Abstract:
A fuel additive comprising a sol containing particles of at least one inorganic-metallic component and at least one organo-metallic component stabilized in a suitable hydrocarbon medium. The components are formed as a metal complex wherein the metallic element comprises at least one metal selected from the elements of Groups VIII to XI in the Periodic Table, preferably platinum, cobalt, nickel, copper, gold, rhodium or, most preferably, palladium. The organo component is an alkyl carboxylate, preferably acetate, and the inorganic component is derived from silicon, titanium, aluminum, and preferably silicate. The additive is preferably formed by (a) forming an aqueous solution of at least one metallic component; (b) forming a colloid of organo-metallic and inorganic-metallic components from said solution; and (c) extracting at least some of the metallic colloidal components from the aqueous solution using a suitable hydrocarbon medium under controlled PH, temperature and time.
Abstract:
A process which includes the steps of first collecting the green house gases, such as CO 2 , SO 2 , Nox, CO, emitted from a furnace where fossil fuels are burned; flowing the gases to a sequestration unit where the gases are cleaned and scrubbed; moving the scrubbed gases to a compressor for reducing the volume of the gases; introducing the gases into a plasma arc for ionizing the gases to charged components; providing a source of free electrons; capturing the free electrons in a dense free electron zone; introducing the charged components from the plasma arc into the dense free electron zone for rendering the ions into elemental fragments of carbon, oxygen gas, nitrogen, hydrocarbons, and other elemental components; collecting the elemental fragments of carbon and other elements; routing the oxygen gas to the furnace to provide oxygen to burn additional fossil fuels.
Abstract:
A process which includes the steps of first collecting the green house gases, such as CO2, SO2, Nox, CO, emitted from a furnace where fossil fuels are burned; flowing the gases to a sequestration unit where the gases are cleaned and scrubbed; moving the scrubbed gases to a compressor for reducing the volume of the gases; introducing the gases into a plasma arc for ionizing the gases to charged components; providing a source of free electrons; capturing the free electrons in a dense free electron zone; introducing the charged components from the plasma arc into the dense free electron zone for rendering the ions into elemental fragments of carbon, oxygen gas, nitrogen, hydrocarbons, and other elemental components; collecting the elemental fragments of carbon and other elements; routing the oxygen gas to the furnace to provide oxygen to burn additional fossil fuels.
Abstract:
Un proceso que incluye los pasos de primero recolectar los gases de invernadero tales como, CO2, SO2 Nox, CO, emitidos de un horno en donde se queman combustibles fosiles; fluir los gases a una unidad de secuestro en donde los gases se limpian y se frotan, moviendo los gases de frotacion a un compresor para reducir el volumen de los gases, introducir los gases en un arco de plasma para ionizar los gases en componentes con carga, proporcionar una fuente electrones libres; capturar los electrones libres en una zona densa de electrones libres, introducir los componentes con carga del arco de plasma dentro de la zona densa de electrones libres para producir los iones en fragmentos elementales de carbon, gas de oxigeno, nitrogeno, hidrocarburos y otros componentes elementales; recolectar los fragmentos elementales de carbon y otros elementos; enrutar el gas de oxigeno a un horno para proporcionar oxigeno para quemar los combustibles fosiles adicionales.