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Carbon dynamics of temperate grassland ecosystems in China from 1951 to 2007: an analysis with a process-based biogeochemistry model

机译:1951-2007年中国温带草原生态系统碳动态:基于过程的生物地球化学模型分析

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摘要

Grasslands account for 40 % of the Chinese land area. About 80 % of the total grasslands are in the northern temperate zone. These grassland ecosystems provide goods and services to the local people and play an important role in the global carbon cycle. Remote sensing and ecosystem modeling approaches have been used to quantify the carbon budget of these grasslands. However, the intensive site measurements and meteorological data acquired in these ecosystems in the last few decades have not been adequately used to improve ecosystem model capabilities, in turn, better quantify their carbon budget. In this study an effort was made to examine the carbon budget and its spatial-temporal variation of the temperate grasslands in China from 1951 to 2007 using a process-based biogeochemistry model. It was found that the regional grasslands acted as a small carbon sink at 11.25 g C m~(-1) year~(-1) in the study area of 64.96 million hectares with a high inter-annual variability ranging from —124 to 122.7 g C m~(-1) year~(-1) during the study period. As a result, the temperate grasslands sequestered about 410 Tg C in their vegetation and soils during the study period. The carbon sink occurred in typical steppe in central Inner Mongolia within the 300-400 mm rainfall zone and forest steppe in central and western China. By contrast, forest steppe in northeastern China mainly acted as a carbon source. Three major ecosystem types of forest steppe, typical steppe and desert steppe account for 54, 34, and 12 % of the total sink (7.3 Tg C year~(-1)) during 1951-2007, respectively. Soil moisture and evapotranspiration had a dominant effect on carbon budget in the typical steppe and the forest steppe while both water conditions and nitrogen mineralization rate were the major factors in the desert steppe. At a decadal scale, the air temperature significantly increased by 0.4 °C and annual precipitation insignificantly decreased by 0.2 mm; the regional carbon sink increased by 2.2 Tg C per decade during the period 1951-2007. However, further sensitivity analysis suggests that the sink of temperate grasslands will be reduced if the climate gets warmer and drier during this century since the increasing net primary production does not keep up with the increase of heterotro-phic respiration.
机译:草原占中国国土面积的40%。总草地的大约80%位于北部温带地区。这些草原生态系统为当地人民提供商品和服务,并在全球碳循环中发挥重要作用。遥感和生态系统建模方法已用于量化这些草原的碳预算。然而,在过去的几十年中,在这些生态系统中获得的密集站点测量和气象数据尚未被充分用于改善生态系统模型的能力,从而无法更好地量化其碳预算。在这项研究中,我们尝试使用基于过程的生物地球化学模型研究1951年至2007年中国温带草原的碳收支及其时空变化。结果表明,在6,496万公顷的研究区域中,区域草原在11.25 g C m〜(-1)年〜(-1)处作为一个小的碳汇,年际变化较大,范围在—124至122.7之间。研究期间g C m〜(-1)年〜(-1)。结果,在研究期间,温带草原的植被和土壤中的碳固存量约为410 TgC。碳汇发生在内蒙古中部典型的草原,降雨量在300-400毫米之内,而中部和西部则是森林草原。相比之下,中国东北的森林草原主要是碳源。在1951年至2007年期间,森林草原的三种主要生态系统类型分别为总草原的总蓄积量(7.3 Tg C year〜(-1))的54%,34%和12%。在典型的草原和森林草原中,土壤水分和蒸散量对碳收支具有显着影响,而水分条件和氮矿化率都是沙漠草原的主要因素。在十年尺度上,气温显着升高了0.4°C,年降水量却显着下降了0.2 mm;在1951-2007年期间,该地区的碳汇每十年增加2.2 TgC。然而,进一步的敏感性分析表明,如果在本世纪气候变暖和干燥,温带草原的汇水区将减少,因为净初级生产力的增加不能跟异养呼吸的增加保持一致。

著录项

  • 来源
    《Environmental earth sciences》 |2013年第2期|521-533|共13页
  • 作者

    Xinghua Sui; Guangsheng Zhou;

  • 作者单位

    State Key Laboratory of Vegetation and Environmental Change, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China,Graduate School of Chinese Academy of Sciences, Beijing 100049, China;

    State Key Laboratory of Vegetation and Environmental Change, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China,Chinese Academy of Meteorological Sciences, China Meteorological Administration, Beijing 100081, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    temperate grassland; carbon budget; model; spatial-temporal variation; simulation;

    机译:温带草原碳预算;模型;时空变化;模拟;

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