The post treatment of composting leachate with a combination of ozone and persulfate oxidation processes

被引:33
作者
Soubh, Alaa [1 ]
Mokhtarani, Nader [1 ]
机构
[1] Tarbiat Modares Univ, Civil & Environm Engn Fac, Tehran 1411713116, Iran
关键词
Biological water treatment - Water pollution - Ozone - Wastewater treatment - Biodegradability - Oxidation - Chemical oxygen demand - Ozone water treatment - Refractory materials - Sodium compounds;
D O I
10.1039/c6ra09539a
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Due to the presence of refractory substances, biological methods are often not sufficient for leachate treatment to meet the standards of treated wastewater. O-3/persulfate oxidation is a kind of AOP, which has been proven to be an appropriate technology for the final treatment of these types of wastes. In this study, the capability of an O-3/persulfate oxidation process to act as a post treatment method for composting leachate was examined at laboratory scale and in batch mode. The effects of some factors, such as the initial pH, oxidant concentration and reaction time, were investigated on the removal of the organic load and the color of the leachate. Based on the results of the experiments, maximum COD removal (87%) was obtained after 210 minutes of ozonation with a 0.79 g h(-1) ozone mass flow rate at pH 9, and in the presence of 4500 mg L-1 sodium persulfate. Under such conditions, the maximum removal of color was also 85%. Based on the results of this study, the combination process showed a higher potential for the removal of contaminants compared with ozonation or persulfate processes alone. In this research, the biodegradability (BOD5/COD) of the leachate improved from 0.13 to 0.61 and the toxicity reduced by more than 80%. SPE-GC-MS analysis revealed that the composting leachate contained various groups of humic substances, most of which could be degraded into compounds with lower molecular weights, using a combined O-3/persulfate process. Therefore, it is a useful method for the degradation of refractory organic materials in contaminated waters.
引用
收藏
页码:76113 / 76122
页数:10
相关论文
共 46 条
[11]   Detailed treatment line for a specific landfill leachate remediation. Brief economic assessment [J].
De Torres-Socias, E. ;
Prieto-Rodriguez, L. ;
Zapata, A. ;
Fernandez-Calderero, I. ;
Oller, I. ;
Malato, S. .
CHEMICAL ENGINEERING JOURNAL, 2015, 261 :60-66
[12]   Sulfate radical-advanced oxidation process (SR-AOP) for simultaneous removal of refractory organic contaminants and ammonia in landfill leachate [J].
Deng, Yang ;
Ezyske, Casey M. .
WATER RESEARCH, 2011, 45 (18) :6189-6194
[13]   Ozonation of aniline promoted by activated carbon [J].
Faria, P. C. C. ;
Orfao, J. J. M. ;
Pereira, M. F. R. .
CHEMOSPHERE, 2007, 67 (04) :809-815
[14]   Structural investigation of isolated aquatic fulvic and humic acids in seepage water of waste deposits by pyrolysis gas chromatography mass spectrometry [J].
Gobbels, FJ ;
Puttmann, W .
WATER RESEARCH, 1997, 31 (07) :1609-1618
[15]  
Guo Y., 2012, J ENV ANAL TOXICOL, V2, P150
[16]   Removal of nitrogen from MBT residues by leachate recirculation in combination with intermittent aeration [J].
Hoai Nam Tran ;
Muennich, Kai ;
Fricke, Klaus ;
Harborth, Peter .
WASTE MANAGEMENT & RESEARCH, 2014, 32 (01) :56-63
[17]   KINETICS AND MECHANISM OF OXIDATIONS BY PEROXYDISULFATE [J].
HOUSE, DA .
CHEMICAL REVIEWS, 1962, 62 (03) :185-&
[18]  
JIA CZ, 2013, P 3 INT C INT SYST D, P1594
[19]   Iron (II) activated persulfate oxidation of MGP contaminated soil [J].
Killian, Paul F. ;
Bruell, Clifford J. ;
Liang, Chenju ;
Marley, Michael C. .
SOIL & SEDIMENT CONTAMINATION, 2007, 16 (06) :523-537
[20]   The effect of landfill age on municipal leachate composition [J].
Kulikowska, Dorota ;
Klimiuk, Ewa .
BIORESOURCE TECHNOLOGY, 2008, 99 (13) :5981-5985