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废弃住宅用地的草坪土壤碳储量:部分人类-自然解耦后生态系统结构和功能的研究。

Lawn soil carbon storage in abandoned residential properties: an examination of ecosystem structure and function following partial human-natural decoupling.

机构信息

Virginia Commonwealth University, Department of Biology, Box 842012, 1000 W. Cary Street, Richmond, VA 23284-2012, USA.

出版信息

J Environ Manage. 2012 May 15;98:155-62. doi: 10.1016/j.jenvman.2011.12.028. Epub 2012 Jan 20.

DOI:10.1016/j.jenvman.2011.12.028
PMID:22266480
Abstract

Residential abandonment is on the rise in many urban areas, with unknown implications for ecosystem structure and function on land slated for partial or full restoration to native habitat. Partial decoupling of human and natural systems could reduce disturbance (e.g., trampling, recreational traffic) and modify vegetation structure in a way that alters soil carbon storage, an ecosystem function that many municipalities consider a management objective of growing importance. We quantified soil carbon percent and mass to 10 cm depth and examined vegetation structure in 50 vacant and 10 occupied residential lawns located in Richmond, VA, with the principal objective of determining whether occupancy status alters trajectories of soil carbon storage or its correspondence with household economic/demographic indicators and vegetation cover. Abandoned residential lawns supported significantly less grass cover, but these declines were largely offset by increases in emergent overstory (>1 m height) vegetation cover. Soil carbon percent and mass did not differ between lawns of occupied and abandoned residences, even though significant, but highly uncertain, increases in soil carbon mass occurred in the first decade following vacancy. Instead, all residential lawns exhibited similar significant increases in soil carbon percent and mass with increasing residence age and neighborhood affluence, the former indicating annual carbon accretion rates of 20 g m(-2). We conclude that in this early stage of vacancy, soil carbon storage is already subtly responding to declines in human intervention, with reduced soil disturbance and sustained vegetation cover in abandoned lawns playing likely roles in emerging soil carbon storage trajectories.

摘要

在许多城市地区,住宅废弃现象日益增多,这对计划进行部分或全部恢复原生栖息地的土地的生态系统结构和功能可能产生未知影响。人类和自然系统的部分脱钩可能会减少干扰(例如践踏、休闲交通),并改变植被结构,从而改变土壤碳储存,许多市政府认为这是一个越来越重要的管理目标。我们量化了 50 个废弃和 10 个居住住宅草坪的 10 厘米深度的土壤碳百分比和质量,并检查了植被结构,主要目的是确定居住状态是否会改变土壤碳储存的轨迹,或与家庭经济/人口指标和植被覆盖的对应关系。废弃的住宅草坪的草覆盖率明显较低,但这些下降在很大程度上被高出草层(>1 米高)植被覆盖的增加所抵消。尽管在闲置后的第一个十年中土壤碳质量显著增加,但存在很大的不确定性,但居住和废弃住宅的草坪之间的土壤碳百分比和质量没有差异。相反,所有住宅草坪的土壤碳百分比和质量都随着居住年限和社区富裕程度的增加而呈现出显著的增加,前者表明每年的碳积累速率为 20 克/平方米。我们的结论是,在这种早期的空缺阶段,土壤碳储存已经在微妙地对人类干预的减少做出反应,废弃草坪中减少的土壤干扰和持续的植被覆盖可能在新兴的土壤碳储存轨迹中发挥作用。

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