Department of Geography, Portland State University, Portland, OR, 97201, United States.
Department of Geography, Portland State University, Portland, OR, 97201, United States.
J Environ Manage. 2021 Mar 15;282:111962. doi: 10.1016/j.jenvman.2021.111962. Epub 2021 Jan 15.
While many different watershed management strategies have been implemented to improve water quality, relatively few studies empirically tested the combined effects of different strategies on water quality in relation to land cover changes using long-term empirical data at the sub-basin scale. Using 10 years of total suspended solids (TSS) data, we examined how the conversion of wetland, wetland fragmentation, beaver dams, and Best Management Practices (BMPs) affect wet season TSS concentrations for the 25 monitoring stations in the Tualatin River basin, USA. Geographic information systems, FRAGSTATS, and correlation analysis were used to identify the direction of land cover change, degree of wetland fragmentation, and the strength of the relationship between TSS change and explanatory variables. Improvement in TSS concentrations was tightly coupled with the aggregation of wetlands, presence of beaver dams, particularly during the mid-wet season when flows were highest. Other BMPs effectively reduced TSS concentrations for the early and late-wet seasons when flows were not as high as in the middle wet-season. Aggregated wetlands were more effective for improving water quality than smaller disaggregated wetlands of similar total area when combined with the presence of beaver dams and BMPs. These findings offer important scientific and practical implications for management of urbanizing watersheds that seek to achieve the dual goals of improving environmental quality and land development.
尽管已经实施了许多不同的流域管理策略来改善水质,但相对较少的研究从实证角度检验了不同策略在与土地覆盖变化相关的水质方面的综合影响,特别是在次流域尺度上使用长期的经验数据。本研究使用了 10 年的总悬浮固体(TSS)数据,在美国图拉丁河流域的 25 个监测站,考察了湿地转化、湿地破碎化、海狸坝和最佳管理实践(BMPs)如何影响湿季 TSS 浓度。地理信息系统、FRAGSTATS 和相关分析用于确定土地覆盖变化的方向、湿地破碎化的程度以及 TSS 变化与解释变量之间关系的强度。TSS 浓度的改善与湿地的聚集紧密相关,海狸坝的存在也有很大关系,尤其是在流量最高的中湿季期间。其他 BMP 在流量不像中湿季那么高的早湿季和晚湿季有效降低了 TSS 浓度。当与海狸坝和 BMP 结合时,与类似总面积的小而分散的湿地相比,聚集的湿地在改善水质方面更有效。这些发现为寻求实现改善环境质量和土地开发双重目标的城市化流域管理提供了重要的科学和实践意义。