| Literature DB >> 26073517 |
Yao Su1, Junshen Pei1, Baohu Tian1, Fengxi Fan2, Mengling Tang3, Wei Li4, Ruo He5.
Abstract
Biocover soils have been demonstrated to be a good alternative cover material to mitigate CH4 emission from landfills. To evaluate the potential of biocover soil in mitigating emissions of non-methane volatile organic compounds (NMVOCs) from landfills, simulated cover soil columns with the influx of toluene (chosen as typical of NMVOCs) concentrations of 102-1336 mg m(-3) in the presence or absence of the major landfill gas components (i.e., CH4 and CO2) were conducted in this study. In the two experimental materials (waste biocover soils (WBS) and landfill cover soils (LCS)), higher toluene reduction was observed in WBS with respect to LCS. After the introduction of landfill gas, an increase of microbial diversity and relative abundance of toluene-degrading bacteria and methanotrophs occurred in WBS. To illustrate the role of toluene-degrading activity in mitigating toluene emissions through landfill covers, an analytical model was developed by incorporating the steady-state vapor transport with the first-order kinetics of aerobic biodegradation limited by O2 availability. This study demonstrated that biocover soils have great potential in applying to landfills for mitigating toluene emission to the atmosphere.Entities:
Keywords: Landfill cover soil; Landfill gas; Methane oxidation; Microbial community; Toluene degradation
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Year: 2015 PMID: 26073517 DOI: 10.1016/j.jhazmat.2015.06.007
Source DB: PubMed Journal: J Hazard Mater ISSN: 0304-3894 Impact factor: 10.588