25 concentration of 50 mg/L, the degradation efficiency of aspirin was 98.9% with 60 min of Xenon lamp irradiation. Besides, based on the liquid chromatography-mass spectrometry measurements, two main PC degradation pathways of aspirin by TiO2 were deduced and the tentative degradation mechanism was also proposed.
内容类型期刊论文
源URL[http://ir.isl.ac.cn/handle/363002/34434]  
专题青海盐湖研究所_盐湖资源综合利用工程技术中心
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GB/T 7714
Li, Lezhuo,Ma, Qiuling,Wang, Sanfan,et al. Photocatalytic Performance and Degradation Mechanism of Aspirin by TiO2 through Response Surface Methodology[J]. CATALYSTS,2018,8(3).
APA Li, Lezhuo.,Ma, Qiuling.,Wang, Sanfan.,Song, Sanxiang.,Li, Bo.,...&Cheng, Qingfeng.(2018).Photocatalytic Performance and Degradation Mechanism of Aspirin by TiO2 through Response Surface Methodology.CATALYSTS,8(3).
MLA Li, Lezhuo,et al."Photocatalytic Performance and Degradation Mechanism of Aspirin by TiO2 through Response Surface Methodology".CATALYSTS 8.3(2018).
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