Nitrite stimulates HONO and NOx but not N2O emissions in Chinese agricultural soils during nitrification

硝化作用 氮氧化物 环境化学 化学 土壤水分 一氧化二氮 亚硝酸盐 亚硝酸 硝基螺 氮气 农学 环境科学 硝酸盐 无机化学 土壤科学 燃烧 有机化学 生物
作者
Yingwei Song,Dianming Wu,Xiaotang Ju,Peter Dörsch,Mengdi Wang,Ruhai Wang,Xiaotong Song,Lingling Deng,Rui Wang,Zhiwei Gao,Haroon Haider,Lijun Hou,Min Liu,Yuanchun Yu
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:902: 166451-166451 被引量:2
标识
DOI:10.1016/j.scitotenv.2023.166451
摘要

The long-lived greenhouse gas nitrous oxide (N2O) and short-lived reactive nitrogen (Nr) gases such as ammonia (NH3), nitrous acid (HONO), and nitrogen oxides (NOx) are produced and emitted from fertilized soils and play a critical role for climate warming and air quality. However, only few studies have quantified the production and emission potentials for long- and short-lived gaseous nitrogen (N) species simultaneously in agricultural soils. To link the gaseous N species to intermediate N compounds [ammonium (NH4+), hydroxylamine (NH2OH), and nitrite (NO2-)] and estimate their temperature change potential, ex-situ dry-out experiments were conducted with three Chinese agricultural soils. We found that HONO and NOx (NO + NO2) emissions mainly depend on NO2-, while NH3 and N2O emissions are stimulated by NH4+ and NH2OH, respectively. Addition of 3,4-dimethylpyrazole phosphate (DMPP) and acetylene significantly reduced HONO and NOx emissions, while NH3 emissions were significantly enhanced in an alkaline Fluvo-aquic soil. These results suggested that ammonia-oxidizing bacteria (AOB) and complete ammonia-oxidizing bacteria (comammox Nitrospira) dominate HONO and NOx emissions in the alkaline Fluvo-aquic soil, while ammonia-oxidizing archaea (AOA) are dominant in the acidic Mollisol. DMPP effectively mitigated the warming effect in the Fluvo-aquic soil and the Ultisol. In conclusion, our findings highlight NO2- significantly stimulates HONO and NOx emissions from dryland agricultural soils, dominated by nitrification. In addition, subtle differences of soil NH3, N2O, HONO, and NOx emissions indicated different N turnover processes, and should be considered in biogeochemical and atmospheric chemistry models.
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