Management and treatment of landfill leachate by a system of constructed wetlands and ponds in Singapore

被引:25
作者
Sim, C. H. [1 ]
Quek, B. S. [1 ]
Shutes, R. B. E. [2 ]
Goh, K. H. [1 ]
机构
[1] Natl Water Agcy, PUB, Singapore 228231, Singapore
[2] Middlesex Univ, Urban Pollut Res Ctr, London NW4 4BT, England
关键词
constructed wetland; landfill leachate; plant management; pond; water recycling; REMOVAL;
D O I
10.2166/wst.2013.352
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Lorong Halus, Singapore's first landfill leachate treatment system, consists of a pre-treatment system (8,000 m(2)), five constructed reed beds (38,000 m(2)), five polishing ponds (13,000 m(2)), an education centre and a learning trail for visitors. Eight species of wetland plants (total 160,000 plants) were selected for their ability to uptake nutrients, tolerance to low phosphorus concentrations and resistance to pest infestations. The wetland was launched in March 2011 and water quality monitoring started in April 2011. The removal efficiencies of the pre-treatment system from April 2011 to August 2012 are biochemical oxygen demand (BOD5) 57.4%; chemical oxygen demand (COD) 23.6%; total suspended solids (TSS) 55.1%; ammoniacal nitrogen (NH4-N) 76.8%; total phosphorus (TP) 33.3% and total nitrogen (TN) 60.2%. Removal efficiencies of the reed beds are BOD5 47.0%; COD 42.2%; TSS 57.0%; NH4-N 82.5%; TP 29.3% and TN 83.9%. Plant growth is generally satisfactory, but the lower than designed volume of leachate has adversely affected some sections of plants and resulted in uneven flow distribution in reed beds. The plant management programme includes improving plant regrowth by harvesting of alternate strips of plants and replanting. The treated effluent meets water quality limits for discharge to the public sewer and is subsequently treated by the NEWater treatment system, which recycles water for industrial and indirect potable use.
引用
收藏
页码:1114 / 1122
页数:9
相关论文
共 15 条
[1]   Landfill leachate treatment using sub-surface flow constructed wetland by Cyperus haspan [J].
Akinbile, Christopher O. ;
Yusoff, Mohd Suffian ;
Zuki, A. Z. Ahmad .
WASTE MANAGEMENT, 2012, 32 (07) :1387-1393
[2]  
[Anonymous], STANDARD METHODS EXA, V21st
[3]  
[Anonymous], TEST METH IND WAST
[4]   The influence of plants on nitrogen removal from landfill leachate in discontinuous batch shallow constructed wetland with recirculating subsurface horizontal flow [J].
Bialowiec, Andrzej ;
Davies, Laura ;
Albuquerque, Antonio ;
Randerson, Peter F. .
ECOLOGICAL ENGINEERING, 2012, 40 :44-52
[5]   Long term performance of a constructed wetland for landfill leachate treatment [J].
Bulc, Tjasa G. .
ECOLOGICAL ENGINEERING, 2006, 26 (04) :365-374
[6]   Leachate treatment and greenhouse gas emission in subsurface horizontal flow constructed wetland [J].
Chiemchaisri, C. ;
Chiemchaisri, W. ;
Junsod, J. ;
Threedeach, S. ;
Wicranarachchi, P. N. .
BIORESOURCE TECHNOLOGY, 2009, 100 (16) :3808-3814
[7]  
Hach, 2012, Water analysis handbook
[8]   Wetland treatment of leachate from a closed landfill [J].
Kadlec, Robert H. ;
Zmarthie, Linda A. .
ECOLOGICAL ENGINEERING, 2010, 36 (07) :946-957
[9]   Influence of recirculation in a lab-scale vertical flow constructed wetland on the treatment efficiency of landfill leachate [J].
Lavrova, Silviya ;
Koumanova, Bogdana .
BIORESOURCE TECHNOLOGY, 2010, 101 (06) :1756-1761
[10]   Treatment of landfill leachate using an aerated, horizontal subsurface-flow constructed wetland [J].
Nivala, J. ;
Hoos, M. B. ;
Cross, C. ;
Wallace, S. ;
Parkin, G. .
SCIENCE OF THE TOTAL ENVIRONMENT, 2007, 380 (1-3) :19-27