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环境科学  2007 

Effect and mechanism of removal of trace p-chloronitrobenzene in aqueous solution by ZnOOH/O3
ZnOOH/O3催化臭氧化体系去除水中痕量对氯硝基苯

Keywords: catalytic ozonation,p-chloronitrobenzene,zinc hydroxide,hydroxyl radical
催化臭氧化
,对氯硝基苯,羟基化锌,羟基自由基

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Abstract:

Zinc hydroxide prepared in laboratory was used as catalyst in catalytic ozonation of trace p-Chloronitrobenzene (pCNB) in water. The catalytic mechanism was deduced through the effect of radical inhibitor t-BuOH on the reaction. Furthermore, affecting factors of catalytic activity were investigated. Results show that zinc hydroxide has excellent property of catalytic ozonation. Compared to ozonation alone, the catalytic removal rate of pCNB dissolved in distilled water increases by 51.3 percents at reacting time of 20min. The catalysis, which is influenced by density of hydroxyl groups combined on the surface of hydroxide, follows a hydroxyl radical reaction pathway. The removal gets better with increasing dosage of catalyst. Zinc hydroxide was used for 3 times without obvious changes of pCNB removal rate. Bicarbonate in water and phosphate in buffer solution could greatly depress its catalytic activity. The optimal catalysis is achieved at solution pH=7.

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