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Plant Feedback Aggravates Soil Organic Carbon Loss Associated With Wind Erosion in Northwest China

  • Lingjie Lei
  • , Kesheng Zhang
  • , Xuanze Zhang
  • , Ying Ping Wang
  • , Jianyang Xia
  • , Shilong Piao
  • , Dafeng Hui
  • , Mingxing Zhong
  • , Jingyi Ru
  • , Zhenxing Zhou
  • , Hongquan Song
  • , Zhongling Yang
  • , Dong Wang
  • , Yuan Miao
  • , Fan Yang
  • , Bin Liu
  • , Ang Zhang
  • , Mengyang Yu
  • , Xianghui Liu
  • , Yongheng Song
  • Lili Zhu, Shiqiang Wan*
*此作品的通讯作者
  • Henan University
  • East China Normal University
  • CSIRO
  • CAS - South China Institute of Botany
  • Peking University
  • Chinese Academy of Sciences
  • CAS - Institute of Tibetan Plateau Research
  • Tennessee State University
  • Hebei University

科研成果: 期刊稿件文章同行评审

摘要

Soil organic carbon (SOC) loss caused by wind erosion can profoundly impact carbon (C) balance in arid and semiarid regions. Nevertheless, previous researches mainly focused on the direct effect of wind erosion through removing surface soil only but ignored its indirect effects associated with soil nitrogen (N) loss and subsequent reductions of plant productivity. To better understand the wind erosion effect on SOC storage, we conducted a large-scale field experiment by manipulating wind erosion at 371 sites in arid and semiarid regions of northwest China from 2014 to 2016. We further integrated an observation-based empirical equation of wind erosion process into a terrestrial biogeochemical model to evaluate the direct and indirect effects of wind erosion on SOC storage in northwest China. The observed results showed that direct SOC losses increased linearly with the square of wind speed but decreased nonlinearly with soil water content. Over the 34 years (1980–2013), simulated cumulative SOC losses associated with wind erosion in northwest China were 27.47 Tg C, among which the indirect effects contributed to 2.68 Tg C (9.76%). The indirect effect of wind erosion initially enhanced SOC storage by decreasing heterotrophic respiration from 1984 to 1988 but decreased SOC pool by reducing net primary productivity due to soil N loss under the long-term wind erosion scenario. This work, for the first time, quantified the indirect impact of wind erosion on SOC storage via feedback of suppressed plant productivity, which is crucial for the convincing assessment on SOC storage in arid and semiarid regions.

源语言英语
页(从-至)825-839
页数15
期刊Journal of Geophysical Research: Biogeosciences
124
4
DOI
出版状态已出版 - 4月 2019

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