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Diffusive CH4 Emissions From Agricultural Ditches Overshadow CH4 Sinks by Upland Fields

  • Wenxin Wu
  • , Zhifeng Yan*
  • , Mike Peacock
  • , Zhengkui Ge
  • , Xinhai Wei
  • , Yuanzhi Yao
  • , Desalegn Yayeh Ayal
  • , Guirui Yu
  • , Pete Smith
  • *此作品的通讯作者
  • Tianjin University
  • University of Waterloo
  • University of Liverpool
  • Swedish University of Agricultural Sciences
  • Addis Ababa University
  • CAS - Institute of Geographical Sciences and Natural Resources Research
  • University of Aberdeen

科研成果: 期刊稿件文章同行评审

摘要

Ditches are potentially important sources of methane (CH4) in agricultural regions, but their CH4 emissions are largely unknown due to data scarcity. Here, we investigated CH4 concentrations and diffusive fluxes across different ditches in the North China Plain (NCP), an extensive upland agricultural region with maize-wheat rotations, and well-constructed ditch systems. Based on intensive monthly and extensive regional surveys, we found that (mean ± SD) CH4 concentrations (11.42 ± 37.69 μmol L−1) and fluxes (344.7 ± 1,198.1 μmol m−2 h−1) in the agricultural ditches (ADs) showed high variability, primarily driven by spatial and temporal heterogeneity in nutrient and carbon inputs. On average, CH4 concentrations and fluxes were 3–12 times higher than those in the nearby agricultural-rural ditches (3.80 μmol L−1, 99.8 μmol m−2 h−1) and rivers (0.92 μmol L−1, 47.1 μmol m−2 h−1). Dissolved organic carbon (DOC) and ammonium (NH4+–N) were primary drivers of CH4 emissions in the ADs, highlighting the key role of nutrient and carbon inputs from surrounding fields. The annual diffusive CH4 emission from ADs in the NCP was estimated to be 1,836.3 ± 311.6 Gg CH4 yr−1 and 68.1 ± 7.3 Gg CH4 yr−1 based on the mean and median CH4 fluxes, respectively, acting as a significant source of CH4 emissions, despite large uncertainty. This emission overwhelmingly offsets the CH4 uptake by soils (i.e., −9.2 Gg CH4 yr−1) in the NCP, highlighting the necessity of including CH4 emissions from ADs in estimating CH4 budget from upland agricultural regions.

源语言英语
文章编号e2025JG009175
期刊Journal of Geophysical Research: Biogeosciences
130
11
DOI
出版状态已出版 - 11月 2025

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