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光催化与生物技术联用工艺处理油漆废气中试研究
Pilot-scale study of removal of paint waste gas by combined technique of photocatalysis with biotechnology

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陈江耀 1   张德林 1   李建军 2   聂信 1   李桂英 1   安太成 1 *   孙国萍 2   王新明 1  
文摘 光催化与生物技术联用工艺用于油漆生产、加工过程有机废气的现场处理,中试实验结果表明:油漆生产、加工过程现场的主要污染物是甲苯、乙苯、间/对二甲苯和邻二甲苯等苯系物,浓度在27~55 mg/m~3之间. 单独使用光催化和微生物技术现场处理这些苯系物,其去除效率都不很高. 虽然在中试开始阶段光催化对苯系物的平均去除效率达到了86.2%,在中试稳定期,光催化技术对苯系物的平均去除效率却只有67.6%,而生物滴滤床在成功挂膜之后对现场有机废气的平均去除效率也仅为67.5%. 但是将这两种工艺联合使用之后,在中试稳定期该组合工艺对苯系物的平均去除效率可以达到99.2%
其他语种文摘 Combined technique of photocatalysis with biotechnology was used for the on-site control of organic waste gas emitted from paint production and processing factory. The results showed that the main components of the waste gas were toluene, ethyl-benzene, m/p-xylene and o-xylene. The concentration of the waste gas was in the range of 27 ~ 55 mg/m~3. The removal efficiencies of these waste gases were relatively low and not satisfied if photocatalytical technology or biotechnology alone was applied to pilot-scale treatment of the emission gases. The average removal efficiencies of VOCs for photocatalysis and biotechnology were only 67. 6% and 67. 5% respectively at the steady stage, although the average removal efficiency of VOCs on photocatalysis was about 86. 2% at the initial stage. However, the average removal efficiency was 99. 2% when two single technologies of photocatalysis and biotechnology were combined together
来源 环境工程学报 ,2010,4(6):1389-1393 【核心库】
关键词 光催化 ; 生物技术 ; 联用技术 ; 油漆废气 ; 中试研究
地址

1. 中国科学院广州地球化学研究所, 有机地球化学国家重点实验室;;广东省环境资源利用与保护重点实验室, 广州, 510640  

2. 广东省微生物研究所, 广东省菌种保藏与应用重点实验室, 广州, 510070

语种 中文
ISSN 1673-9108
学科 行业污染、废物处理与综合利用
基金 佛山市产学研项目 ;  广东省"十一五"重大专项 ;  广东省科技攻关重大项目
文献收藏号 CSCD:3932965

参考文献 共 12 共1页

1.  Noel de Nevers. Air Pollution Control Engineering (Second Edition),2000:329-330 被引 2    
2.  段晓东. 光催化氧化法降解废气中苯系物的研究. 化工环保,2003,23(5):253-256 被引 4    
3.  Zhao M. L. Photocatalytic degradation of gaseous trichloroethene using immobilized ZnO-SnO_2 coupled oxide in a flow-through photocatalytic reactor. Journal of Chemical Technology and Biotechnology,2005,80(3):251-258 被引 1    
4.  孙佩石. 生物降解工业废气中甲苯的研究. 环境科学动态,1996(3):13-16 被引 3    
5.  Tsoukleris D. S. Photocat- alytic degradation of volatile organics on TiO_2 embedded glass spherules. Catalysis Today,2007,129(1/2):96-101 被引 8    
6.  Ottengraf S. P. P. Kinetics of organic compound removal from waste gases with a biological filter. Biotechnology and Bioengineering,1983,25(12):3089-3102 被引 43    
7.  Sempere F. Performance evaluation of a bootlicking filter treating a mixture of oxygenated VOCs during intermittent loading. Chemosphere,2008,73(9):1533-1539 被引 12    
8.  Lu C. S. Removal of EATX from waste gases by a trickle bed air biofilter. Journal of Environment Engineering,2001,127(10):946-951 被引 2    
9.  Mathur A K. Biofiltration and kinetic aspects of a biotrickling filter for the removal of paint solvent mixture laden air stream. Journal of Hazardous Materials,2008,152(3):1027-1036 被引 24    
10.  Boswell J. E. A. Biofiltration of VOCs from Paint Manufacturing,2001 被引 1    
11.  武江波. 紫外光照射下甲苯光化学降解的初步研究. 地球化学,2007,36(3):328-334 被引 11    
12.  Li G. Y. Comparative study of the elimination of toluene vapors in twin biotrickling filters using two microorganisms Bacillus cereus S1 and S2. Journal of Chemical Technology and Biotechnology,2008,83(7):1019-1026 被引 3    
引证文献 7

1 周大顺 三苯类废气处理进展 化工环保,2011,31(2):134-139
被引 8

2 柯国洲 生物-光催化联用工艺在污泥臭气处理中的工程应用 环境工程,2016,34(11):72-75
被引 1

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