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Effects of annual harvesting on plants growth and nutrients removal in surface-flow constructed wetlands in northwestern China

机译:年收对西北表层人工湿地植物生长及养分去除的影响

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The importance of harvest management for the growth and development of plants and nutrients removal in constructed wetlands (CWs) is highly controversial. This study evaluated the effects of annual harvesting on the growth and productivity of local Phragmites australis in northwestern China. Growth characteristics such as shoot density, biomass and height were studied using two pilot-scale surface-flow CWs over a two-year operation period. Plants were kept unharvested in one CW for comparative studies with the second CW, which was harvested at the end of the growing season. Each CW of 400 m(2) was operated with a hydraulic loading of 34 m(3)/d for the treatment of water from an urban river polluted with municipal and industrial wastewater. The harvested CW recorded a higher shoot density (175 shoots/m(2)), biomass (1.4 kg/m(2)) and peak height (3.4 m) than the unharvested one (130 shoots/m(2), 1.2 kg/m(2) and 3.2 m). The overall nutrients removals were also slightly higher for the harvested CW (46.0% TN and 38.1% TP) than the unharvested CW (40.6% TN and 29.1% TP). Plants harvesting in the first year improved nutrients removal by plant uptake (41.9 g N/m(2) and 3.7 g P/m(2) versus 37.3 g N/m(2) and 3.2 g P/m(2)) as well as in the substrate layer (216.9 g N/m(2) and 8.0 g P/m(2) versus 191.0 g N/m(2) and 5.7 g P/m(2)) during the second year. Nonetheless, the increase in nutrients removal by harvesting was minimal. (C) 2015 Elsevier B.V. All rights reserved.
机译:在人工湿地(CW)中,收获管理对植物生长和发育以及营养去除的重要性备受争议。这项研究评估了年度收成对中国西北本地芦苇生长和生产力的影响。在两年的经营期内,使用两个中试规模的表面流连续波研究了枝条密度,生物量和高度等生长特性。一棵CW中未收割植物,与第二棵CW进行比较研究,第二棵CW是在生长季节结束时收获的。每台400 m(2)的CW均以34 m(3)/ d的水力负荷运行,以处理来自城市河流的水,这些城市河流被市政和工业废水污染。与未收割的CW相比,未收割的CW记录了更高的芽密度(175芽/ m(2)),生物量(1.4 kg / m(2))和峰高(3.4 m),高于未收获的芽(130芽/m(2)、1.2 kg / m(2)和3.2 m)。收获的化武(总氮为46.0%,总磷为38.1%)的总养分去除量也略高于未收获的化武(总氮为40.6%,总磷为29.1%)。第一年收获的植物提高了植物吸收的养分去除率(41.9 g N / m(2)和3.7 g P / m(2),而37.3 g N / m(2)和3.2 g P / m(2))以及第二年的基材层(216.9 g N / m(2)和8.0 g P / m(2)与191.0 g N / m(2)和5.7 g P / m(2))。尽管如此,通过收获去除的养分增加很少。 (C)2015 Elsevier B.V.保留所有权利。

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