Photodegradation Of Polycyclic Aromatic Hydrocarbon Pyrene By Iron Oxide In Solid Phase

文献类型: 外文期刊

第一作者: Wang, Y.

作者: Wang, Y.;Liu, C. S.;Li, F. B.;Liu, C. P.;Wang, Y.;Liang, J. B.

作者机构:

关键词: photodegradation;PAH;pyrene;iron oxide;solid phase

期刊名称:JOURNAL OF HAZARDOUS MATERIALS ( 影响因子:10.588; 五年影响因子:10.129 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: To better understand the photodegradation of polycyclic aromatic hydrocarbons (PAH) in solid phase in natural environment, laboratory experiments were conducted to study the influencing factors, kinetics and intermediate compound of pyrene photodegradation by iron oxides. The results showed that the pyrene photodegradation rate followed the order of α-FeOOH > α-Fe_2O_3 > γ-Fe_2O_3 > γ-FeOOH at the same reaction conditions. Lower dosage of α-FeOOH and higher light intensity increased the photodegradation rate of pyrene. Iron oxides and oxalic acid can set up a photo-Fenton-like system without additional H_2O_2 in solid phase to enhance the photodegradation of pyrene under UV irradiation. All reaction followed the first-order reaction kinetics. The half-life (t_(1/2)) of pyrene in the system showed the higher efficiencies of using iron oxide as photocatalyst to degrade pyrene. Intermediate compound pyreno was found during photodegradation reactions by gas chromatography-mass spectrometry (GC-MS). The photodegradation efficiency for PAHs in this photo-Fenton-like system was also confirmed by using the contaminated soil samples. This work provides some useful information to understand the remediation of PAHs contaminated soils by photochemical techniques under practical condition.

分类号: TB1

  • 相关文献

[1]Photodegradation of 2-mercaptobenzothiazole in the iron oxides/oxalic acid/UVA system. Liu, CS,Gao, YX,Li, FB,Lei, J,Zhang, G,Kuang, YQ. 2006

[2]The effect of iron oxides and oxalate on the photodegradation of 2-mercaptobenzothiazole. Liu, CS,Li, FB,Li, XM,Zhang, G,Kuang, YQ.

[3]Photodegradation of orange I in the heterogeneous iron oxide-oxalate complex system under UVA irradiation. Lei, Jing,Liu, Chengshuai,Li, Fangbai,Li, Xiaomin,Zhou, Shungui,Liu, Tongxu,Gu, Minghua,Wu, Qitang.

[4]Enhanced reductive dechlorination of DDT in an anaerobic system of dissimilatory iron-reducing bacteria and iron oxide. Li, F. B.,Li, X. M.,Zhou, S. G.,Zhuang, L.,Cao, F.,Huang, D. Y.,Xu, W.,Liu, T. X.,Li, X. M.,Cao, F.,Feng, C. H.,Li, X. M.,Cao, F..

[5]Characterization and application of a newly isolated pyrene-degrading bacterium, Pseudomonas monteilii. Ping, Lifeng,Yuan, Xiaoli,Shan, Shengdao,Ping, Lifeng,Zhang, Chunrong,Cui, He,Cui, Juntao. 2017

[6]Development of an indirect competitive ELISA for the detection of acenaphthene and pyrene. Qiao, Bin,Li, Yansong,Meng, Xingyu,Sun, Yu,Hu, Pan,Lu, Shiying,Ren, Honglin,Liu, Zengshan,Zhou, Yu,Meng, Xingyu,Sun, Yu,Zhou, Yu.

[7]Biodegradation of pyrene and benzo[a]pyrene in the liquid matrix and soil by a newly identified Raoultella planticola strain. Ping, Lifeng,Yuan, Xiaoli,Ping, Lifeng,Guo, Qian,Chen, Xiaoyang,Zhang, Chunrong,Zhao, Hua. 2017

[8]Isolation and characterization of pyrene and benzo[a]pyrene-degrading Klebsiella pneumonia PL1 and its potential use in bioremediation. Ping, Lifeng,Zhang, Chunrong,Zhang, Changpeng,Zhu, Yahong,He, Hongmei,Wu, Min,Tang, Tao,Li, Zhen,Zhao, Hua,Ping, Lifeng,Zhang, Chunrong,Zhang, Changpeng,Zhu, Yahong,He, Hongmei,Wu, Min,Tang, Tao,Li, Zhen. 2014

[9]Biodegrading of Pyrene by a Newly Isolated Pseudomonas putida PL2. Ping, Lifeng,Zhang, Chunrong,Zhu, Yahong,Wu, Min,Hu, Xiuqing,Li, Zhen,Zhao, Hua.

[10]Contrasting characteristics of anthracene and pyrene degradation by wood rot fungus Pycnoporus sanguineus H1. Zhang, Shimin,Ning, Yongxia,Zhang, Xiaolin,Wu, Kun,Zhao, Yong,Yang, Xitian,Li, Xuanzhen,Li, Xuanzhen,Yang, Suqin,Sun, Xiaoxue,La, Guixiao.

[11]Straw Degradation Behaviors under Different Conditions of Relative Air Humidity and Ultraviolet-A Irradiation. Li, Yunlong,Huang, Hongying,Wu, Guofeng,Chang, Zhizhou,Li, Yunlong. 2016

[12]Nitrate-induced Photodegradation of Colorants and the Corresponding Mechanisms Study. Hu, Wenna,Liu, Wei,Wu, Fan,Liu, Jian. 2018

[13]Dependence of bisphenol A photodegradation on the initial concentration of oxalate in the lepidocrocite-oxalate complex system. Dong Jun,Li Fang-bai,Lan Chong-yu,Liu Cheng-shuai,Li Xiao-min,Luan Tian-gang. 2006

[14]Photodegradation of methylmercury in the water body of the Three Gorges Reservoir. Sun, Rongguo,Wang, Dingyong,Mao, Wen,Zhao, Shibo,Zhang, Cheng,Zhang, Xiang,Sun, Rongguo,Wang, Dingyong,Zhang, Cheng. 2015

[15]Photodegradation of quinestrol in waters and the transformation products by UV irradiation. Tang, Tao,Qian, Kun,Shi, Tianyu,Wang, Fang,Li, Pingliang,Li, Jianqiang,Cao, Yongsong,Tang, Tao.

[16]The effect of erbium on the adsorption and photodegradation of orange I in aqueous Er3+-TiO2 suspension. Liang, Chun-Hua,Hou, Mei-Fang,Zhou, Shun-Gui,Li, Fang-Bai,Liu, Cheng-Shuai,Liu, Tong-Xu,Gao, Yuan-Xue,Wang, Xu-Gang,Lu, Ha-Long. 2006

[17]Mechanisms underlying degradation pathways of microcystin-LR with doped TiO2 photocatalysis. Hu, Xi,Hu, Xinjiang,Tang, Chunfang,Wen, Shizhi,Wu, Xiaofu,Long, Jian,Yang, Xiong,Wang, Hui,Zhou, Lu.

[18]Effect of iron oxides and carboxylic acids on photochemical degradation of bisphenol A. Li, Fang-bai,Chen, Jun-jian,Liu, Cheng-shuai,Dong, Jun,Liu, Tong-xu. 2006

[19]Photodegradation of emamectin benzoate and its influence on efficacy against the rice stem borer, Chilo suppressalis. Zhu, Jun,Gao, Mingxing,Zhou, Weijun,Hu, Jun,Shen, Jinliang,He, Yueping,Zhu, Yu Cheng. 2011

[20]Photodegradation of methylmercury in Jialing River of Chongqing, China. Sun, Rongguo,Wang, Dingyong,Mao, Wen,Zhao, Shibo,Zhang, Cheng,Sun, Rongguo,Wang, Dingyong,Zhang, Cheng.

作者其他论文 更多>>