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Water quality simulation and economic valuation of riparian land-use changes.

机译:河岸土地利用变化的水质模拟和经济评估。

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It is widely recognized that many agricultural watersheds are contaminated by nutrients and sediments. However, land-use change in the riparian corridor can be a viable option in mitigating the non-point source pollution. On the other hand, the water quality management strategy will be successful only if it is economically feasible.; The research focus of this dissertation is to quantify the ecological and economical impacts of land-use changes in riparian buffer zones on the hydrology and water quality in the Little Miami River watershed, Ohio, through creation and application of an integrated modeling approach.; The ArcView GIS based U.S. EPA BASINS/HSPF model was calibrated and validated from 1980-1993 using local DEM, climatic, land-use, flow, and water quality data. The replacement cost method was used to estimate the value of riparian forest buffer zones based on the cost of nitrogen and phosphorus removal through wastewater treatment plants.; Results indicated that the 60-meter, 90-meter and 120-meter riparian forest and wetland buffers were able to reduce the mean annual flow by 0.26%-0.28%, mean annual nitrite plus nitrate by 2.9%-6.1%, and mean annual total phosphorus by 3.2%-7.8%. It was also found that three engineering best management practices (BMPs) in the agricultural land, 25% filter strips, 50% filter strips, and 25% grassed swales, could achieve similar or better nutrient mitigation results than the riparian buffers.; The economic valuation showed that for the 60-meter, 90-meter and 120-meter riparian forest buffers, the benefit:cost ratios were the same, 0.269:1. The highest benefit:cost ratio, 0.348:1, was from 50% filter strips. Although none of them was cost effective, compared with two selected engineering BMPs, the 60-meter forest buffers had the highest benefit:cost ratio among three riparian forest buffer designs.; This dissertation has demonstrated that the BASINS/HSPF is a very reliable and useful water quality and quantity assessment tool, and the replacement cost valuation method is able to effectively estimate both the costs and benefits of riparian land-use changes.
机译:众所周知,许多农业流域被养分和沉积物污染。但是,河岸走廊的土地利用变化可能是减轻面源污染的可行选择。另一方面,水质管理策略只有在经济上可行的情况下才会成功。本文的研究重点是通过创建和应用综合建模方法来量化河岸缓冲带土地利用变化对俄亥俄州小迈阿密河流域的水文和水质的生态和经济影响。基于ArcView GIS的美国EPA BASINS / HSPF模型在1980-1993年期间使用本地DEM,气候,土地利用,流量和水质数据进行了校准和验证。采用替代成本法,根据污水处理厂脱氮除磷的成本估算河岸森林缓冲区的价值。结果表明,在60米,90米和120米的河岸森林和湿地缓冲区中,年平均流量减少了0.26%-0.28%,亚硝酸盐和硝酸盐的年平均减少量为2.9%-6.1%,总磷降低3.2%-7.8%。还发现,在农田中,三种工程最佳管理实践(BMP),25%的滤纸,50%的滤纸和25%的草sw可以比河岸缓冲液获得相似或更好的营养缓解效果。经济价值评估显示,对于60米,90米和120米的河岸森林缓冲区,收益:成本比相同,为0.269:1。最高的效益:成本比为0.348:1,来自50%的滤纸条。尽管它们都不具有成本效益,但是与两个选定的工程BMP相比,60米的森林缓冲区在三种河岸森林缓冲区设计中具有最高的效益:成本比。本文表明,BASINS / HSPF是一种非常可靠和有用的水质和水量评估工具,替代成本评估方法能够有效地估算河岸土地利用变化的成本和收益。

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