Removal of Pollutants in Different Landfill Leachate Treatment Processes on the Basis of Organic Matter Fractionation

被引:10
作者
Zolfaghari, Mehdi [1 ]
Dia, Oumar [1 ]
Klai, Nouha [1 ]
Drogui, Patrick [1 ]
Brar, Satinder Kaur [1 ]
Buelna, Gerardo [2 ]
Dube, Rino [2 ]
机构
[1] Univ Quebec, INRS ETE, 490 Rue Couronne, Quebec City, PQ G1K 9A9, Canada
[2] CRIQ, 333 Rue Franquet, Quebec City, PQ G1P 4C7, Canada
关键词
PHTHALIC-ACID ESTERS; ACTIVATED-SLUDGE; HEAVY-METALS; HUMIC-ACID; MEMBRANE BIOREACTOR; AQUEOUS-SOLUTIONS; FULVIC-ACID; NANOFILTRATION; CARBON; BIOAVAILABILITY;
D O I
10.2134/jeq2017.09.0360
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
A combination of processes was required for the proper treatment of old landfill leachate, as it contained a high concentration of pollutants. Humic substances comprised half of the total organic carbon in the raw leachate. Mobility of di(2-ethylhexyl) phthalate (DEHP) and metals could depend on the fate of these substances. Characterization of carbon in raw leachate and effluent of the membrane bioreactor, biofiltration, electro-oxidation, electrocoagulation, and nanofiltration showed complete removal of suspended solids and colloids. Physical processes could not remove the hydrophilic fraction due to its lower molecular weight. However, high removal of the hydrophilic fraction with a molecular weight <500 Da was expected in the biological process. In comparison with fulvic acid, larger sized humic acid resulted in complete removal by physicochemical processes. Because of DEHP partitioning on dissolved organic matter, especially on humic substances, its removal could be correlated with total organic carbon removal. Metals such as iron, aluminum, magnesium, and lead showed removal efficiency >80% in biological processes. Electro-deposition on the surface of an electrode and precipitation by hydroxide resulted in removal efficiencies >90 and >50% in electro-coagulation and electro-oxidation, respectively. Rejection of metals by nanofiltration was >80% and depended on the size and charge of cation. All in all, a combination of membrane bioreactor and nanofiltration seems to be the optimal process configuration for efficient treatment of old landfill leachate.
引用
收藏
页码:297 / 305
页数:9
相关论文
共 35 条
[1]   Treatment of landfill leachate using membrane bioreactors: A review [J].
Ahmed, Farah Naz ;
Lan, Christopher Q. .
DESALINATION, 2012, 287 :41-54
[2]   Behavior of endocrine-disrupting chemicals in leachate from MSW landfill sites in Japan [J].
Asakura, H ;
Matsuto, T ;
Tanaka, N .
WASTE MANAGEMENT, 2004, 24 (06) :613-622
[3]   Dissolved organic carbon as the main carrier of phthalic acid esters in municipal landfill leachates [J].
Bauer, MJ ;
Herrmann, R .
WASTE MANAGEMENT & RESEARCH, 1998, 16 (05) :446-454
[4]   Speciation of heavy metals in landfill leachate: a review [J].
Baun, DL ;
Christensen, TH .
WASTE MANAGEMENT & RESEARCH, 2004, 22 (01) :3-23
[5]   Application of pressure-driven membrane techniques to biological treatment of landfill leachate [J].
Bohdziewicz, J ;
Bodzek, M ;
Górska, J .
PROCESS BIOCHEMISTRY, 2001, 36 (07) :641-646
[6]   Molecular weight distribution of a full-scale landfill leachate treatment by membrane bioreactor and nanofiltration membrane [J].
Campagna, Marco ;
Cakmakci, Mehmet ;
Yaman, F. Busra ;
Ozkaya, Bestamin .
WASTE MANAGEMENT, 2013, 33 (04) :866-870
[7]   STABILITY OF ORGANIC-MATTER IN LANDFILL LEACHATES [J].
CHIAN, ESK .
WATER RESEARCH, 1977, 11 (02) :225-232
[8]  
Drogui Patrick, 2007, Recent Patents on Engineering, V1, P257, DOI 10.2174/187221207782411629
[9]   Biosorption of humic and fulvic acids to live activated sludge biomass [J].
Esparza-Soto, M ;
Westerhoff, P .
WATER RESEARCH, 2003, 37 (10) :2301-2310
[10]   Study on biosorption of humic acid by activated sludge [J].
Feng, Hua-Jun ;
Hu, Li-Fang ;
Mahmood, Qaisar ;
Long, Yan ;
Shen, Dong-Sheng .
BIOCHEMICAL ENGINEERING JOURNAL, 2008, 39 (03) :478-485