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Reach-scale variation surface water quality in a reticular canal system in the lower Yangtze River Delta region, China

机译:长江三角洲下游地区网状渠道系统尺度水面变化

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The aim of this research was to assess the spatial and temporal distribution of surface water pollution within a reticular canal system typical of those found in the lower Yangtze River Delta (YRD). For this purpose, surface water quality data was collected from a drainage canal that bisected the southeast district of Ningbo Municipality (Zhejiang) from 2013 to 2015. The sampling transect was designed to represent the change in land-use from the agriculture dominated rural hinterland, to the predominantly urban city-centre. To calculate the representative land-use fraction of each sampling location, the contributing area was defined using an uni-directional 1 km vector line-buffer around the 'upstream' section of canal. The spatial and temporal variation of EC, DO, NH_3 and turbidity indicated a measureable difference between the urban and rural sections of the channel. Water quality indicators were most sensitive to urban and parkland land-use types. The study yielded an increased spatial resolution to knowledge of water-quality variability in the urban environment compared to previous studies within the YRD region. The results were used to make recommendations for the development of an effective long-term strategy for the improvement in surface water quality in this region.
机译:这项研究的目的是评估网状渠道系统中地表水污染的时空分布,这是长江三角洲下游地区的典型特征。为此,我们从2013年至2015年一分为二的宁波市(浙江省)东南部地区的一条排水渠中收集了地表水质量数据。抽样样点旨在代表农业为主的农村腹地的土地利用变化,到主要的城市中心。为了计算每个采样点的代表性土地利用比例,使用围绕运河“上游”部分的单向1 km矢量线缓冲区定义了贡献区域。 EC,DO,NH_3和浊度的时空变化表明,该河道的城乡之间存在可测量的差异。水质指标对城市和公园用地的使用类型最敏感。与长三角地区以前的研究相比,该研究提高了城市环境中水质变异性知识的空间分辨率。结果被用来为该地区改善地表水水质的有效长期策略的开发提供建议。

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