The detail structure, the applied principle, the function and the effectiveness of the present invention can be more fully understood with reference to the following description and accompanying drawings, in which:
Referring to
The radiators 12 are disposed in the first internal compartment 100, so the first internal compartment 100 may serve as a condensing partition. Accordingly, the mixer 1 for liquid fuels has the functions of a conventional condenser. On the other hand, the second internal compartment 102 is provided to contain liquid fuels 2.
The radiator 12 may adopt a structure with radiating fins. As shown in
The gas permeable but liquid impermeable film 14 is placed on the vent 104. In one embodiment, the gas permeable but liquid impermeable film 14 covers the vent 104 tightly, and is fixed on the casing 10. Due to the presence of the gas permeable but liquid impermeable film 14, vapor 16 from liquid fuels 2 evaporating at high temperatures in the second internal compartment 102 flows into the first internal compartment 100 through the gas permeable but liquid impermeable film 14. Then vapor 16 is condensed in the first internal compartment 100.
The mixer 1 for liquid fuels further includes a check valve 18 disposed on the drain 106. The check valve 18 allows condensed water in the first internal compartment 100 to flow towards the second internal compartment 102 uni-directionally. Conversely, the liquid fuels 2 in the second internal compartment 102 overflowing onto the drain 106 do not flow into the first internal compartment 100 because the check valve 18 prevents backflow.
As shown in
For higher efficiency of condensing in the first internal compartment 100 of the mixers 1, 3 for liquid fuels, the casings 10 of the mixers 1, 3 for liquid fuels may be made of a thermally conductive material, preferably a metal that is treated by an acid-proof process. Or, the casings 10 of the mixers 1, 3 for liquid fuels may be made from a plastic material that is treated by an acid-proof process, such as plastic.
According to the mixers 1, 3 for liquid fuels in the invention, the first internal compartment 100 is used as a condenser, and the second internal compartment 102 is used to store liquid fuels 2 for a fuel cell. Hence, the space of the fuel cell is well deployed so that the total volume required for the fuel cell is decreased greatly.
Furthermore, the condensed water in the first internal compartment 100 may be applied to dilute liquid fuels without requiring the use of an aqueous solution tank, which is essential for a conventional fuel cell. This makes it feasible to miniaturize fuel cells. In addition, the condensed water in the first internal compartment 100 may flow downstream towards the second internal compartment 102 without requiring a pump, which is also beneficial for miniaturizing fuel cells.
While the invention has been particularly shown and described with reference to the preferred embodiments thereof, these are, of course, merely examples to help clarify the invention and are not intended to limit the invention. It will be understood by those skilled in the art that various changes, modifications, and alterations in form and details may be made therein without departing from the spirit and scope of the invention, as set forth in the following claims.
| Number | Date | Country | Kind |
|---|---|---|---|
| 095214828 | Aug 2006 | TW | national |