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Find Mercedes-Benz S Class Green Data:

Model Derivative Engine  
S-Class (W220) Saloon S280 2799cc More >
S-Class (W220) Saloon S320 3199cc More >
S-Class (W220) Saloon S320 CDI EU3 3222cc More >
S-Class (V220) Limousine S320 CDI EU3 3222cc More >
S-Class (W220) Saloon S320 CDI EU4 3222cc More >
S-Class (V220) Limousine S320 CDI EU4 3222cc More >
S-Class (W220) Saloon S350 3724cc More >
S-Class (V220) Limousine S350 3724cc More >
S-Class (W220) Saloon S430 4266cc More >
S-Class (V220) Limousine S430 4266cc More >
S-Class (W220) Saloon S500 4966cc More >
S-Class (V220) Limousine S500 4966cc More >
S Class (V220) Pullman S500 4966cc More >
S Class (V220) Pullman S500 4966cc More >
S Class (V220) Pullman S500 (ZEV) 4966cc More >
S-Class (W220) Saloon S55 AMG 5439cc More >
S-Class (V220) Limousine S55 AMG 5439cc More >
S-Class (W220) Saloon S600 5513cc More >
S-Class (V220) Limousine S600 5513cc More >
S Class (V220) Pullman S600 5513cc More >
S-Class (V220) Limousine S65 AMG 5980cc More >
The main exhaust gas pollutants and their effects are described in more detail below:

CO
Carbon Monoxide reduces the blood's Oxygen carrying capacity which can reduce availability of Oxygen to key organs. Extreme levels of exposure, such as might occur due to blocked flues in domestic boilers, can be fatal. At lower concentrations CO may pose a health risk, particularly to those suffering from heart disease.

NOx
Oxides of Nitrogen react in the atmosphere to form Nitrogen Dioxide (NO2) which can have adverse effects on health, particularly among people with respiratory illness. High levels of exposure have been linked with increased hospital admissions due to respiratory problems, while long term exposure may affect lung function and increase the response to allergens in sensitive people. NOx also contributes to smog formation, acid rain, can damage vegetation, contributes to ground level Ozone formation and can react in the atmosphere to form fine particles ('secondary particles').

Particles
Fine particles can have an adverse effect on human health, particularly among those with existing respiratory disorders. Particles have been associated with increased hospital admissions due to respiratory and cardiovascular problems, bringing forward the deaths of those suffering from respiratory illnesses and a reduction in life expectancy.

HC
Hydrocarbons, contribute to ground level Ozone formation leading to risk of damage to the human respiratory system. In addition, some kinds of HCs are carcinogenic and they are also indirect greenhouse gases.



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