Nitrogen And Phosphorus Removal In Substrate-Free Pilot Constructed Wetlands With Horizontal Surface Flow In Uganda

被引:14
作者
Joseph Kyambadde
Frank Kansiime
Gunnel Dalhammar
机构
[1] Makerere University Institute of Environment and Natural Resources,Department of Biotechnology
[2] Royal Institute of Technology (KTH),undefined
[3] AlbaNova University Centre,undefined
来源
Water, Air, and Soil Pollution | 2005年 / 165卷
关键词
constructed wetlands; horizontal flow; nitrification; nutrient uptake; plant biomass production; substrate-free; Uganda;
D O I
暂无
中图分类号
学科分类号
摘要
In constructed wetlands (CWs) with horizontal sub-surface flow, nutrient removal, especially phosphorus, is limited because the root biomass fills the pore spaces of the substrate (usually gravel), directing wastewater flow to deeper wetland media; plants are not regularly harvested; the litter formed by decomposing vegetation remains on the surface of the substrate and thus does not interact with the wastewater; and the substrate media often used provide only limited adsorption. Effective nutrient removal including rootzone oxidation, adsorption and plant uptake therefore requires sufficient interaction of wastewater with the treatment media. We assessed the feasibility of biological nutrient removal from wastewater using substrate-free CWs with horizontal flow, planted with two tropical macrophytes namely, Cyperus papyrus and Miscanthidium violaceum. The objectives were to evaluate the system treatment efficiency under semi-natural conditions, and to assess microbial and plant biomass contributions to nutrient removal in the CWs. Results showed high removal efficiencies for biochemical oxygen demand, ammonium-nitrogen (NH4–N) and phosphorus (P) fractions in papyrus-based CWs (68.6–86.5%) compared to Miscanthidium (46.7–61.1%) and unplanted controls (31.6–54.3%). Ammonium oxidizing bacteria in CW root–mats (108–109 cells/gram dry weight) and residual nitrite and nitrate concentrations in the water phase indicated active system nitrification. Papyrus showed higher biomass production and nutrient uptake, contributing 28.5% and 11.2%, respectively, of the total N and P removed by the system compared to 15% N and 9.3% P removed by Miscanthidium plants. Compared to literature values, nitrification, plant uptake and the overall system treatment efficiency were high, indicating a high potential of this system for biological nutrient removal from wastewaters in the tropics.
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页码:37 / 59
页数:22
相关论文
共 108 条
[1]  
Armstrong J.(1988) — a preliminary study of soil-oxidising sites and internal gas transport pathways New Phytol. 108 372-382
[2]  
Armstrong W.(2000)Differential permeability of papyrus and Aquat. Bot. 67 169-178
[3]  
Azza N. G. T.(2003) root mat in Nakivubo swamp, Uganda J. Environ. Qual. 32 2414-2420
[4]  
Kansiime F.(1982)Potential nitrification and denitrification on different surfaces in a constructed treatment wetland Appl. Environ. Microbiol. 43 945-948
[5]  
Nalubega M.(1970)Use of nitrifier activity measurements to estimate the efficiency of viable nitrifier counts in soils and sediments Ecology 51 285-290
[6]  
Denny P.(1995)Production, mineral accumulation and pigment concentrations in Water Sci. Technol. 32 281-290
[7]  
Bastviken K. S.(1994) and Water Sci. Technol. 30 209-223
[8]  
Eriksson P. G.(1997)Rootzone dynamics in constructed wetlands receiving wastewater: A comparison of vertical and horizontal flow systems Water Sci. Technol. 35 11-17
[9]  
Martins I.(2001)Use of constructed wetlands in water pollution control: Historical development, present status and future perspectives Water Sci. Technol. 44 47-54
[10]  
Neto J. M.(1992)Do macrophytes play a role in constructed treatment wetlands Limnol. Oceanogr. 37 1420-1433