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On the relationship between landscape ecological patterns and water quality across gradient zones of rapid urbanization in coastal China

机译:中国沿海快速城市化梯度带景观生态格局与水质的关系

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摘要

In order to improve water quality and ecosystems health, the focus of river ecological restoration and water ecosystem-based management needs to reach beyond its usual policy domain by restricting the expansion of urban built-up land and reducing urbanization-related pollution. This study aims to assess the impacts of urbanization on water quality for three spatial urban development zones, i.e. center, inner pen-urban and outer pen-urban of the eastern coastal municipality of Lianyungang, China. We analyze the relationship between urban landscape ecological pattern and water quality in three landscape zones. The study explores this relationship and its policy implications. The results of our analysis are as follow: (1) In the center zone, the landscape pattern metrics, largest patch index (LPI) and total class area (CA) were strongly correlated with water quality parameters, such as CODMn and NH3-N; (2) In the inner penurban zone, the number of significant relations of land use pattern metrics and water quality parameters in 2008 was greater than that in 2000 and 2004; (3) land use pattern metrics in the outer pen-urban were less correlated to water quality than in the other zones; (4) the degree of correlation in different spatial zones was in following order: center (2008 > 2000 > 2004), inner pen-urban (2008 > 2000 > 2004), outer pen-urban (2004> 2000 = 2008). Thus, the relationships between landscape and water quality varies significantly over space due to varying watershed characteristics and pollution sources across space. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了改善水质和生态系统健康,河流生态恢复和基于水生态系统的管理的重点需要超越通常的政策范围,限制城市建成区的扩张并减少与城市化有关的污染。这项研究旨在评估中国连云港东部沿海城市的三个空间城市发展区,即中心,内城区和外城区的城市化对水质的影响。我们分析了三个景观带中城市景观生态格局与水质之间的关系。该研究探讨了这种关系及其政策含义。我们的分析结果如下:(1)在中心区域,景观格局指标,最大斑块指数(LPI)和总类别面积(CA)与水质参数(如CODMn和NH3-N)密切相关。 ; (2)在内城区,2008年土地利用格局指标与水质参数的重要关系数量大于2000年和2004年。 (3)郊区的土地利用模式指标与水质的相关性低于其他地区。 (4)不同空间带的相关程度依次为:中心(2008> 2000> 2004),内城区(2008> 2000> 2004),外城区(2004> 2000 = 2008)。因此,由于流域特征和空间污染源的变化,景观与水质之间的关系在整个空间中也有很大变化。 (C)2015 Elsevier B.V.保留所有权利。

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