System for storing an internal combustion engine exhaust gas liquid additive, the system comprising a tank for storing the additive and an “immersed” baseplate positioned through an opening made in the bottom wall of the tank, the baseplate comprising at least one orifice through which a system for
System for storing an internal combustion engine exhaust gas liquid additive, the system comprising a tank for storing the additive and an “immersed” baseplate positioned through an opening made in the bottom wall of the tank, the baseplate comprising at least one orifice through which a system for injecting the additive into the exhaust gases can be fed, and also incorporating at least one other active component of the storage system and/or of the injection system.
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1. A system for storing an internal combustion engine exhaust gas liquid additive, the system comprising: a plastic tank configured to store the additive, the additive being an aqueous urea solution, andan immersed plastic baseplate positioned through an opening made in the bottom wall of the tank,
1. A system for storing an internal combustion engine exhaust gas liquid additive, the system comprising: a plastic tank configured to store the additive, the additive being an aqueous urea solution, andan immersed plastic baseplate positioned through an opening made in the bottom wall of the tank, said baseplate comprising at least one orifice through which a system that injects said additive into the exhaust gases is fed, and also incorporating at least one other active component of at least one of the storage system and the injection system, wherein the baseplate includes a vertical wall that abuts a periphery of the opening made in the bottom wall of the tank. 2. The storage system according to claim 1, wherein the baseplate incorporates an additive heater. 3. The storage system according to claim 2, wherein the baseplate incorporates a level gauge. 4. The storage system according to claim 2, wherein the baseplate incorporates a sensor used to measure a characteristic of the additive. 5. A feed system for feeding a liquid additive into the exhaust gases of an internal combustion engine, said system comprising a storage system according to claim 2 and an injection system comprising at least one injection line and one injector. 6. The feed system according to claim 5, comprising a pump which is fixed to the baseplate. 7. The feed system according to claim 6, wherein an amount of additive delivered by the pump and not consumed by the injector is returned to the additive tank by a line known as the return line which is equipped with at least one of a pressure regulator and a pressure sensor which is/are incorporated into the baseplate. 8. The feed system according to claim 5, comprising a filter incorporated into or fixed onto the baseplate. 9. The feed system according to claim 5, wherein the baseplate incorporates a nipple that conveys the liquid additive to at least one of the injector and a nipple that returns unused liquid additive to the tank. 10. The feed system according to claim 5, wherein said system comprises a device that purges the injection line, and wherein the baseplate comprises a device that prevents liquid from the tank from returning to the injection line when the injection line has been purged. 11. The feed system according to claim 5, wherein the baseplate comprises a trap and a device of the venturi type allowing the trap to be fed from a tapping-off point in the tank. 12. The feed system according to claim 5, comprising a control unit and wherein at least one of the baseplate and the component incorporated into the latter comprises a connection to this control unit. 13. A method for manufacturing a storage system according to claim 2, wherein the storage tank is obtained by extrusion/blow-moulding plastic and wherein the baseplate is produced by injecting moulding plastic. 14. A system for storing an aqueous solution of urea, said system comprising: a tank to store the aqueous solution of urea; andan immersed baseplate positioned through an opening made in the bottom wall of the tank, said baseplate comprising at least one orifice through which a system that injects said aqueous solution of urea into exhaust gases is fed, and also incorporating at least one other active component of at least one of the storage system and the injection system, whereina filter is incorporated into or fixed onto the baseplate, said filter being arranged to convey filtered aqueous urea solution to said opening, whereinthe baseplate incorporates a heater,said tank is made of a plastic having a chemical resistance to the aqueous solution of urea, and the baseplate includes a vertical wall that abuts a periphery of the opening made in the bottom wall of the tank. 15. A system for storing an aqueous solution of urea, said system comprising: a tank to store the aqueous solution of urea; andan immersed baseplate positioned through an opening made in the bottom wall of the tank, said baseplate comprising at least one orifice through which a system that injects said aqueous solution of urea into exhaust gases is fed, and also incorporating at least one other active component of at least one of the storage system and the injection system, whereinsaid baseplate incorporates a heater,said baseplate is designed to form a compartment associated with the heater, and the baseplate includes a vertical wall that abuts a periphery of the opening made in the bottom wall of the tank.
Lothar Hofmann DE; Gunther Pajonk DE; Manfred Weigl DE; Gerhard Wissler DE, Method and device for the catalytic reduction of nitrogen oxides contained in the off-gas from a combustion system.
Tarabulski Theodore J. ; Knapper Curtis J. ; Peter-Hoblyn Jeremy D.,GBX ; Valentine James M., Reducing no.sub.x emissions from an engine by temperature-controlled urea injection for selective catalytic reduction.
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