[1] Linch A L. Biological monitoring for industrial exposure to cyanogenic aromatic nitro and amino compounds[J].American Industrial Hy-giene Association Journal,1974,35:426-432.
[2] 王玲玲,朱叙超,李明. 河南境内黄河流域集中式城市饮用水源水有机污染特性研究[J].环境污染与防治,2004,26(2):104-106.
[3] 李杏茹,何孟常,孙艳,等. 硝基苯类化合物在黄河小浪底至高村河段水体中的分布特征[J].环境科学,2006,27(3):513-518.
[4] 田怀军,舒为群,张学奎,等. 长江、嘉陵江(重庆段)源水有机污染物的研究[J].长江流域资源与环境,2003,12(12):118-123.
[5] 沈吉敏,朱佳裔,陈忠林,等. Fe0/H2O2 类Fenton体系降解水中对氯硝基苯[J].哈尔滨工业大学学报,2012,43(12):86-90.
[6] 乐晨,吴锦华,李平,等. 钙镁离子及重碳酸盐对零价铁还原对氯硝基苯的影响[J].环境工程学报,2011,5(10):2177-2180.
[7] Le Chen,Liang Junqian,Wu Jinhua,et al. Effective degradation of para-chloronitrobenzene through a sequential treatment using zero-valent iron reduction and Fenton oxidation[J].Water Science & Technology,2011,64(10):2126-2131.
[8] Li Bingzhi,Zhu Jiang. Removal of p-chloronitrobenzene from ground-water:effectiveness and degradation mechanism of a heterogeneous nanoparticulate zero-valent iron(NZVI)-induced Fenton process[J].Chemical Engineering Journal,2014,255:225-232.
[9] 朱佳裔,沈吉敏,陈忠林,等. Fe0/H2O2 体系去除水中对氯硝基苯[J].化工学报,2012,63(3):272-278.
[10] Shen Jimin,Zhu Jiayi,Kong Yanli,et al. Synthesized heterogeneous Fenton-like goethite (FeOOH) catalyst for degradation of p-chloro-nitrobenzene[J].Water Science & Technology,2013,68(7):1614- 1621.
[11] Wu Jiangning,Rudy K,Spark J. Oxidation of aqueous phenol by ozone and peroxidase[J].Advances in Environmental Research, 2000,4(4):339-346.
[12] Shen Jimin,Chen Zhonglin,Li Xueyan,et al. Kinetics and mechanim of degradation of p-chloronitrobenzene in water by ozonation[J].Journal of Hazardous Materials,2008,152(3):1325-1331.
[13] 陈忠林,沈吉敏,李学艳,等. 臭氧化去除水中对硝基氯苯动力学及机理[J].化工学报,2006,57(10):2439-2444.
[14] 徐腾娇,陈忠林,沈吉敏,等. 臭氧氧化降解水中对硝基氯苯的效能与机制[J].水处理技术,2007,33(1):27-30.
[15] Guittonneau S,De Laat J,Duguet J P,et al. Oxidation of parachloro-nitrobenzene in dilute aqueous solution by O3+UV and H2O2+UV:a comparative study[J].Ozone Science and Enginnering,1990(12):73-94.
[16] 沈吉敏,陈忠林,李学艳,等. O3/H2O2去除水中硝基苯效果与机 理[J].环境科学,2006,27(9):1791-1797.
[17] Xu Zhenzhen,Chen Zhonglin,Joll C,et al. Catalytic efficiency and stability of cobalt hydroxide for decomposition of ozone and p-chlo-ronitrobenzene in water[J].Catalysis Communications,2009,10 (8):1221-1225.
[18] Liu Yue,Shen Jimin,Chen Zhonglin,et al. Effects of amorphous-zinc-silicate-catalyzed ozonation on the degradation of p-chloroni-trobenzene in drinking water[J].Applied Catalysis A:General, 2011,403(1/2):112-118.
[19] Liu Yue,Shen Jimin,Chen Zhonglin,et al. Catalytic activity of alu-minum silicate for ozonation of chloronitrobenzenes in aqueous solution[J].Water Science & Technology:Water Supply,2013,13(6):1437-1443.
[20] Yuan Lei,Shen Jimin,Chen Zhonglin,et al. Pumice-catalyzed ozona-tion degradation of p-chloronitrobenzene in aqueous solution[J].Applied Catalysis B:Environmental,2012,117-118:414-419.
[21] Yuan Lei,Shen Jimin,Chen Zhonglin. Catalytic ozonation of p-ch-loronitrobenzene over pumice-supported zinc oxyhydroxide[J].Water Science & Technology,2013,68(8):1895-1900.
[22] 黄智,张爱茜,韩朔睽,等. Cu2O光催化氧化降解对氯硝基苯[J].环境化学,2003,22(2):150-153.
[23] Zhang Tianyong,You Lanying,Zhang Yonglan. Photocatalytic re-duction of p-chloronitrobenzene on illuminated nano-titanium dio- dioxide particles[J].Dyes and Pigments,2006,68(2/3):95-100.
[24] 叶苗苗,陈忠林,沈吉敏,等. TiO2/UV/O2 和TiO2/UV/N2体系降解 水中对氯硝基苯[J].感光科学与光化学,2007,25(4):296-305.
[25] Ye Miaomiao,Chen Zhonglin,Wang Wenshou,et al. Hydrothermal synthesis of TiO2 hollow microspheres for the photocatalytic degra-dation of 4-chloronitrobenzene[J].Journal of Hazardous Materials, 2010,184(1/2/3):612-619.
[26] Liu Yongjun. Aqueous p-chloronitrobenzene decomposition indu-ced by contact glow discharge electrolysis[J]. Journal of Hazardous Materials,2009,166(2/3):1495-1499. |