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Impacts of land use changes on net ecosystem production in the Taihu Lake Basin of China from 1985 to 2010

机译:1985〜2010年中国太湖流域土地利用变化对净生态系统生产的影响

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摘要

Land use changes play a major role in determining sources and sinks of carbon at regional and global scales. This study employs a modified Global biome model-biogeochemical cycle model to examine the changes in the spatiotemporal pattern of net ecosystem production (NEP) in the Taihu Lake Basin of China during 1985–2010 and the extent to which land use change impacted NEP. The model is calibrated with observed NEP at three flux sites for three dominant land use types in the basin including cropland, evergreen needleleaf forest, and mixed forest. Two simulations are conducted to distinguish the net effects of land use change and increasing atmospheric concentrations of CO₂ and nitrogen deposition on NEP. The study estimates that NEP in the basin decreased by 9.8% (1.57 Tg C) from 1985 to 2010, showing an overall downward trend. The NEP distribution exhibits an apparent spatial heterogeneity at the municipal level. Land use changes during 1985–2010 reduced the regional NEP (3.21 Tg C in year 2010) by 19.9% compared to its 1985 level, while the increasing atmospheric CO₂ concentrations and nitrogen deposition compensated for a half of the total carbon loss. Critical measures for regulating rapid urban expansion and population growth and reinforcing environment protection programs are recommended to increase the regional carbon sink.
机译:土地用途的变化在确定区域和全球规模的碳源和碳汇中起着重要作用。本研究采用改良的全球生物群落模型-生物地球化学循环模型研究了1985-2010年中国太湖流域净生态系统生产(NEP)的时空格局变化以及土地利用变化对NEP的影响程度。该模型使用观测到的NEP在流域的三种主要土地利用类型(包括农田,常绿针叶林和混交林)上进行了校准。进行了两个模拟,以区分土地利用变化和大气中二氧化碳浓度和氮沉降对NEP的增加的净影响。研究估计,从1985年到2010年,流域的NEP下降了9.8%(1.57 Tg C),显示出总体下降趋势。 NEP分布在市政一级表现出明显的空间异质性。 1985-2010年期间的土地利用变化使该地区的NEP(2010年为3.21 Tg C)与1985年的水平相比降低了19.9%,而大气中CO 2浓度的增加和氮的沉积弥补了总碳损失的一半。建议采取关键措施来规范城市的快速扩张和人口增长,并加强环境保护计划,以增加区域碳汇。

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