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Nutrient concentration in sediments accumulated in pre-treatment basins of urban LID technologies

机译:城市盖技术前处理盆地沉积物中养分浓度

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In this study, the contribution of pre-treatment basins of low impact development (LID) technologies to nutrient reduction performance was evaluated by understanding the distribution of nutrient in sediments accumulated in each system. The captured sediments were mostly silt to medium sand ranging from 9% to 92% of the sediments collected. Greater average N and P concentrations were found in silt particles amounting to 345 mg/kg and 696 mg/kg, respectively compared to sand and gravel. Although, N concentrations in accumulated sediments were found to be highly variable at different particle sizes (CV: 0.24 to 0.77) compared to P concentration (CV: 0.08 to 0.36) attributed to effective P treatment mechanism through deposition compared to complex nitrogen removal mechanisms. In addition, the difference between N and P concentrations of sediments collected in the pre-treatment basins of LID technologies and in-situ soil was attributed to the continuous pollutant input to the LID technologies during storm events. The study proved that pre-treatment basins of stormwater LID technologies reinforced the nutrient removal performances through sediment retention. The findings of this research may be used to design pre-treatment basins of LID technologies considering nutrients as a limiting factor.
机译:在这项研究中,通过了解每种系统中累积的沉积物中营养素的分布来评估低抗冲布开发(盖子)技术对营养减少性能的贡献。捕获的沉积物大多是淤泥到中等砂,从收集的沉积物的9%至92%。在淤泥颗粒中发现较大的平均N和P浓度,其含量为345mg / kg和696mg / kg,分别与砂和砾石相比。尽管与P浓度(CV:0.08至0.36)相比,累积沉积物中的N浓度在不同粒度(CV:0.24至0.77)上是高度可变的,但与复合氮去除机制相比,通过沉积归因于有效的P处理机制。此外,在盖子技术的预处理盆地和原位土壤中收集的N和P浓度之间的差异归因于风暴事件期间对盖子技术的连续污染物输入。该研究证明,雨水盖技术的预处理盆地通过沉积物保留加强了营养去除性能。该研究的发现可用于设计考虑营养素作为限制因素的盖子技术的预处理盆地。

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