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Tree Productivity Enhanced with Conversion from Forest to Urban Land Covers

机译:从森林到城市土地覆盖的转变提高了树木的生产力

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摘要

Urban areas are expanding, changing the structure and productivity of landscapes. While some urban areas have been shown to hold substantial biomass, the productivity of these systems is largely unknown. We assessed how conversion from forest to urban land uses affected both biomass structure and productivity across eastern Massachusetts. We found that urban land uses held less than half the biomass of adjacent forest expanses with a plot level mean biomass density of 33.5 ± 8.0 Mg C ha-1. As the intensity of urban development increased, the canopy cover, stem density, and biomass decreased. Analysis of Quercus rubra tree cores showed that tree-level basal area increment nearly doubled following development, increasing from 17.1 ± 3.0 to 35.8 ± 4.7 cm2 yr-1. Scaling the observed stem densities and growth rates within developed areas suggests an aboveground biomass growth rate of 1.8 ± 0.4 Mg C ha-1 yr-1, a growth rate comparable to nearby, intact forests. The contrasting high growth rates and lower biomass pools within urban areas suggest a highly dynamic ecosystem with rapid turnover. As global urban extent continues to grow, cities consider climate mitigation options, and as the verification of net greenhouse gas emissions emerges as critical for policy, quantifying the role of urban vegetation in regional-to-global carbon budgets will become ever more important.
机译:城市面积正在扩大,改变了景观的结构和生产力。虽然一些城市地区已显示出拥有大量生物质,但这些系统的生产力在很大程度上尚不清楚。我们评估了从森林到城市土地用途的转换如何影响马萨诸塞州东部的生物量结构和生产力。我们发现城市土地利用所占的生物量不到相邻森林大片的一半,其地块平均生物密度为33.5±8.0 Mg C ha -1 。随着城市发展强度的增加,冠层覆盖率,茎密度和生物量均下降。栎树树芯的分析表明,树水平的基础面积增加随着发育而几乎翻倍,从17.1±3.0增加到35.8±4.7 cm 2 yr -1 。缩放发达区域内观察到的茎密度和生长速率,表明地上生物量生长速率为1.8±0.4 Mg C ha -1 yr -1 ,原始森林。相比之下,城市地区的高增长率和较低的生物量池表明,生态系统高度动态,周转迅速。随着全球城市范围的持续增长,城市正在考虑采用减缓气候变化的方案,并且随着对温室气体净排放量的核查成为政策的关键,量化城市植被在区域到全球碳预算中的作用将变得越来越重要。

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