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气候变化和土地利用/土地覆盖变化(LUCC)导致中国安徽省净初级生产力的空间转移。

Climate change and Land Use/Land Cover Change (LUCC) leading to spatial shifts in net primary productivity in Anhui Province, China.

机构信息

Department of Civil Engineering, Tongling University, Tongling, China.

Spatial Information Acquisition and Application Joint Laboratory of Anhui Province, Tongling, China.

出版信息

PLoS One. 2024 Sep 6;19(9):e0307516. doi: 10.1371/journal.pone.0307516. eCollection 2024.

Abstract

As an important part of terrestrial carbon cycle research, net primary productivity is an important parameter to evaluate the quality of terrestrial ecosystem and plays an important role in the analysis of global climate change and carbon balance. Anhui Province is in the Yangtze River Delta region in eastern China. Based on the theoretical basis of CASA model, this paper uses MODIS NDVI, vegetation type data, meteorological data, and LUCC to estimate the NPP of Anhui Province during 2001-2020 and analyzes its spatial-temporal pattern. The results showed that the average NPP in Anhui province was 508.95 gC· (m2 ·a) -1, and the spatial heterogeneity of NPP was strong, and the high value areas were mainly distributed in the Jiangnan Mountains and Dabie Mountains. NPP increased in most areas of Anhui Province, but decreased significantly in 17.60% of the area, mainly in the central area affected by urban and rural expansion and the transformation of the Yangtze River. The dynamic change of NPP in Anhui province is the result of climate change and land use change. Meteorological data are positively correlated with NPP. Among them, the correlation between temperature and solar radiation is higher, and the correlation between NPP and precipitation is the lowest among the three. The NPP of all land cover types was more affected by temperature than precipitation, especially forest land and grassland. The decrease of cultivated land and the increase of Artificial Surfaces (AS) may have contributed to the decrease of NPP in Anhui Province. Human activities have weakened the increase in NPP caused by climate change. In conclusion, this study refined the drivers of spatial heterogeneity of NPP changes in Anhui province, which is conducive to rational planning of terrestrial ecosystems and carbon balance measures.

摘要

作为陆地碳循环研究的重要组成部分,净初级生产力是评价陆地生态系统质量的重要参数,在全球气候变化和碳平衡分析中发挥着重要作用。安徽省位于中国东部的长江三角洲地区。本文基于 CASA 模型的理论基础,利用 MODIS NDVI、植被类型数据、气象数据和土地利用/覆被变化(LUCC),估算了 2001-2020 年安徽省的 NPP,并分析了其时空格局。结果表明,安徽省平均 NPP 为 508.95 gC·(m2·a)-1,NPP 空间异质性较强,高值区主要分布在江南丘陵和大别山地区。安徽省大部分地区的 NPP 呈增加趋势,但有 17.60%的区域明显减少,主要集中在受城乡扩张和长江转换影响的中部地区。安徽省 NPP 的动态变化是气候变化和土地利用变化的结果。气象数据与 NPP 呈正相关。其中,温度与太阳辐射的相关性较高,而与降水的相关性最低。所有土地覆盖类型的 NPP 受温度的影响大于降水,尤其是林地和草地。耕地减少和人工表面(AS)增加可能导致安徽省 NPP 下降。人类活动削弱了气候变化导致的 NPP 增加。总之,本研究细化了安徽省 NPP 变化空间异质性的驱动因素,有利于陆地生态系统的合理规划和碳平衡措施。

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