Impact of temperature on oxidant photochemistry in urban, polluted rural and remote environments¶
Sillman, & Samson. (1995). Impact of temperature on oxidant photochemistry in urban, polluted rural and remote environments.
Cited by¶
1 citation across 1 artifact.
Each citation links to the sentence it supports in the citing article.
Domain-specific¶
- Urban Heat Island
- Air-quality science. Higher urban temperatures accelerate the photochemistry that forms ground-level ozone, so the heat island compounds smog episodes; heat-wave days are frequently also high-ozone days in cities
This sourceEstablishes the temperature dependence of ozone photochemistry — O3 rising with temperature in urban and polluted rural air, chiefly through PAN chemistry — without itself addressing the urban heat island or the co-occurrence of heat waves and ozone episodes.
- Air-quality science. Higher urban temperatures accelerate the photochemistry that forms ground-level ozone, so the heat island compounds smog episodes; heat-wave days are frequently also high-ozone days in cities
Verification¶
This reference passed the adversarial substantiation pipeline: it was checked to exist and to support the claim it is attached to. See how references were verified.
Registry ID ref:25eb1c3f5b30 · see in the full table