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纳米氧化锌(ZnO)催化超声波降解酸性红B的研究

Degradation of Acid Red B in the Presence of Nanon-Sized ZnO Powder under Ultrasonic Irradiation

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【作者】 姜玉春田朋姜喆韩正学曹春英徐锐邢志强

【Author】 JIANG Yu-chun1,TIAN Peng2,JIANG Zhe1,HAN Zheng-xue3,CAO Chun-ying4,XU Rui1,XING Zhi-qiang1(1.Department of Chemistry,Liaoning University,Shenyang 110036,China; 2.Navy Quantering at Shengyang Region Representative Office of Aviation Militany Affaivs,Shenyang 110034,China;3.Shenyang Chemical Industry Company,Shenyang 110026,China;4.Shenyang Broadcast Television University,Shenyang 110003,China)

【机构】 辽宁大学化学院海军驻沈阳地区航空军事代表室沈阳化工股份有限公司沈阳广播电视大学化学系辽宁大学化学院 辽宁沈阳110036辽宁沈阳110034辽宁沈阳110036辽宁沈阳110026辽宁沈阳110003

【摘要】 采用高温活化处理过的纳米氧化锌(ZnO)粉末为催化剂,研究了超声照射对酸性红B的降解.另外,还考查了超声照射时间,酸性红B初始浓度和纳米ZnO的添加量对酸性红B降解反应的影响.结果表明:在纳米ZnO作用下,酸性红B的超声降解效果明显优于单纯超声波照射降解.降解动力学符合一级反应.在超声波频率40 kHz,输出功率50 W,催化剂用量1.0 g/L,pH为7.0,温度25℃,酸性红B水溶液初始浓度10 mg/L的条件下,照射120 min左右时降解率即可达到86%以上.

【Abstract】 Some factors such as ultrasonic irradiation time,initial concentration of acid red B and addition amount of ZnO on ultrasonic degradation of Acid Red B was studied with nanometer ZnO catalyst activated at high-temperature.The results indicated that the effects of sonocatalytic degradation were more obvious in the presence of nanometer ZnO.The ultrasonic degradation kinetics of Acid Red B in the presence of nanometer ZnO catalyst follows first-order reaction.The degradation ratio of Acid Red B surpassed 86% within 120 min under conditions of ultrasonic frequency of 40 kHz,power input of 50 W,amount of catalyst of 1.0 g/L,pH=7,temperature of 25 ℃ and Acid Red B concentration of 10 mg/L.

【基金】 国家自然科学基金资助项目(20371023)
  • 【文献出处】 沈阳师范大学学报(自然科学版) ,Journal of Shenyang Normal University(Natural Science Edition) , 编辑部邮箱 ,2008年02期
  • 【分类号】X791
  • 【被引频次】3
  • 【下载频次】246
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