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Are soils in urban ecosystems compacted? A citywide analysis

机译:城市生态系统中的土壤是否被压实?全市分析

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摘要

Soil compaction adversely influences most terrestrial ecosystem services on which humans depend. This global problem, affecting over 68 million ha of agricultural land alone, is a major driver of soil erosion, increases flood frequency and reduces groundwater recharge. Agricultural soil compaction has been intensively studied, but there are no systematic studies investigating the extent of compaction in urban ecosystems, despite the repercussions for ecosystem function. Urban areas are the fastest growing land-use type globally, and are often assumed to have highly compacted soils with compromised functionality. Here, we use bulk density (BD) measurements, taken to 14 cm depth at a citywide scale, to compare the extent of surface soil compaction between different urban greenspace classes and agricultural soils. Urban soils had a wider BD range than agricultural soils, but were significantly less compacted, with 12 per cent lower mean BD to 7 cm depth. Urban soil BD was lowest under trees and shrubs and highest under herbaceous vegetation (e.g. lawns). BD values were similar to many semi-natural habitats, particularly those underlying woody vegetation. These results establish that, across a typical UK city, urban soils were in better physical condition than agricultural soils and can contribute to ecosystem service provision.
机译:土壤压实会对人类赖以生存的大多数陆地生态系统服务产生不利影响。这一全球性问题仅影响超过6800万公顷的农业用地,是土壤侵蚀,增加洪水频率和减少地下水补给的主要驱动力。尽管已经对农业土壤压实进行了深入研究,但是尽管对生态系统功能产生了影响,但没有系统的研究来调查城市生态系统中压实的程度。城市地区是全球增长最快的土地利用类型,通常被认为具有高度致密的土壤且功能受到损害。在这里,我们使用在全市范围内达到14厘米深度的容积密度(BD)测量,比较了不同城市绿地类别与农业土壤之间表层土壤压实的程度。城市土壤的BD范围比农业土壤宽,但压实度却大大降低,平均BD到7厘米深度降低了12%。城市土壤BD在树木和灌木下最低,而在草木植被(例如草坪)下最高。 BD值与许多半自然生境相似,尤其是那些木质植被下的生境。这些结果表明,在一个典型的英国城市中,城市土壤的物理条件要比农业土壤更好,并且可以为生态系统服务的提供做出贡献。

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