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介体厌氧催化活性艳红K-2BP脱色及构效特性研究
引用本文:康丽,郭建博,廉静,王育华,杨景亮,郭延凯,李海波,王瑜瑜.介体厌氧催化活性艳红K-2BP脱色及构效特性研究[J].环境科学,2011,32(4):1060-1065.
作者姓名:康丽  郭建博  廉静  王育华  杨景亮  郭延凯  李海波  王瑜瑜
作者单位:1. 河北科技大学环境科学与工程学院,石家庄,050018
2. 石家庄铁道大学材料科学与工程学院,石家庄,050043
基金项目:国家自然科学基金项目(50978082);河北省高校重点学科建设项目
摘    要:研究了筛选出的4种结构相似的醌类氧化还原介体对活性艳红K-2BP厌氧脱色的促进作用,并分析了介体促进效果与其化学结构活性相关性. 在35℃中温厌氧条件下,采用间歇批量实验法,测定不同体系中介体催化活性艳红K-2BP脱色效果.结果表明,①结构相似的醌类氧化还原介体蒽醌(AQ)、1,5-二氯蒽醌(1,5-AQ)、1,8-二氯蒽醌(1,8-AQ)和1,4,5,8-四氯蒽醌(1,4,5,8-AQ),均促进活性艳红K-2BP脱色,反应速率提高了1.4~3倍;②当醌类介体投加浓度为4 mmol·L-1,活性艳红K-2BP染料浓度为300 mg·L-1时,促进作用由大到小的顺序为:1,8-AQ>1,5-AQ>AQ>1,4,5,8-AQ;③ 当活性艳红K-2BP染料浓度为300 mg·L-1时,1,8-AQ促进效果最佳且脱色速率常数随1,8-AQ浓度的增加而增加呈线性关系;④介体促进效果与介体取代基团数量、位置和电子共轭效应相关.本研究初步建立了氧化还原介体定性/定量构-效关系数学模型,探究和完善非水溶性氧化还原介体催化强化理论体系.

关 键 词:氧化还原介体  构效关系  活性艳红K-2BP  催化  脱色
收稿时间:7/3/2010 12:00:00 AM
修稿时间:2010/8/31 0:00:00

Catalyst Effect and the Structure-Activity Characteristics of Redox Mediators on the Reactive Brilliant Red K-2BP Decolorization
KANG Li,GUO Jian-bo,LIAN Jing,WANG Yu-hu,YANG Jing-liang,GUO Yan-kai,LI Hai-bo and WANG Yu-yu.Catalyst Effect and the Structure-Activity Characteristics of Redox Mediators on the Reactive Brilliant Red K-2BP Decolorization[J].Chinese Journal of Environmental Science,2011,32(4):1060-1065.
Authors:KANG Li  GUO Jian-bo  LIAN Jing  WANG Yu-hu  YANG Jing-liang  GUO Yan-kai  LI Hai-bo and WANG Yu-yu
Institution:School of Environmental Science and Engineering, Hebei University of Science and Technology, Shijiazhuang 050018, China. li.g1030@163.com
Abstract:Four selected quinone redox mediators with similar structure were conducted to accelerate reactive brilliant red K-2BP decolorization, and the accelerating structure-activity of redox mediators on the decolorization was also studied. Batch experiments were carried out to determine the catalyst effect on the decolorization of reactive brilliant red K-2BP with temperature of 35 degrees C and under anaerobic conditions. The experiment results suggested that (1) four similar chemical structure redox mediators 1, 4, 5, 8-Tetrachloroanthraquinone (1,4,5,8-AQ), Anthraquinone (AQ), 1,8-Dichloroanthraquinone (1,8-AQ), 1,5-Dichloroanthraquinone (1,5-AQ)], all accelerated the decolorization rate of reactive brilliant red K-2BP and the reaction rate was enhanced 1.4-3 times; (2) the accelerating order was 1,8-AQ >1 ,5-AQ > AQ >1,4,5,8-AQ at the quinone mediator concentration of 4 mmol x L(-1) and reactive brilliant red K-2BP concentration of 300 mg x L(-1); (3) under the reactive brilliant red K-2BP concentration of 300 mg x L(-1), 1,8-AQ had best accelerating effect, and the relationship between decoloring rate constants and 1,8-AQ concentration; (4) and the mediator acclerating effects also related to substituent positioning effects and conjugated effects. The structure-activity mathematical model of redox mediators was put forward, which could improve water-insoluble redox mediators catalytic strengthening theory system.
Keywords:redox mediator    structure-activity  reactive brilliant red K-2BP  catalysis  decolorization
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