1. Field of the Invention
The present invention relates to a micro reactor having micro flow-guiding blocks. In this invention, guiding the flow direction toward the catalytic portion can increase the overall reaction efficiency. More turbulence is generated to obtain a better mixing. Plus, its structure is simple.
2. Description of the Prior Art
Fuel cell is always a power generating method with low pollution and high efficiency. There are many different types of fuel cell. The primary fuels used in a typical fuel cell are hydrogen and oxygen. However, if the fuel cell is installed on a vehicle, how to store hydrogen and oxygen on this vehicle is a big issue to be discussed. The most common solution is to utilize the steam reforming of methanol (briefly referred as SRM) method to produce hydrogen. The related chemical reactions of the SRM method can be listed as follows:
CH3OH+H2OCO2+3H2 (1)
CH3OH2H2+CO (2)
CO+H2OCO2+H2 (3)
In this SRM method, it is required to heat up a catalyst above a specific reaction temperature. Therefore, it is important to know how to design a reactor, especially including how to heat up, how to control the temperature inside, how to select a catalyst, how to make a best distribution for the catalysts, etc.
Furthermore, as illustrated in
a first gas flow channel 810 including a first inlet 812 and a first outlet 811;
a second gas flow channel 820 including a second inlet 821 and a second outlet 822; and
a catalytic converter 830 including a plurality of micro channels 831 and at least one catalytic membrane 832 so as to connect the first gas flow channel 810 and the second gas flow channel 820.
Of course, a predetermined surface of the first gas flow channel 810 can be coated with a specific catalytic layer 90 (such as ZnO), as shown in
Referring to
Regarding the above-mentioned equation (3), if CO mixes with H2O very well, more hydrogen will be produced. Besides, because there is not any barrier or block inside the channel, the gas flows through the channel as a laminar flow state. There is no turbulence in the channel. Therefore, the mixing for gases is not good. It also causes the overall chemical reaction efficiency to be poor.
The primary object of the present invention is to provide a micro reactor having micro flow-guiding blocks. In which, by mean of guiding the flow direction toward the catalytic portion, it can increase the overall reaction efficiency.
The next object of the present invention is to provide a micro reactor having micro flow-guiding blocks. More turbulence is generated to obtain a better mixing.
Another object of the present invention is to a micro reactor having micro flow-guiding blocks. Its structure is simple.
Referring to
About this first gas flow channel 10, it includes a first inlet 11 and a first outlet 12. There are several flow-guiding portions 13 disposed on the first gas flow channel 10.
Concerning the second gas flow channel 20, it includes a second inlet 21 and a second outlet 22.
With regard to the catalytic converter 30, it includes a plurality of micro channels 31 and at least one catalytic membrane 32 so as to connect the first gas flow channel 10 and the second gas flow channel 20.
Moreover, each flow-guiding portion 13 has at least one micro flow-guiding block 131, at least one flow-impact recess 132, and at least one catalytic portion 133. The function of the micro flow-guiding block 131 is to guide a flowing direction of the flow toward the catalytic portion 133 on the flow-impact recess 132 so as to increase a possibility of contacting and chemical reaction on the catalytic portion 133.
Practically, as shown in
The shape of the micro flow-guiding block 131 can be selected from triangle (as shown in
The catalytic portions 133 can be selected from at least one of copper, ZnO, Al2O3, zinc, TiO2.
As illustrated in
Moreover, the fuel cell is a low pollution and high efficient power generating method. Oxygen can be obtained from the atmosphere directly. Hydrogen can be obtained from the above-mentioned SRM method.
As shown in
Meanwhile, because the micro flow-guiding block 131 blocks the flow, a laminar flow will turn into a turbulent flow. The mixing effect is better. Therefore, more chemical reaction will occur.
In fact, the shape of the flow-impact recess 132 of the flow-guiding portion 13 can be selected from curved surfaces (as illustrated in
The advantages and functions of the present invention can be summarized as follows:
[1] Guiding the flow direction toward the catalytic portion can increase the overall reaction efficiency. In this invention, a plurality of micro flow-guiding blocks are properly disposed, so the flowing direction will be changed and then move toward the flow-impact recesses. Thus, the design can compel the flow to hit on the catalytic portion directly. Thus, it can increase the overall reaction efficiency.
[2] More turbulence is generated to obtain a better mixing. Once the flow is blocked by the micro flow-guiding blocks, the separated flows hit on the flow-impact recesses with more turbulence. As a result, a better mixing occurs. Therefore, the catalyst reaction efficiency becomes higher.
[3] It structure is simple. The micro flow-guiding blocks can be formed on predetermined locations. The manufacturing process for them is quite easy. Also, its structure is simple.
The above embodiments are only used to illustrate the present invention, not intended to limit the scope thereof. Many modifications of the above embodiments can be made without departing from the spirit of the present invention.
Number | Date | Country | Kind |
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95138634 A | Oct 2006 | TW | national |
Number | Name | Date | Kind |
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6960235 | Morse et al. | Nov 2005 | B2 |
Number | Date | Country | |
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20090311143 A1 | Dec 2009 | US |