Aeration system for fuel additives
Abstract
An aeration system for fuel additives is used to aerate fuel additives prior to mixing with the fuel of a vehicle. In doing so, the overall effectiveness of the fuel additive may be improved. The system includes a bottle, a weighted block, an aerator, and an insertion tubing. The bottle is used to store a fuel additive and is mounted onto the weighted block. The weighted block is used to orient the bottle downwards so the fuel additive is able to pour out of the bottle. The aerator is used to aerate the fuel additive. The aerator is connected to the insertion tubing, which is used to transport the fuel additive to the tank of a vehicle. The system also includes a hanger which is used to position the bottle above the tank of a vehicle to ensure that the fuel additive flows into the tank of the vehicle.
Claims
exact text as granted — not AI-modifiedWhat is claimed is:
1 . An aeration system for fuel additives comprises:
a bottle; a hanger; a weighted block; an aerator; an insertion tubing; said weighted block comprises an internal conduit, a block inlet, and a block outlet; said bottle being mounted onto said weighted block; said hanger being laterally and pivotably connected to said weighted block; an opening of said bottle being in fluid communication with said block inlet; said internal conduit traversing through said weighted block from said block inlet to said block outlet; said block outlet being in fluid communication with said aerator; said aerator being in fluid communication with said insertion tubing;
2 . The aeration system for fuel additives as claimed in claim 1 comprises:
said aerator comprises a structural housing, a filter, and a first mesh;
said structural housing comprises a housing inlet and a housing outlet;
said filter being positioned adjacent to said housing inlet;
said first mesh being positioned across said housing outlet;
said filter and said first mesh being mounted within said structural housing;
said block outlet being in fluid communication with said housing inlet;
said housing inlet being in fluid communication with said housing outlet through said filter and said first mesh;
said housing outlet being in fluid communication with said insertion tubing;
3 . The aeration system for fuel additives as claimed in claim 2 comprises:
said structural housing further comprises a first housing portion, a second housing portion, and a disengageable interface;
said housing inlet being integrated into said first housing portion;
said housing outlet being integrated into said second housing portion;
said first housing portion and said second housing portion being hermetically connected adjacent to each other by said disengageable interface;
4 . The aeration system for fuel additives as claimed in claim 1 comprises:
an intermediate tubing;
said block outlet being in fluid communication with said aerator through said intermediate tubing;
5 . The aeration system for fuel additives as claimed in claim 1 comprises:
a second mesh;
said second mesh being positioned across said block outlet;
said second mesh being perimetrically mounted to said block outlet;
6 . A method of implementing the aeration system for fuel additives as claimed in claim 1 , the method comprises the steps of:
providing a quantity of liquid fuel additive, wherein said quantity of liquid fuel additive is initially retained within said bottle; providing a fuel filler neck for a vehicle; holding said weighted block by said hanger at a higher elevation off of the ground than said fuel filler neck; inserting said insertion tubing into said fuel filler neck; dispensing said quantity of liquid fuel additive from said bottle into said block inlet; guiding said quantity of liquid fuel additive from said block inlet, through said block outlet, and into said aerator; aerating said quantity of liquid fuel additive as said quantity of liquid fuel additive flows through said aerator; guiding said quantity of liquid fuel additive from said aerator, through said insertion tubing, and into said fuel filler neck; aerating said quantity of liquid fuel additive as said quantity of liquid fuel additive flows through said insertion tubing;
7 . The method of implementing the aeration system for fuel additives, the method as claimed in claim 6 comprises the steps of:
providing a filter and a first mesh for said aerator;
aerating said quantity of liquid fuel additive as said quantity of liquid fuel additive flows through said filter;
aerating said quantity of liquid fuel additive as said quantity of liquid fuel additive flows through said first mesh;
8 . The method of implementing the aeration system for fuel additives, the method as claimed in claim 6 comprises the steps of:
providing an intermediate tubing, wherein said block outlet is in fluid communication with said aerator through said intermediate tubing;
further aerating said quantity of liquid fuel additive as said quantity of liquid fuel additive flows through said intermediate tubing;
9 . The method of implementing the aeration system for fuel additives, the method as claimed in claim 6 comprises the steps of:
providing a second mesh, wherein said second mesh is positioned across said block outlet;
further aerating said quantity of liquid fuel additive as said quantity of liquid fuel additive flows through said second mesh;
10 . An aeration system for fuel additives comprises:
a bottle; a hanger; a weighted block; an aerator; an insertion tubing; an intermediate tubing; said weighted block comprises an internal conduit, a block inlet, and a block outlet; said bottle being mounted onto said weighted block; said hanger being laterally and pivotably connected to said weighted block; an opening of said bottle being in fluid communication with said block inlet; said internal conduit traversing through said weighted block from said block inlet to said block outlet; said block outlet being in fluid communication with said aerator through said intermediate tubing; said aerator being in fluid communication with said insertion tubing;
11 . The aeration system for fuel additives as claimed in claim 10 comprises:
said aerator comprises a structural housing, a filter, and a first mesh;
said structural housing comprises a housing inlet and a housing outlet;
said filter being positioned adjacent to said housing inlet;
said first mesh being positioned across said housing outlet;
said filter and said first mesh being mounted within said structural housing;
said block outlet being in fluid communication with said housing inlet;
said housing inlet being in fluid communication with said housing outlet through said filter and said first mesh;
said housing outlet being in fluid communication with said insertion tubing;
12 . The aeration system for fuel additives as claimed in claim 11 comprises:
said structural housing further comprises a first housing portion, a second housing portion, and a disengageable interface;
said housing inlet being integrated into said first housing portion;
said housing outlet being integrated into said second housing portion;
said first housing portion and said second housing portion being hermetically connected adjacent to each other by said disengageable interface;
13 . The aeration system for fuel additives as claimed in claim 10 comprises:
said block outlet being in fluid communication with said aerator through said intermediate tubing;
14 . The aeration system for fuel additives as claimed in claim 10 comprises:
a second mesh;
said second mesh being positioned across said block outlet;
said second mesh being perimetrically mounted to said block outlet;Join the waitlist — get patent alerts
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