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April 24, 2026Nature Communications2 citationsOpen Access

Persistence and turnover of soil organic carbon in global drylands

HWHui WangFMFernando T. MaestreNLNan Lu

Key Points

  • The research aims to quantify the age and turnover of soil organic carbon in dryland ecosystems.
  • Measured radiocarbon at 97 dryland sites across six continents
  • Analyzed CO2 released from soil respiration
  • Identified relationships between aridity, net primary productivity, and SOC content
  • Mean age of bulk SOC is approximately 2100 years, while respired CO2 averages around 520 years
  • Older carbon is not as chemically or physically protected as previously believed
  • Abrupt shifts to older carbon are observed beyond an aridity threshold of ~0.87

Abstract

Abstract Reliable predictions of dryland carbon fluxes require understanding the persistence and turnover of soil organic carbon (SOC). We measure radiocarbon to quantify the age of SOC and CO 2 released from soil respiration at 97 dryland sites across six continents. Here we show that bulk SOC contains little C fixed in the past 60 years, while respired CO 2 originates from both bomb-derived recent C and millennia-old C, challenging the idea that old C is chemically or physically protected. Radiocarbon suggests mean ages of ~2100 years for bulk SOC and ~520 years for respired CO 2 , the latter far older than machine-learning (<50 years) or Earth system models predict. Aridity, net primary productivity, and SOC content are dominant predictors for radiocarbon signatures, with abrupt shifts to older C beyond an aridity threshold of ~0.87. Our findings underscore the need to incorporate the vulnerability of older carbon into models and land management strategies.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69eb0a66553a5433e34b4758https://doi.org/10.1038/s41467-026-70623-9
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