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Nutrient dynamics and retention in a vegetated drainage ditch receiving nutrient-rich sewage at low temperatures

机译:在低温下接受营养排水沟的营养动力学和保留

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摘要

Vegetated agricultural drainage ditches (VDs) are a relatively new best management practice for pesticide and nutrient mitigation that is receiving increasing global interest. However, VDs are seldom used during winter due to considerable deterioration of pollutants reduction efficiencies driven by low-temperature effects. Limited knowledge on the internal loading of nutrient in VDs due to vegetation decomposition calls for further evaluation. Here, we assessed plants growth characteristics and nutrient dynamics in a field-scale VD receiving nutrient-rich sewage and planted with the overwintering plants: Acorus gramineus, Myriophyllum aquaticum and Iris sibirica. Water purification performance showed average TN, NH_4-N, NO_3-N,TP and PO_4-P reduction efficiencies of 44,46,43,52 and 46%, respectively, over the winter period. Maximum reduction rates of TN and TP were 5.31 and 0.34 g~(-2) d~(-1) respectively. Of the total nutrient removal by plants of 5.37 × 10~3 kg N y~(-1) and 0.65 × 10~3kgPy~(-1) from the VD system, A. gramineus contributed 65.7% and 72.1%, respectively. Nonetheless, substantial amounts of N and P retained within the aboveground biomass were released into the water column as ditch plant shoots decayed to deteriorate the water quality. All three species, A. gramineus, M. aquaticum and I. sibirica demonstrated considerable nutrient accumulation during winter and facilitated nutrient retention in the VD system. Consequently, they can be considered effective overwintering species of choice in VDs for purifying nutrient-rich water and potentially appropriate for vulgarizing elsewhere, particularly throughout the winter season.
机译:植被的农业排水沟(VDS)是一种相对较新的农药和营养减缓的管理实践,接受了增加全球兴趣。然而,由于低温效应驱动的污染物减少效率相当大的劣化,VDS很少使用。由于植被分解而导致VDS营养素内部负荷的知识有限。在这里,我们评估了在接受富含营养的污水的场级VD中的植物生长特征和养分动力学,并用过次溢出的植物种植:Acorus Gramineus,Myriophyllum Aquaticum和Iris Sibirica。水净化性能分别显示出平均TN,NH_4-N,NO_3-N,TP和PO_4-P分别在冬季期间减少44,46,43,52和46%的效率。 TN和TP的最大降低率分别为5.31和0.34g〜(-2)d〜(-1)。从VD系统的5.37×10〜3 kg N y〜(-1)和0.65×10〜3kgpy〜(-1)的植物的总营养成分分别贡献65.7%和72.1%。尽管如此,随着沟植物芽衰减以恶化水质,仍然在地上生物质内保留在地上生物质内的大量N和P.释放到水柱中。所有三种物种,A. Gramineus,M. Aquaticum和I.Sibirica在冬季冬季营养积累了相当大的营养积累,促进了VD系统中的营养保留。因此,它们可以被认为是在VDS中有效的选择中选择的选择,以纯化富含营养的水,并且可能适合在其他地方尿别,特别是在整个冬季。

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  • 来源
    《Science of the total environment》 |2020年第1期|140268.1-140268.11|共11页
  • 作者单位

    State Key Laboratory of Urban and Regional Ecology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences China University of Chinese Academy of Sciences Beijing 100049 China Faculty of Agronomy Department of Natural Resources and Environmental Management University of Lubumbashi Democratic Republic of the Congo Key Lab of Mountain Surface Process and Ecological Regulation Institute of Mountain Hazards and Environment Chinese Academy of Sciences Chengdu 610041 China;

    Key Lab of Mountain Surface Process and Ecological Regulation Institute of Mountain Hazards and Environment Chinese Academy of Sciences Chengdu 610041 China;

    Key Lab of Mountain Surface Process and Ecological Regulation Institute of Mountain Hazards and Environment Chinese Academy of Sciences Chengdu 610041 China;

    International Science & Technology Cooperation Center for Urban Alternative Water Resources Development Xi'an University of Architecture and Technology Xi'an 710055 China;

    State Key Laboratory of Urban and Regional Ecology Research Center for Eco-Environmental Sciences Chinese Academy of Sciences China University of Chinese Academy of Sciences Beijing 100049 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Growth characteristics; Vegetated drainage ditch; Nutrient removal; Plant uptake; Rural domestic wastewater; Winter;

    机译:生长特征;植被排水沟;营养去除;植物摄取;农村污水;冬天;

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