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Microscale pH variations during drying of soils and desert biocrusts affect HONO and NH3 emissions

机译:土壤干燥和沙漠生物结皮过程中微尺度的pH变化会影响HONO和NH3的排放

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摘要

Microscale interactions in soil may give rise to highly localised conditions that disproportionally affect soil nitrogen transformations. We report mechanistic modelling of coupled biotic and abiotic processes during drying of soil surfaces and biocrusts. The model links localised microbial activity with pH variations within thin aqueous films that jointly enhance emissions of nitrous acid (HONO) and ammonia (NH3) during soil drying well above what would be predicted from mean hydration conditions and bulk soil pH. We compared model predictions with case studies in which reactive nitrogen gaseous fluxes from drying biocrusts were measured. Soil and biocrust drying rates affect HONO and NH3 emission dynamics. Additionally, we predict strong effects of atmospheric NH3 levels on reactive nitrogen gas losses. Laboratory measurements confirm the onset of microscale pH localisation and highlight the critical role of micro-environments in the resulting biogeochemical fluxes from terrestrial ecosystems.
机译:土壤中的微尺度相互作用可能会引起高度局部化的条件,从而不成比例地影响土壤氮的转化。我们报告了土壤表面和生物结皮干燥过程中生物和非生物过程耦合的机械模型。该模型将局部微生物活性与薄水膜中的pH值变化联系在一起,共同提高土壤干燥期间亚硝酸(HONO)和氨(NH3)的排放量,远高于从平均水合作用条件和土壤总体pH值可预测的水平。我们将模型预测与案例研究进行了比较,在案例研究中,测量了来自干燥生物结皮的反应性氮气流。土壤和生物结皮的干燥速率会影响HONO和NH3的排放动态。此外,我们预测了大气中NH3含量对反应性氮气损失的强烈影响。实验室测量结果证实了微尺度pH值定位的开始,并强调了微环境在陆地生态系统产生的生物地球化学通量中的关键作用。

著录项

  • 期刊名称 Nature Communications
  • 作者

    Minsu Kim; Dani Or;

  • 作者单位
  • 年(卷),期 -1(10),-1
  • 年度 -1
  • 页码 3944
  • 总页数 12
  • 原文格式 PDF
  • 正文语种
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