Diurnal and spatial variations of soil NOx fluxes in the northern steppe of China

J Environ Sci (China). 2015 Jun 1:32:54-61. doi: 10.1016/j.jes.2014.11.011. Epub 2015 Apr 2.

Abstract

NOx emissions from biogenic sources in soils play a significant role in the gaseous loss of soil nitrogen and consequent changes in tropospheric chemistry. In order to investigate the characteristics of NOx fluxes and factors influencing these fluxes in degraded sandy grasslands in northern China, diurnal and spatial variations of NOx fluxes were measured in situ. A dynamic flux chamber method was used at eight sites with various vegetation coverages and soil types in the northern steppe of China in the summer season of 2010. Fluxes of NOx from soils with plant covers were generally higher than those in the corresponding bare vegetation-free soils, indicating that the canopy plays an important role in the exchange of NOx between soil and air. The fluxes of NOx increased in the daytime, and decreased during the nighttime, with peak emissions occurring between 12:00 and 14:00. The results of multiple linear regression analysis indicated that the diurnal variation of NOx fluxes was positively correlated with soil temperature (P<0.05) and negatively with soil moisture content (P<0.05). Based on measurement over a season, the overall variation in NOx flux was lower than that of soil nitrogen contents, suggesting that the gaseous loss of N from the grasslands of northern China was not a significant contributor to the high C/N in the northern steppe of China. The concentration of NOx emitted from soils in the region did not exceed the 1-hr National Ambient Air Quality Standard (0.25 mg/m3).

Keywords: Desertification; Land-use change; N cycle; Nitrogen oxides.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Agriculture
  • China
  • Environmental Monitoring / methods*
  • Grassland*
  • Hydrogen-Ion Concentration
  • Kinetics
  • Nitrogen Oxides / analysis*
  • Soil / chemistry*
  • Soil / standards
  • Temperature
  • Water / analysis

Substances

  • Nitrogen Oxides
  • Soil
  • Water