Literature DB >> 24762538

Faster decomposition under increased atmospheric CO₂ limits soil carbon storage.

Kees Jan van Groenigen1, Xuan Qi, Craig W Osenberg, Yiqi Luo, Bruce A Hungate.   

Abstract

Soils contain the largest pool of terrestrial organic carbon (C) and are a major source of atmospheric carbon dioxide (CO2). Thus, they may play a key role in modulating climate change. Rising atmospheric CO2 is expected to stimulate plant growth and soil C input but may also alter microbial decomposition. The combined effect of these responses on long-term C storage is unclear. Combining meta-analysis with data assimilation, we show that atmospheric CO2 enrichment stimulates both the input (+19.8%) and the turnover of C in soil (+16.5%). The increase in soil C turnover with rising CO2 leads to lower equilibrium soil C stocks than expected from the rise in soil C input alone, indicating that it is a general mechanism limiting C accumulation in soil.

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Year:  2014        PMID: 24762538     DOI: 10.1126/science.1249534

Source DB:  PubMed          Journal:  Science        ISSN: 0036-8075            Impact factor:   47.728


  24 in total

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4.  Soil respiration characteristics in different land uses and response of soil organic carbon to biochar addition in high-latitude agricultural area.

Authors:  Wei Ouyang; Xiaojun Geng; Wejia Huang; Fanghua Hao; Jinbo Zhao
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5.  Structural and functional changes in coffee trees after 4 years under free air CO2 enrichment.

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6.  A meta-analysis of 1,119 manipulative experiments on terrestrial carbon-cycling responses to global change.

Authors:  Jian Song; Shiqiang Wan; Shilong Piao; Alan K Knapp; Aimée T Classen; Sara Vicca; Philippe Ciais; Mark J Hovenden; Sebastian Leuzinger; Claus Beier; Paul Kardol; Jianyang Xia; Qiang Liu; Jingyi Ru; Zhenxing Zhou; Yiqi Luo; Dali Guo; J Adam Langley; Jakob Zscheischler; Jeffrey S Dukes; Jianwu Tang; Jiquan Chen; Kirsten S Hofmockel; Lara M Kueppers; Lindsey Rustad; Lingli Liu; Melinda D Smith; Pamela H Templer; R Quinn Thomas; Richard J Norby; Richard P Phillips; Shuli Niu; Simone Fatichi; Yingping Wang; Pengshuai Shao; Hongyan Han; Dandan Wang; Lingjie Lei; Jiali Wang; Xiaona Li; Qian Zhang; Xiaoming Li; Fanglong Su; Bin Liu; Fan Yang; Gaigai Ma; Guoyong Li; Yanchun Liu; Yinzhan Liu; Zhongling Yang; Kesheng Zhang; Yuan Miao; Mengjun Hu; Chuang Yan; Ang Zhang; Mingxing Zhong; Yan Hui; Ying Li; Mengmei Zheng
Journal:  Nat Ecol Evol       Date:  2019-08-19       Impact factor: 15.460

7.  A trade-off between plant and soil carbon storage under elevated CO2.

Authors:  C Terrer; R P Phillips; B A Hungate; J Rosende; J Pett-Ridge; M E Craig; K J van Groenigen; T F Keenan; B N Sulman; B D Stocker; P B Reich; A F A Pellegrini; E Pendall; H Zhang; R D Evans; Y Carrillo; J B Fisher; K Van Sundert; Sara Vicca; R B Jackson
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Journal:  Glob Chang Biol       Date:  2021-11-08       Impact factor: 13.211

9.  Global variation in soil carbon sequestration potential through improved cropland management.

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Journal:  Glob Chang Biol       Date:  2021-11-12       Impact factor: 13.211

10.  Promotion of flavonoid biosynthesis in leaves and calli of ornamental crabapple (Malus sp.) by high carbon to nitrogen ratios.

Authors:  Huihua Wan; Jie Zhang; Tingting Song; Ji Tian; Yuncong Yao
Journal:  Front Plant Sci       Date:  2015-09-01       Impact factor: 5.753

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