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The interacting effects of temperature and plant community type on nutrient removal in wetland microcosms

机译:温度和植物群落类型对湿地微尺度养分去除的相互作用

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Treatment wetlands can remove nutrients from inflow sources through biogeochemical processes. Plant composition and temperature play important roles in the nutrient removal efficiency of these wetlands, but the interactions between these variables are not well understood. We investigated the seasonal efficiency of wetland macrophytes to reduce soil leachate concentrations of total nitrogen and total phosphorus in experimental microcosms. Each microcosm contained one of six vegetation treatments: unplanted, planted with one of four species (Carex lacustris, Scirpus validus, Phalaris arundinacea and Typha latifolid) in monoculture or planted with an equal abundance of all four species. Microcosms were also subjected to two temperature treatments: insulated microcosms and microcosms exposed to environmental conditions. A constant nutrient solution containing 56 mg/l N and 31 mg/ l P was added to all microcosms three times a week. Water samples were analyzed monthly for total dissolved nitrogen and total dissolved phosphorous. Microcosms exhibited a typical pattern of seasonal nutrient removal with higher removal rates in the growing season and lower rates in the winter months. In general, planted microcosms outperformed unplanted microcosms. Among the plant treatments, Carex lacustris was the least efficient. The four remaining plant treatments removed an equivalent amount of nutrients. Insulated microcosms were more efficient in the winter and early spring months. Although a seasonal pattern of nutrient removal was observed, this variation can be minimized through planting and insulation of wetlands. (C) 2004 Elsevier Ltd. All rights reserved.
机译:处理湿地可以通过生物地球化学过程从流入源中去除营养。植物组成和温度在这些湿地的养分去除效率中起着重要的作用,但是这些变量之间的相互作用尚不清楚。我们研究了湿地大型植物减少实验微观世界中土壤渗滤液中总氮和总磷浓度的季节效率。每个缩影包含六种植被处理方法之一:未种植,以单一栽培种植了四种(Carex lacustris,Scirpusvalidus,Phalaris arundinacea和Typha latifolid)之一,或以所有四种相同的丰度种植。缩影也接受了两种温度处理:绝缘缩影和暴露于环境条件的缩影。每周三次将含有56 mg / l N和31 mg / l P的恒定营养液添加到所有微观世界。每月分析水样中的总溶解氮和总溶解磷。微观世界表现出典型的季节性营养去除模式,在生长季节去除率较高,而在冬季则较低。通常,种植的微观世界胜过未种植的微观世界。在植物处理中,Carex lacustris的效率最低。剩下的四种植物处理去除了等量的营养。隔热的缩影在冬季和初春月份更为有效。尽管观察到了季节性的养分去除模式,但通过种植和隔离湿地可以使这种变化最小化。 (C)2004 Elsevier Ltd.保留所有权利。

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