BIOFILTRATION OF TOLUENE VAPOR UNDER STEADY-STATE AND TRANSIENT CONDITIONS - THEORY AND EXPERIMENTAL RESULTS

被引:153
作者
SHAREEFDEEN, Z [1 ]
BALTZIS, BC [1 ]
机构
[1] NEW JERSEY INST TECHNOL,DEPT CHEM ENGN CHEM & ENVIRONM SCI,NEWARK,NJ 07102
关键词
D O I
10.1016/S0009-2509(05)80026-0
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Removal of toluene vapor from airstreams was studied in a vapor phase biological reactor known as a biofilter. The reactor was packed with a mixture of peat and perlite particles on which a mixed microbial population (consortium) was immobilized and formed a biolayer. The reactor was operated over a period of 11 months under various inlet-airstream toluene concentrations and flow rates of the contaminated airstream. Except at start-up, no supplemental nutrients were provided to the column, which remained active and never exhibited any significant pressure drop build-up, The process was modeled with general mass balance equations which take into account reaction, mass transfer, and adsorption of the pollutant onto the packing material. The model equations were solved numerically and the predicted concentration profiles agreed very well with the experimental data, for both steady-state and transient operation. Predicted concentration profiles for the biofilm indicate that toluene gets depleted before oxygen in a thin layer of the order of 35 mu m. This finding is opposite to what has been reported for hydrophilic solvents where oxygen is depleted before the contaminant in the biolayer. The model equations have been used in parameter sensitivity studies that have revealed the parameters which need to be accurately known for predicting the performance of a biofilter.
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收藏
页码:4347 / 4360
页数:14
相关论文
共 20 条
[1]   A MATHEMATICAL MODEL FOR CONTINUOUS CULTURE OF MICROORGANISMS UTILIZING INHIBITORY SUBSTRATES [J].
ANDREWS, JF .
BIOTECHNOLOGY AND BIOENGINEERING, 1968, 10 (06) :707-+
[2]  
ANDROUTSOPOULOU H, 1994, THESIS NEW JERSEY I
[3]  
BAIDER FG, 1982, MICROBIAL POPULATION, P1
[4]  
BALTZIS BC, 1993, 86TH P A WMA M
[5]   VERIFICATION STUDIES OF A SIMPLIFIED MODEL FOR THE REMOVAL OF DICHLOROMETHANE FROM WASTE GASES USING A BIOLOGICAL TRICKLING FILTER .1. [J].
DIKS, RMM ;
OTTENGRAF, SPP .
BIOPROCESS ENGINEERING, 1991, 6 (03) :93-99
[6]  
Doedel E., 1986, AUTO SOFTWARE CONTIN
[7]   DIFFUSION OF PHENOL THROUGH A BIOFILM GROWN ON ACTIVATED CARBON PARTICLES IN A DRAFT-TUBE 3-PHASE FLUIDIZED-BED BIOREACTOR [J].
FAN, LS ;
LEYVARAMOS, R ;
WISECARVER, KD ;
ZEHNER, BJ .
BIOTECHNOLOGY AND BIOENGINEERING, 1990, 35 (03) :279-286
[8]   DIFFUSION AND REACTION WITHIN POROUS PACKING MEDIA - A PHENOMENOLOGICAL MODEL [J].
JONES, WL ;
DOCKERY, JD ;
VOGEL, CR ;
STURMAN, PJ .
BIOTECHNOLOGY AND BIOENGINEERING, 1993, 41 (10) :947-956
[9]   THE IMMOBILIZATION OF WHOLE CELLS - ENGINEERING PRINCIPLES [J].
KAREL, SF ;
LIBICKI, SB ;
ROBERTSON, CR .
CHEMICAL ENGINEERING SCIENCE, 1985, 40 (08) :1321-1354
[10]   BIOFILTRATION - AN INNOVATIVE AIR-POLLUTION CONTROL TECHNOLOGY FOR VOC EMISSIONS [J].
LESON, G ;
WINER, AM .
JOURNAL OF THE AIR & WASTE MANAGEMENT ASSOCIATION, 1991, 41 (08) :1045-1054