微生物对污染废水中苯并(a)芘的吸附与降解研究
Biosorption and Degradation of Benzopyren Contaminated Wastewater by Microorganisms
DOI: 10.12677/WPT.2013.11002, PDF, HTML, 下载: 2,944  浏览: 9,928  科研立项经费支持
作者: 朱雨思, 臧淑艳*, 吴海璇, 张海龙, 何树波, 孔亮, 管晶:沈阳化工大学应用化学学院,沈阳
关键词: 吸附降解苯并(a)芘黑曲霉假单胞菌Biosorption; Degradation; Bap; Aspergillus niger; Pseudomonas
摘要: 以具有致癌、致畸和致突变作用的苯并(a)芘(BaP)为目标污染物,研究真菌黑曲霉和细菌假单胞对污染废水中BaP的吸附与降解。实验条件下,BaP的有效吸附浓度范围是c(BaP)<160 μg/mL,降解浓度范围是c(BaP)<80 μg/mL;对BaP有效吸附的温度范围是20℃~40℃,适合的降解温度是25℃~30℃;吸附平衡时间为60 min,降解平衡期为6 d。实验结果为难降解的持久有机污染物的快速回收与去除提供了理论依据。 The biosorption and degradation of benzopyren (BaP) which is related to toxicity, mutagenesis and carcinogenesis were investigated through the fungus Aspergillus niger and Pseudomonas sp. Under the experimental conditions, the optimal concentration range of BaP was<160 μg/mL by biosorption of these two microorganisms, and <80 μg/mL by degradation. The most suitable temperature range for biosorption of BaP was 20˚C-40˚C, and 25˚C-30˚C for degradation. The suitable time of BaP biosorption for above two microorganisms was 60 min, and 6 d for BaP degradation. The experimental results provided a theoretical basis for rapid recovery and removal of persistent organic pollutants.
文章引用:朱雨思, 臧淑艳, 吴海璇, 张海龙, 何树波, 孔亮, 管晶. 微生物对污染废水中苯并(a)芘的吸附与降解研究[J]. 水污染及处理, 2013, 1(1): 7-11. http://dx.doi.org/10.12677/WPT.2013.11002

参考文献

[1] Y.-P. Lei, Y. Shi. Adsorption of benzo(a)pyrene from waste water by organobentonite. Multipurpose Utilization of Mineral Re-sources, 2007, 6: 23-27.
[2] 金文娟, 程鹏, 胡志雄, 齐玉堂, 谢明, 张维农. 食用油烹饪过程中苯并(a)芘(BaP)含量的变化[J]. 武汉工业学院学报, 2012, (4): 9-13.
[3] 漆叶琼, 张佳涛, 潘向辉, 裴家伟. 张柏林乳杆菌吸附苯并(a)芘的特性[J]. 微生物学报, 2011, (7): 956-964.
[4] 信维平. 苯并芘的致癌性及快速检测[J]. 研究与实验, 2000, (2): 16-17.
[5] 蔡佳亮, 黄艺, 礼晓. 生物吸附剂对污染物吸附的细胞学机理[J]. 生态学志, 2008, 27(6): 1005-1011.
[6] R. A. Kanaly, R. Bartha, K. Watanabc, et al. Rapid mineralize- tion of benzo(a)pyrene by a microbial consortium growing on diesel fuel. Applied and Environmental Microbiology, 2000, 66(10): 4205-4211.
[7] A. R. Jeremy, J. J. Pedro and J. L. Alvarez. Benzo(a)pyrene degradation by Sphingomonas yanoikuyae JAR02. Environment Pollution, 2008, 151(3): 669-667.
[8] 张玉刚, 龙新宪, 陈雪梅. 微生物处理重金属废水的研究进展[J]. 环境科学与技术, 2008, 31: 58-63.
[9] 蔡佳亮, 黄艺, 郑维爽. 生物吸附剂对废水重金属污染物的吸附过程和影响因子研究进展[J]. 农业环境科学学报, 2008, 27: 1297-1305.