Table 2

Relative differencesa of O3, NOx, O3 production, and destruction terms with respect to the base run. DOI: https://doi.org/10.1525/elementa.394.t2

Urban & Industrial areasRural areas

30% NOx decrease30% NOx & VOCs decrease30% NOx decrease30% NOx & VOCs decrease

O3 +3% 0% –1% –2%
NOx –36% –36% –34% –28%
$FO3$
${F_{{O_3}}}$

+9% –9% –14% –17%
$DO3$
${D_{{O_3}}}$

–9% –13% –12% –12%
$PO3$
${P_{{O_3}}}$

+13% –8% –15% –18%
$LNOx$
${L_{N{O_x}}}$

–19% –21% –36% –30%
OPE +40% +18% +32% +17%
Urban & Industrial areasRural areas

30% NOx decrease30% NOx & VOCs decrease30% NOx decrease30% NOx & VOCs decrease

O3 +3% 0% –1% –2%
NOx –36% –36% –34% –28%
$FO3$
${F_{{O_3}}}$

+9% –9% –14% –17%
$DO3$
${D_{{O_3}}}$

–9% –13% –12% –12%
$PO3$
${P_{{O_3}}}$

+13% –8% –15% –18%
$LNOx$
${L_{N{O_x}}}$

–19% –21% –36% –30%
OPE +40% +18% +32% +17%

a The relative difference between the base and sensitivity run is calculated as

$Difference = {\textstyle{{S - B} \over B}} \times 100\;(\%)$
⁠, where S indicates the sensitivity run and B indicates the base run value.

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