Quanrud D M, Karpiscak M M, Lansey K E, Arnold R G
Department of Civil Engineering and Engineering Mechanics, The University of Arizona, Tucson 85721, USA.
Water Sci Technol. 2001;44(11-12):267-72.
We examined the fate of organics during wetland treatment of secondary effluent and groundwater (control) flows in parallel, research-scale, subsurface-flow (SSF) wetland raceways at the Constructed Ecosystem Research Facility (CERF) located in Tucson, Arizona. The CERF facility enabled us to distinguish experimentally among effects on effluent quality due to season-dependent processes of evapotranspiration (ET) and wetlands-derived production of organics. Organics of wastewater and wetlands origin were compared in terms of their contributions to dissolved organic carbon (DOC) in wetland effluent. Elevated temperatures and associated biochemical activities increased DOC levels in wetland effluents during summer. In other words, DOC removal efficiency was negatively correlated to temperature. The contributions of ET and wetland-derived organics to elevation of DOC in wetland effluents during summer were roughly comparable. The elevation of organic carbon concentration during wetland polishing of wastewater effluent will lead to higher levels of disinfection by-products when treated waters are chlorinated prior to reuse. Results of this work are relevant to water managers in arid regions, which may incorporate wetlands into sequential wastewater treatments leading to potable reuse of reclaimed water.
我们在位于亚利桑那州图森市的人工生态系统研究设施(CERF)中,对平行运行的研究规模的潜流(SSF)湿地水道中二级出水和地下水(对照)水流进行湿地处理期间有机物的归宿进行了研究。CERF设施使我们能够通过实验区分由于蒸发散(ET)的季节依赖性过程和湿地产生的有机物对出水水质的影响。比较了废水和湿地来源的有机物对湿地出水中溶解有机碳(DOC)的贡献。夏季,温度升高及相关生化活动使湿地出水中的DOC水平升高。换句话说,DOC去除效率与温度呈负相关。夏季,ET和湿地来源的有机物对湿地出水中DOC升高的贡献大致相当。废水出水在湿地净化过程中有机碳浓度的升高,将导致处理后的水在回用前进行氯化处理时产生更高水平的消毒副产物。这项工作成果与干旱地区的水资源管理者相关,这些地区可能将湿地纳入后续废水处理过程,从而实现再生水的饮用水回用。