| Literature DB >> 35421484 |
Jorge Pey1, José Carlos Cerro2.
Abstract
In this work we investigate the variation in tropospheric ozone concentrations in south-western Europe in March and April 2020 in the context of COVID-19 disease, and to what extent the former situation was recovered one year after the pandemic outbreak. To carry this study, data from 15 regional background sites in Spain, from 2010 onwards, are used. Historic (2010-2019) and most recent tropospheric ozone concentrations are compared. March and April 2020 ozone concentrations declined over 15% in most cases, rising to 23-28% at sites facing the Mediterranean. Most of the decay was related to the reduction of hemispheric background concentrations, but those sites downwind continental emissions from the Iberian Peninsula and neighbouring countries experienced an additional lessening. By exploring O3 concentrations one year after, March and April 2021, the general decline with respect to 2010-2019 persist but its magnitude was substantially lessened with respect to the strict lockdown period. The pandemic situation unveiled that air pollution is not an endemic matter but it should be tackle with adequate actions. Ozone abatement plans for Mediterranean countries should need a pan-regional covenant in order to drop precursor emissions.Entities:
Keywords: Air quality; Long range transport; Mediterranean; Meteorology; Secondary pollutant
Mesh:
Substances:
Year: 2022 PMID: 35421484 PMCID: PMC8996448 DOI: 10.1016/j.scitotenv.2022.155162
Source DB: PubMed Journal: Sci Total Environ ISSN: 0048-9697 Impact factor: 10.753
Location and other information of the monitoring sites used in this study. Data from Galilea site corresponding to 2015 and 2016 have not been considered due to suspicious low values.
| Name site | Latitude | Longitude | Altitude (m a.s.l.) | Region | Type |
|---|---|---|---|---|---|
| Laza | 42,0616 | −74,089 | 767 | Galicia | Regional |
| El Maillo | 40,5697 | −62,239 | 1029 | Castilla y León | Regional |
| El Atazar | 40,9103 | −34,603 | 995 | Comunidad de Madrid | Regional |
| Cangas | 43,1808 | −65,503 | 330 | Asturias | Suburban |
| Tojos | 43,1528 | −42,531 | 605 | Cantabria | Regional |
| Valderejo | 42,8751 | −32,318 | 905 | Euskadi | Regional |
| Galilea | 42,3414 | −21,350 | 570 | La Rioja | Regional |
| Torrelisa | 42,2725 | 0,1065 | 1006 | Aragón | Regional |
| Pardines | 42,3123 | 22,139 | 1224 | Catalunya | Regional |
| Barcarrota | 38,4728 | −69,236 | 393 | Extremadura | EMEP |
| Zorita | 40,7350 | −0,1694 | 619 | ComunitatValenciana | Regional |
| Pinós | 38,4516 | −10,647 | 642 | ComunitatValenciana | Regional |
| Doñana | 37,0519 | −65,553 | 35 | Andalucía | EMEP |
| Viznar | 37,2372 | −35,342 | 1230 | Andalucía | EMEP |
| Can Llompart | 39,8408 | 30,280 | 25 | IllesBalears | Regional |
| Mahó | 39,8753 | 43,164 | 78 | IllesBalears | EMEP |
Fig. 1Top-maps: 10-year average ozone concentration (μg m−3) for March and April (2010–2019) over different regional background sites in Spain; central-maps: ozone variation (μg m−3) with respect to the 10-year average in March and April 2020; bottom maps: ozone variation (μg m−3) with respect to the 10-year average in March and April 2021.
NO2, O3 and Ox averages for different periods: 2010–2019, 2020 (lockdown) and 2021 (new normal), as well as absolute variations (Δ) of these parameters for March and April. All values in μg m−3.
| μg m−3 | March | April | |||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| NO2 | O3 | Ox | ΔNO2 | ΔO3 | ΔOx | NO2 | O3 | Ox | ΔNO2 | ΔO3 | ΔOx | ||
| Barcarrota | 2010–2019 | 1,82 | 59,4 | 61,2 | 1,79 | 55,7 | 57,5 | ||||||
| 2020 | 1,41 | 61,1 | 62,5 | −0,4 | 1,7 | 1,3 | 0,79 | 58 | 58,8 | −1 | 2,3 | 1,3 | |
| 2021 | 1,71 | 59,1 | 60,8 | −0,1 | −0,3 | −0,4 | 1,5 | 61,5 | 63 | −0,3 | 5,8 | 5,5 | |
| Doñana | 2010–2019 | 2,31 | 70,3 | 72,6 | 2,18 | 75,2 | 77,4 | ||||||
| 2020 | 2,85 | 69,7 | 72,5 | 0,5 | −0,6 | −0,1 | 2,17 | 75,4 | 77,6 | 0 | 0,3 | 0,2 | |
| 2021 | 2,16 | 65,6 | 67,7 | −0,1 | −4,7 | −4,8 | 2,48 | 70,3 | 72,8 | 0,3 | −4,9 | −4,6 | |
| Viznar | 2010–2019 | 3,94 | 87,1 | 91 | 3,29 | 94,8 | 98,1 | ||||||
| 2020 | 2,52 | 80,2 | 82,7 | −1,4 | −6,9 | −8,3 | 2,77 | 76 | 78,8 | −0,5 | −18,8 | −19,3 | |
| 2021 | 3,42 | 79,4 | 82,9 | −0,5 | −7,6 | −8,2 | 1,9 | 80,8 | 82,7 | −1,4 | −14,1 | −15,4 | |
| Zarra | 2010–2019 | 3,02 | 91,8 | 94,8 | 2,37 | 96,3 | 98,7 | ||||||
| 2020 | 0,87 | 74,2 | 75,1 | −2,1 | −17,6 | −19,7 | 0,49 | 86,8 | 87,3 | −1,9 | −9,5 | −11,4 | |
| 2021 | 1,1 | 84,5 | 85,6 | −1,9 | −7,2 | −9,2 | 0,91 | 88 | 88,9 | −1,5 | −8,3 | −9,8 | |
| Mahó | 2010–2019 | 4,02 | 90,9 | 94,9 | 3,04 | 94,7 | 97,7 | ||||||
| 2020 | 2,5 | 85,4 | 87,9 | −1,5 | −5,4 | −6,9 | 1,33 | 95 | 96,3 | −1,7 | 0,3 | −1,4 | |
| 2021 | 2,3 | 93,5 | 95,8 | −1,7 | 2,6 | 0,9 | 2,16 | 112 | 114,1 | −0,9 | 17,3 | 16,4 | |
Ozone averages for different periods: 2010–2019, 2020 (strict lockdown) and 2021 (new normal), during the 22 h–09 h and the 12 h–18 h intervals. Indication of the diurnal ozone formation (DOF) by difference between the two intervals. Variation of ozone concentrations between the historic average (2010–2019), and 2020 and 2021. All values in μg m−3.
| O3 aver. | March | March | March | Variation | Variation | April | April | April | Variation | Variation |
|---|---|---|---|---|---|---|---|---|---|---|
| Tojos | ||||||||||
| 22 h–9 h | 82,4 | 69,6 | 62,7 | −12,8 | −19,7 | 81,6 | 65,5 | 68,6 | −16,1 | −13,0 |
| 12 h–18 h | 91,0 | 80,1 | 71,3 | −10,9 | −19,7 | 95,3 | 76,0 | 81,5 | −19,4 | −13,9 |
| DOF | +8,6 | +10,5 | +8,6 | +1,9 | +0,0 | +13,7 | +10,5 | +12,9 | −3,3 | −0,9 |
| Torrelisa | ||||||||||
| 22 h–9 h | 81,1 | 75,6 | 74,4 | −5,5 | −6,7 | 80,0 | 66,6 | 80,8 | −13,5 | +0,8 |
| 12 h–18 h | 89,4 | 81,0 | 85,2 | −8,4 | −4,2 | 91,6 | 81,2 | 90,0 | −10,6 | +0,2 |
| DOF | +8,3 | +5,0 | +10,8 | −3,3 | +2,5 | +11,6 | +14,8 | +9,2 | +3,2 | −2,4 |
| Pardines | ||||||||||
| 22 h–9 h | 78,5 | 64,4 | 67,5 | −14,1 | −11,0 | 78,7 | 62,0 | 72,7 | −16,7 | −6,0 |
| 12 h–18 h | 92,3 | 78,9 | 84,1 | −13,4 | −8,2 | 96,0 | 81,8 | 90,0 | −14,2 | −6,0 |
| DOF | +13,7 | +14,5 | +16,6 | +0,8 | +2,9 | +17,2 | +19,8 | +17,3 | +2,6 | +0,1 |
| Zorita | ||||||||||
| 22 h–9 h | 51,6 | 48,6 | 47,3 | −3,0 | −4,3 | 56,2 | 40,4 | 52,8 | −15,9 | −3,4 |
| 12 h–18 h | 91,1 | 84,2 | 85,0 | −6,5 | −5,5 | 98,8 | 74,7 | 90,3 | −22,9 | −3,3 |
| DOF | +39,5 | +36,6 | +37,7 | −2,9 | −1,8 | +42,6 | +34,3 | +41,5 | −8,3 | −1,1 |
| C. Llompart | ||||||||||
| 22 h–9 h | 64,7 | 52,1 | 39,1 | −12,6 | −25,6 | 68,7 | 44,9 | 61,7 | −23,8 | −7,0 |
| 12 h–18 h | 90,6 | 71,5 | 61,1 | −19,1 | −29,5 | 100,3 | 69,6 | 90,0 | −30,7 | −10,3 |
| DOF | +25,9 | +19,4 | +22,0 | −6,5 | −3,9 | +31,6 | +29,7 | +28,3 | −6,9 | −3,3 |
Fig. 2Variation of the O3 background (in %) during March and April 2020 and 2021 with respect to historic 2010–2019 concentrations at selected sites. Data have been averaged from 22 h to 09 h local time.
Fig. 3% of ozone change in March and April 2020 (strict lockdown) and March and April 2021 with respect to 2010–2019 historic data.