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Water quantity and quality changes from forested riparian buffer in Beijing

机译:北京森林河岸缓冲区的水量和质量变化

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As a transitional zone between aquatic and terrestrial ecosystems, the riparian buffer is an important control measure for non-point source pollution. The research presented here mainly discussed the interception efficiencies of different vegetation types for nitrogen and phosphorus pollution. The results showed that canopy, shrub, and grass interceptions basically accounted for about 80.0% of total interception, and therefore riparian buffer configurations should clearly distinguish three levels of vegetation types. (1) Canopy, shrub, grass, and litter interceptions of Pinus tabuliformis (YS) were the highest, up to about 71.1%. (2) Platycladus orientalis (CB) had the highest transportation and enrichment for the elements nitrogen (N) and phosphorus (P) throughout the process, which the value of TP decreased from 0.2 to 0.12 mg/L and the value of TN decreased from 5.0 to 2.5 mg/L. (3) The transportation of total phosphorus (TP) of the three tree specieswas higher than the transportation of total nitrogen (TN), showing that the enrichment of Pwas stronger than that of N. Thus, Pinus tabuliformis is the best configuration for rainfall interception, while Platycladus orientalis is the best configuration for N and P removals. Different forest configurations should also be considered to build a riparian buffer to remove nutrient in the future.
机译:作为水生和陆生态系统之间的过渡带,河岸缓冲区是非点源污染的重要控制措施。这里提出的研究主要讨论了氮和磷污染的不同植被类型的截取效率。结果表明,植物,灌木和草截面基本上占拦截的约80.0%,因此河岸缓冲区配置应清楚地区分植被类型。 (1)冠层,灌木,草,草和垃圾截取量最高,高达约71.1%。 (2)Platycladus Orientalis(CB)在整个过程中对元素氮(N)和磷(P)具有最高的运输和富集,TP的值从0.2%降至0.12 mg / L,并且TN的值下降5.0至2.5 mg / l。 (3)三棵树种类的总磷(TP)的运输高于总氮(TN)的运输,表明PWA的富集强于N的富集。因此,Pinus Tabulificis是降雨拦截的最佳配置,而platycladus orientalis是N和P Removals的最佳配置。还应考虑不同的森林配置来建立一个河岸缓冲区,以消除未来的营养素。

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