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A three-way catalytic converter on a gasoline-powered 1996 Dodge Ram Simulation of flow inside a catalytic converter. A catalytic converter is an exhaust emission control device which converts toxic gases and pollutants in exhaust gas from an internal combustion engine into less-toxic pollutants by catalyzing a redox reaction.
The main drawback of lean-burning is that a complex catalytic converter system is required to reduce NOx emissions. Lean-burn engines do not work well with modern 3-way catalytic converter —which require a pollutant balance at the exhaust port so they can carry out oxidation and reduction reactions—so most modern engines tend to cruise and ...
There is a light-off temperature from which catalytic converters start to be efficient and work properly. [7] Catalytic converters can cause back pressure if clogged or not designed for the required flow rate. In these situations, upgrading or removal of the catalytic converter can increase power at high revs.
Early models did not use any form of exhaust aftertreatment, such as a catalytic converter, as emissions were not enforced on diesel motors; however, by mid-year 2002, Ford began installing catalytic converters as part of the OEM exhaust as part of the Tier 1–3 standards. [4] [5]
1986–1987 Ford-Cosworth GBA engine—120° V6, 1.5 L (Formula One engine) 1986–2007 Vulcan V6 —60° pushrod V6 3.0 L, originally designed for the Taurus 1989–1995 SHO V6 3.0/3.2 L DOHC V6
The arrival of the Duratec-E engine in the fifth generation Fiesta range in 2002 signalled the end of the engine's use in production vehicles after a 44-year career, although the Valencia derivative remained in limited production in Brazil, as an industrial use engine by Ford's Power Products division, where it is known as the VSG-411 and VSG-413.
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