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Aboveground biomass of the alpine shrub ecosystems in Three-River Source Region of the Tibetan Plateau

机译:青藏高原三河源区高山灌木生态系统地上生物量

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摘要

Though aboveground biomass (AGB) has an important contribution to the global carbon cycle,the information about storage and climatic effects of AGB is scare in Three-River Source Region (TRSR) shrub ecosystems.This study investigated AGB storage and its climatic controls in the TRSR alpine shrub ecosystems using data collected from 23 sites on the Tibetan Plateau from 2011 to 2013.We estimated the AGB storage (both shrub layer biomass and grass layer biomass) in the alpine shrubs as 37.49 Tg,with an average density of 1447.31 g m-2.Biomass was primarily accumulated in the shrub layer,which accounted for 92% of AGB,while the grass layer accounted for only 8%.AGB significantly increased with the mean annual temperature (P < 0.05).The effects of the mean annual precipitation on AGB were not significant.These results suggest that temperature,rather than precipitation,has significantly effects on of aboveground vegetation growth in the TRSR alpine shrub ecosystems.The actual and potential increase in AGB density was different due to global warming varies among different regions of the TRSR.We conclude that long-term monitoring of dynamic changes is necessary to improve the accuracy estimations of potential AGB carbon sequestration across the TRSR alpine shrub ecosystems.
机译:尽管地上生物量(AGB)对全球碳循环有重要贡献,但在三河源区(TRSR)灌木生态系统中,关于AGB的存储和气候影响的信息仍然很少。本研究调查了AGB的存储及其在气候变化中的气候控制。利用2011年至2013年青藏高原23个站点采集的数据,得出TRSR高山灌木生态系统。我们估算高寒灌木的AGB储量(灌木层生物量和草层生物量)为37.49 Tg,平均密度为1447.31 g m -2。生物量主要积累在灌木层中,占AGB的92%,而草层仅占8%。AGB随年平均温度显着增加(P <0.05)。结果表明,温度而非降水对TRSR高山灌木生态系统地上植被的生长有显着影响。由于TRSR不同区域之间全球变暖的不同,AGB密度的增加也有所不同。我们得出结论,对动态变化进行长期监测对于提高TRSR高山灌木生态系统中潜在AGB碳固存的准确性估算是必要的。

著录项

  • 来源
    《山地科学学报(英文版)》 |2018年第2期|357-363|共7页
  • 作者单位

    Key Laboratory of Tibetan Medicine Research, Northwest Institute of Plateau Biology, Chinese Academy of Science, Xining 810008, China;

    Qinghai Key Laboratory of Qing-Tibet Plateau Biological Resources, Xining 81008, China;

    University of Chinese Academy of Sciences, Beijing 100049, China;

    Key Laboratory of Tibetan Medicine Research, Northwest Institute of Plateau Biology, Chinese Academy of Science, Xining 810008, China;

    Qinghai Key Laboratory of Qing-Tibet Plateau Biological Resources, Xining 81008, China;

    Key Laboratory of Tibetan Medicine Research, Northwest Institute of Plateau Biology, Chinese Academy of Science, Xining 810008, China;

    Qinghai Key Laboratory of Qing-Tibet Plateau Biological Resources, Xining 81008, China;

    University of Chinese Academy of Sciences, Beijing 100049, China;

    Key Laboratory of Tibetan Medicine Research, Northwest Institute of Plateau Biology, Chinese Academy of Science, Xining 810008, China;

    Qinghai Key Laboratory of Qing-Tibet Plateau Biological Resources, Xining 81008, China;

    University of Chinese Academy of Sciences, Beijing 100049, China;

    Institute of Qinghai Meteorological Science Research, Xining 810001, China;

    Key Laboratory of Tibetan Medicine Research, Northwest Institute of Plateau Biology, Chinese Academy of Science, Xining 810008, China;

    Qinghai Key Laboratory of Qing-Tibet Plateau Biological Resources, Xining 81008, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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