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Enhanced biodegradation of chlorobenzene via combined Fe^(3+) and Zn^(2+) based on rhamnolipid solubilisation 被引量:2

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摘要 Biotrickling filters(BTFs) for hydrophobic chlorobenzene(CB) purification are limited by mass transfer and biodegradation. The CB mass transfer rate could be improved by 150 mg/L rhamnolipids. This study evaluated the combined use of Fe^(3+) and Zn^(2+) to enhance biodegradation in a BTF over 35 day. The effects of these trace elements were analysed under different inlet concentrations(250, 600, 900, and 1200 mg/L) and empty bed residence times(EBRTs;60, 45, and 32 sec). Batch experiments showed that the promoting effects of Fe^(3+)/Zn^(2+) on microbial growth and metabolism were highest for 3 mg/L Fe^(3+) and 2 mg/L Zn^(2+), followed by 2 mg/L Zn^(2+), and lowest at 3 mg/L Fe^(3+). Compared to BTF in the absence of Fe^(3+) and Zn^(2+), the average CB elimination capacity and removal efficiency in the presence of Fe^(3+) and Zn^(2+) increased from 61.54 to 65.79 g/(m 3 hr) and from 80.93% to 89.37%, respectively, at an EBRT of 60 sec. The average removal efficiency at EBRTs of 60, 45, and 32 sec increased by 2.89%, 5.63%, and 11.61%, respectively. The chemical composition(proteins(PN), polysaccharides(PS)) and functional groups of the biofilm were analysed at 60, 81, and 95 day. Fe^(3+) and Zn^(2+) significantly enhanced PN and PS secretion, which may have promoted CB adsorption and biodegradation. High-throughput sequencing revealed the promoting effect of Fe^(3+) and Zn^(2+) on bacterial populations. The combination of Fe^(3+) and Zn^(2+) with rhamnolipids was an efficient method for improving CB biodegradation in BTFs.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2021年第5期108-118,共11页 环境科学学报(英文版)
基金 supported by the Fundamental Research Funds for the Central Universities(No.2018XKQYMS12) the Program for the National Natural Science Foundation of China(Nos.51778612 and 51974314) the Natural Science Foundation of Jiangsu Province(No.BK20191480)。
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  • 1宋蕾,王慧,施汉昌,胡洪营.1,2,4-三氯苯降解菌的分离及其降解质粒的研究[J].中国环境科学,2005,25(4):385-388. 被引量:17
  • 2C. Seignez,N. Adler,C. Thoeni,M. Stettler,P. Péringer,C. Holliger.Steady-state and transient-state performance of a biotrickling filter treating chlorobenzene-containing waste gas[J].Applied Microbiology and Biotechnology.2004(1)
  • 3Owen Ward,Ajay Singh,J. Van Hamme.Accelerated biodegradation of petroleum hydrocarbon waste[J].Journal of Industrial Microbiology & Biotechnology.2003(5)
  • 4J. O. Kim,P. K. TerKonda,S. D. Lee.Gaseous CAH removal by biofiltration in presence and absence of a nonionic surfactant[J].Bioprocess Engineering.1998(4)
  • 5SEIGNEZ C,VUILLEMIN A,ADLER N,PERINGER P.A procedure for the production of adapted bacteria to de- grade chlorinated aromatics[].Journal of Hazardous Materials.2001
  • 6MORETTI E C.Practical Solutions for Reducing Volatile Organic Compounds and Hazardous Air Pol- lutants[]..2001
  • 7GAO L,KEENER T C,ZHUANG L,SIDDIQUI K F.A technical and economic comparison of biofiltration and wet chemical oxidation(scrubbing)for odor control at wastewater treatment plants[].Environmental Engi- neering and Policy.2001
  • 8DEVINNY J S,DESHUESSES M,WEBSTER T S.Biofil- tration for Air Pollution Control[]..1999
  • 9EDWARDS F G,NIRMALAKHANDAN N.Biological treat- ment of airstreams contaminated with VOCs:an overview[].Water Science and Technology.1996
  • 10EVANS G M,FURLONG J C.Environmental Biotech- nology Theory and Application[]..2003

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