首页> 外文期刊>Agricultural and Forest Meteorology >Analysis of spatial and temporal patterns of net primary production and their climate controls in China from 1982 to 2010
【24h】

Analysis of spatial and temporal patterns of net primary production and their climate controls in China from 1982 to 2010

机译:1982-2010年中国净初级生产的时空格局及其气候控制分析

获取原文
获取原文并翻译 | 示例
           

摘要

Ecosystem net primary production (NPP) represents vegetation biomass increment after accounting for autotrophic respiration and is recognized as an important component of the terrestrial carbon cycle. In this study, the spatial and temporal patterns of NPP and their climate controls in China's ecosystems for the period of 1982-2010 were analyzed by using a remote sensing-based carbon model (i.e., the Carnegie-Ames-Stanford Approach, CASA) and multiple statistical methods. Validation against NPP observations from 335 forests sites showed good performance of CASA over the study region, with an overall coefficient of determination (R-2) of 0.73 and root mean square error (RMSE) of 132.9 g Cm-2 yr(-1). Spatially, we found that the spatial pattern of China's NPP showed gradients decreasing from the southeast toward northwest, which could be mainly explained by the spatial variability in annual precipitation. Temporally, China's NPP showed a significant increasing trend at both the national and biome levels during 1982-2010, with an annual increase of 0.011 Pg C or 0.42%. However, the increasing trends in NPP were not continuous throughout the 29-year period at the national scale. On the other hand, it showed three periods where the trends changed, which was likely being caused by a shift in climate conditions and extensive drought. Air temperature was found to be the dominant climatic factor that controlled the interannual variability in NPP throughout the country except for arid and semi-arid regions in the middle-north and northwest parts of China, where the interannual variations in NPP were mainly explained by changes in precipitation. Similar results were also obtained at the seasonal scale that changes in NPP were generally controlled by that in air temperature except for summertime, in which higher NPP were favored by higher summer precipitation, whereas summer temperature was negatively correlated with NPP. At the monthly scale, NPP responded to change in temperature more rapidly than that in precipitation. However, temperature appeared to control NPP only in humid and semi-humid regions. For monthly NPP-precipitation relationship, the strongest positive relations were observed when NPP lagged behind precipitation by 1-3 months. However, deviating from the common hypothesis that plant in drier areas should respond to water availability more rapidly than in other regions, our analysis revealed a relative large time lag between monthly NPP and precipitation in arid ecosystems (i.e., 3 months). This result suggests that there may be a more complex mechanism of local water redistribution that controls vegetation water use (e.g., use of water from previous year precipitation) in extremely arid ecosystems. (C) 2015 Elsevier B.V. All rights reserved.
机译:生态系统净初级生产力(NPP)代表考虑自养呼吸后植被生物量的增加,被认为是陆地碳循环的重要组成部分。在这项研究中,通过使用基于遥感的碳模型(即卡内基-艾姆斯-斯坦福方法,CASA)分析了1982-2010年中国生态系统中NPP的时空格局及其气候控制。多种统计方法。对335个森林站点的NPP观测值进行的验证表明,该研究区域的CASA性能良好,总测定系数(R-2)为0.73,均方根误差(RMSE)为132.9 g Cm-2 yr(-1) 。在空间上,我们发现中国核电厂的空间格局呈现出从东南向西北逐渐减小的梯度,这主要可以由年降水量的空间变异性来解释。从时间上看,1982年至2010年期间,中国的NPP在国家和生物群落水平上均呈显着增长趋势,年均增加0.011 Pg C或0.42%。但是,在整个国家范围内的29年期间,核电厂的增长趋势并不连续。另一方面,它显示了趋势发生变化的三个时期,这很可能是由于气候条件的变化和广泛干旱造成的。除了中国中北部和西北部的干旱和半干旱地区以外,气温是控制全国NPP年际变化的主要气候因素,而NPP的年际变化主要通过变化来解释。在降水中。在季节性尺度上也获得了类似的结果,除夏季外,NPP的变化通常由气温控制,夏季除外,其中较高的NPP受较高的夏季降水量的影响,而夏季温度与NPP呈负相关。在月度尺度上,NPP对温度变化的响应比对降水的响应更快。但是,温度似乎只能控制湿润和半湿润地区的NPP。对于每月NPP降水关系,当NPP落后降水1-3个月时,观察到最强的正相关。但是,与通常的假设不同,较干燥的地区的植物对水的响应应比其他地区更快,我们的分析表明,每月NPP与干旱生态系统中的降水之间存在较大的时滞(即3个月)。该结果表明,在极端干旱的生态系统中,可能存在更复杂的局部水再分配机制,该机制控制着植被的用水(例如,前一年降水产生的水的使用)。 (C)2015 Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号