Ozone concentrations, flux and potential effect on yield during wheat growth in the Northwest-Shandong Plain of China

J Environ Sci (China). 2015 Aug 1:34:1-9. doi: 10.1016/j.jes.2014.12.022. Epub 2015 May 5.

Abstract

Ozone (O3) concentration and flux (Fo) were measured using the eddy covariance technique over a wheat field in the Northwest-Shandong Plain of China. The O3-induced wheat yield loss was estimated by utilizing O3 exposure-response models. The results showed that: (1) During the growing season (7 March to 7 June, 2012), the minimum (16.1 ppbV) and maximum (53.3 ppbV) mean O3 concentrations occurred at approximately 6:30 and 16:00, respectively. The mean and maximum of all measured O3 concentrations were 31.3 and 128.4 ppbV, respectively. The variation of O3 concentration was mainly affected by solar radiation and temperature. (2) The mean diurnal variation of deposition velocity (Vd) can be divided into four phases, and the maximum occurred at noon (12:00). Averaged Vd during daytime (6:00-18:00) and nighttime (18:00-6:00) were 0.42 and 0.14 cm/sec, respectively. The maximum of measured Vd was about 1.5 cm/sec. The magnitude of Vd was influenced by the wheat growing stage, and its variation was significantly correlated with both global radiation and friction velocity. (3) The maximum mean Fo appeared at 14:00, and the maximum measured Fo was -33.5 nmol/(m(2)·sec). Averaged Fo during daytime and nighttime were -6.9 and -1.5 nmol/(m(2)·sec), respectively. (4) Using O3 exposure-response functions obtained from the USA, Europe, and China, the O3-induced wheat yield reduction in the district was estimated as 12.9% on average (5.5%-23.3%). Large uncertainties were related to the statistical methods and environmental conditions involved in deriving the exposure-response functions.

Keywords: Cropland ecosystem; Deposition velocity; Eddy covariance; Ozone concentration; Ozone flux; Yield loss estimation.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Air Pollutants / analysis
  • Air Pollutants / toxicity*
  • Circadian Rhythm
  • Crops, Agricultural / drug effects*
  • Crops, Agricultural / growth & development
  • Environment
  • Environmental Monitoring*
  • Ozone / analysis
  • Ozone / toxicity*
  • Seasons
  • Triticum / drug effects*
  • Triticum / growth & development

Substances

  • Air Pollutants
  • Ozone