Method for producing fuel from plastic or rubber waste material
View Patent ↗A method for producing fuels such as liquid and solid fuels from waste materials comprising rubber or plastic waste, is disclosed. The method comprises the steps of: (a) grounding said waste material into chips or flakes, (b) transferring the chips or flakes via a transmission system to a viscous fluid disorder tank, (c) introducing a catalyst to the transferred chips or flakes in the tank, (d) heating the chips or flakes with catalyst using a heating jacket or a coil in a reservoir of the tank at a predetermined temperature, (e) mixing the molten chips or flakes with catalyst using a helical butterfly stirrer inside the reservoir at a predetermined time and temperature to decompose the waste material, and (f) filtering the decomposed waste material to produce the fuel. This method is simple, quick and economical for producing different characteristics of fuel without any environmental lesions and contamination.
1. A method for producing fuels from a waste material comprising rubber or plastic waste, comprising the steps of:
(a) grinding said waste material into chips or flakes;
(b) transferring the chips or flakes via a transmission system to a viscous fluid disorder tank;
(c) introducing a catalyst to the transferred chips or flakes in the tank;
(d) heating the chips or flakes with catalyst using a heating jacket or a coil in a reservoir of the tank at a predetermined temperature to form molten chips or flakes;
(e) mixing the molten chips or flakes with catalyst using a helical butterfly stirrer inside the reservoir at a predetermined time and temperature to decompose the waste material, and
(f) filtering the decomposed waste material to produce the fuels;
wherein the catalyst comprises calcium oxide, calcium carbonate, alcohol, mesitylene, p-xylene, cumene hydroperoxide, tricarbonyl(methylcyclopentadienyl) manganese, propylene benzene, reformate, and isobutanol.
2. The method of claim 1 , wherein the catalyst consists of calcium oxide, calcium carbonate, alcohol, mesitylene, p-xylene, cumene hydroperoxide, tricarbonyl(methylcyclopentadienyl) manganese, propylene benzene, reformate, and isobutanol.
3. The method of claim 1 , wherein the catalyst comprises 3% calcium oxide, 2% calcium carbonate, 20% alcohol, 10% mesitylene, 7% p-xylene, 5% cumene hydroperoxide, 5% tricarbonyl(methylcyclopentadienyl) manganese, 3% propylene benzene, 40% reformate, and 5% isobutanol, wherein the percentages stated are mass percentages.