Isotopic constraint on the twentieth-century increase in tropospheric ozone.
basic_science · Level V
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- Record sourced from PubMed, PMID 31190014.
- Also identified by DOI 10.1038/s41586-019-1277-1.
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Abstract
Tropospheric ozone (O<sub>3</sub>) is a key component of air pollution and an important anthropogenic greenhouse gas<sup>1</sup>. During the twentieth century, the proliferation of the internal combustion engine, rapid industrialization and land-use change led to a global-scale increase in O<sub>3</sub> concentrations<sup>2,3</sup>; however, the magnitude of this increase is uncertain. Atmospheric chemistry models typically predict<sup>4-7</sup> an increase in the tropospheric O<sub>3</sub> burden of between 25 and 50 per cent since 1900, whereas direct measurements made in the late nineteenth century indicate that surface O<sub>3</sub> mixing ratios increased by up to 300 per cent<sup>8-10</sup> over that time period. However, the accuracy and diagnostic power of these measurements remains controversial<sup>2</sup>. Here we use a record of the clumped-isotope composition of molecular oxygen (<sup>18</sup>O<sup>18</sup>O in O<sub>2</sub>) trapped in polar firn and ice from 1590 to 2016 AD, as well as atmospheric chemistry model simulations, to constrain changes in tropospheric O<sub>3</sub> concentrations. We find that during the second half of the twentieth century, the proportion of <sup>18</sup>O<sup>18</sup>O in O<sub>2</sub> decreased by 0.03 ± 0.02 parts per thousand (95 per cent confidence interval) below its 1590-1958 AD mean, which implies that tropospheric O<sub>3</sub> increased by less than 40 per cent during that time. These results corroborate model predictions of global-scale increases in surface pollution and vegetative stress caused by increasing anthropogenic emissions of O<sub>3</sub> precursors<sup>4,5,11</sup>. We also estimate that the radiative forcing of tropospheric O<sub>3</sub> since 1850 AD is probably less than +0.4 watts per square metre, consistent with results from recent climate modelling studies<sup>12</sup>.
Medical subject headings
- Atmosphere
- Ozone