Match each atmospheric pollutant or component in Column I with its corresponding chemical mode of action or environmental transformation mechanism in Column II.
- Carbon monoxide ()Binds irreversibly to in hemoglobin to form carboxyhemoglobin, preventing oxygen transport
- Sulfur dioxide ()Undergoes atmospheric oxidation to form an acid anhydride that causes structural degradation of trioxocarbonate(IV) minerals
- Chlorofluorocarbons ()Undergoes solar UV photolysis releasing chlorine radicals that catalytically decompose stratospheric ozone
- Nitrogen dioxide ()Absorbs solar radiation and dissociates into atomic oxygen, initiating ground-level ozone and photochemical smog formation
Cevap
Carbon monoxide matches with irreversible hemoglobin binding; Sulfur dioxide matches with oxidation to an acid anhydride causing limestone corrosion; Chlorofluorocarbons match with UV-induced photolysis producing chlorine radicals; Nitrogen dioxide matches with solar photolysis initiating photochemical smog.
Each atmospheric pollutant is accurately matched to its chemical mechanism: carbon monoxide forms carboxyhemoglobin in blood, sulfur dioxide forms acid anhydrides causing marble/limestone corrosion, chlorofluorocarbons generate ozone-depleting chlorine radicals under UV radiation, and nitrogen dioxide photolyzes in sunlight to drive photochemical smog formation.
Adım Adım Çözüm
Anahtar Kavram
Chemical transformations and atmospheric impacts of primary air pollutants