Department of Biology, University of Antwerp, Universiteitsplein 1c, B2610 Antwerpen, Belgium.
Department of Biology, University of Antwerp, Universiteitsplein 1c, B2610 Antwerpen, Belgium; Flanders Marine Institute (VLIZ), Wandelaarkaai 7, 8400 Oostende, Belgium.
Sci Total Environ. 2017 Dec 1;601-602:365-373. doi: 10.1016/j.scitotenv.2017.05.217. Epub 2017 May 29.
River systems are highly complex, hierarchical and patchy systems which are greatly influenced by both catchment surroundings and in-stream processes. Natural and anthropogenic land uses and processes affect water quality (WQ) through different pathways and scales. Understanding under which conditions these different river and catchment properties become dominant towards water chemistry remains a challenge. In this study we analyzed the impact of land use and spatial scales on a range of WQ variables within the Kleine Nete catchment in Belgium. Multivariate statistics and spatial descriptors (Moran's and Asymmetric Eigenvector Maps) were used to assess changes in water chemistry throughout the catchment. Both land use and complex mixes of spatial descriptors of different scales were found to be significantly associated to WQ parameters. However, unidirectional, upstream-downstream changes in water chemistry, often described in river systems, were not found within the Kleine Nete catchment. As different sources and processes obscure and interact with each other, it is generally difficult to understand the correct impact of different pollution sources and the predominant pathways. Our results advocate for WQ management interventions on large and small scales where needed, taking the predominate pathways in to account.
河流系统是高度复杂、层次分明和斑块状的系统,受到流域环境和河流内部过程的极大影响。自然和人为的土地利用和过程通过不同的途径和尺度影响水质(WQ)。了解在哪些条件下这些不同的河流和流域特性对水化学起主导作用仍然是一个挑战。在这项研究中,我们分析了土地利用和空间尺度对比利时小内特(Kleine Nete)流域一系列 WQ 变量的影响。多元统计和空间描述符(莫兰和非对称特征向量图)用于评估整个流域的水质化学变化。土地利用以及不同尺度的复杂空间描述符组合都与 WQ 参数显著相关。然而,在小内特流域中,没有发现通常在河流系统中描述的水质化学的单向、上下游变化。由于不同的来源和过程相互掩盖和相互作用,通常很难了解不同污染源的正确影响和主要途径。我们的研究结果主张在需要的情况下,在大尺度和小尺度上进行 WQ 管理干预,考虑到主要途径。