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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Carbon stocks and sequestration of stormwater bioretention/biofiltration basins
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Carbon stocks and sequestration of stormwater bioretention/biofiltration basins

机译:碳水储量和雨水生物灭菌/生物过滤盆地的封存

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摘要

Bioretention basins are a prominent type of vegetated stormwater infrastructure that provides various ecosystem services, such as carbon (C) sequestration. Despite the key role of organic matter in the performance of bioretention basins, there is little understanding of their C accumulation properties. Using detailed field studies, we investigated the spatial, temporal and vertical variation of C capture in the soil of 25 subtropical bioretention basins in Australia. A thirteen-year soil chronosequence was used to estimate C sequestration rate. It was observed that the bioretention basins displayed a spatially uniform depositional pattern of C in their ponding area. The mean areal C density of soil in the upper 20 cm was 3.8 +/- 0.3 kg Cm-2, from which 32% was associated with the top 5 cm of soil. There was a strong influence of age on C density only throughout the first top 20 cm of the soil profile with a C sequestration rate of 0.31 kg Cm-2 yr(-1). Carbon quickly accumulates in the top 5 cm layer while in the lower depths it accumulated at a more gradual rate. The results show that bioretention systems could be designed for the enhancement of their C sequestration potential, and amendments in their design, such as addition of a carbon source layer, are important for better managing carbon availability in the basins.
机译:Bioretentent盆地是一种突出的植被雨水基础设施,提供各种生态系统服务,如碳(C)封存。尽管有机物质在生物化盆地的表现中作用了关键作用,但对其C累积性能几乎没有了解。使用详细的实地研究,我们研究了澳大利亚25次亚热带生物盆地土壤中C捕获的空间,时间和垂直变化。使用13年的土壤计量时间来估算C螯合率。观察到,生物化盆地在其池塘区域中显示了一种空间均匀的C的沉积图案。 20厘米的平均土壤C密度为3.8 +/- 0.3kg cm-2,32%与土壤5厘米的土壤相关。在整个第一前20厘米的土壤曲线中,C密度的年龄有强烈影响,C螯合率为0.31kg cm-2 Yr(-1)。碳迅速在顶部5cm层中累积,而在较低的深度下,它以更逐渐速率累积。结果表明,生物化系统可以设计用于增强它们的C封存电位,并且在其设计中的修正,例如添加碳源层,对于更好地管理盆地中的碳可用性是重要的。

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