首页> 外文期刊>Water Science and Technology >Estimation of total nitrogen transport and retention during flow in a catchment using a mass balance model incorporating the effects of land cover distribution and human activity information.
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Estimation of total nitrogen transport and retention during flow in a catchment using a mass balance model incorporating the effects of land cover distribution and human activity information.

机译:使用包含土地覆盖分布和人类活动信息的质量平衡模型,估算集水区流中总氮的运输和保留。

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摘要

The load of total nitrogen (TN) in stream water was surveyed in the Nagara River Basin (2,000km2), central Japan. Multivariate analysis placed the TN data in an environmental and social context, relating TN to land use conditions such as geologic features, population density, and percentage of the population using the sewer system. Multivariate analysis was used to examine relationships among the land use distribution with and without human activity and the amount of pollution effluent from waste water treatment plants (WWTP). The pollution load in stream water is related to characteristics of the land cover in the river basin, so the influence of land use on the pollutant load was investigated. However, key factors affecting the pollutant load are human activities associated with the land use. In this study, a relationship between pollutant load, land use, and human activity is developed. Land use was estimated from Landsat data using ISODATA clustering. The distribution of the land cover factors was related to human activities, i.e. population density, agricultural production, industrial wastewater discharge, percentage of sewered population, and stock breeding in the catchment. Multivariate analysis related the TN data to land use and human activities. However, the types of land use were found to be insufficient to evaluate the TN, which appeared to be largely governed by other human-related factors such as industrial wastewater discharge, agricultural production, population density, and livestock density. Socioeconomic data, were obtained from government agencies. The results indicate that the TN load outflow characteristics of the study catchment were affected not only by outside human activity, but also largely by the various human activities in the small drainage basin. Industrial waste water contributed as much to the pollution load outflow as did human activity. This is shown quantitatively in that land use information collected at the same time as that collected on human activities provides effective baseline data. The model proposed here is suitable for evaluating best management practices.
机译:在日本中部的Nagara流域(2,000 km2)中对溪流水中的总氮(TN)负荷进行了调查。多变量分析将TN数据置于环境和社会背景下,将TN与土地使用条件(如地质特征,人口密度和使用下水道系统的人口百分比)相关联。多变量分析用于检验有无人类活动的土地利用分布与废水处理厂(WWTP)的污染排放量之间的关系。流水中的污染负荷与流域土地覆盖的特征有关,因此研究了土地利用对污染物负荷的影响。但是,影响污染物负荷的关键因素是与土地利用相关的人类活动。在这项研究中,建立了污染物负荷,土地利用和人类活动之间的关系。使用ISODATA聚类根据Landsat数据估算土地利用。土地覆盖因子的分布与人类活动有关,即人口密度,农业生产,工业废水排放,下水道人口百分比和流域的种群繁殖。多变量分析将TN数据与土地利用和人类活动相关联。但是,发现土地使用类型不足以评估TN,而TN似乎很大程度上受其他与人相关的因素所支配,例如工业废水排放,农业生产,人口密度和牲畜密度。社会经济数据是从政府机构获得的。结果表明,研究流域的总氮负荷流出特征不仅受到外部人类活动的影响,而且还受到小型流域内各种人类活动的影响。工业废水对污染负荷流出的贡献与人类活动一样大。这定量地表明,与人类活动同时收集的土地利用信息提供了有效的基准数据。这里提出的模型适合评估最佳管理实践。

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