Atmospheric pollution from poisonous exhaust gases remains to be one of the most acute problems for large industrial centers and cities across the globe. Numerous solutions to this problem are being offered: different catalysts, filters, additives, etc. A magnetic fuel modifier is one of the most acceptable solutions from both an environmental and economic sides. It is no surprise that countries in the middle eastern gulf regions which are known for their expansive fuel businesses are adopting these new technologies.
Table 1.
1. Results of the test carried out in Buenos-Aires, Argentina.
"Ford-Taurus"
Exhaust gases | Without the device | After device's installation |
CO, % | 2.05 | 0.57 |
CO2, % | 12.0 | 11.7 |
HC, ppm | 193 | 124 |
O2, % | 1.6 | 1.8 |
2. Results of the test carried out in UAE.
"Toyota-Corolla"
Exhaust gases | Without the device | After device's installation |
CO, % | 3.1 | 0.18 |
CO2, % | 13.3 | 12.2 |
HC, ppm | 171 | 78 |
O2, % | 7.0 | 9.7 |
3. Results of the test carried out in Russia.
"Grand Cherokee"
Exhaust gases | Without the device | After device's installation |
CO, % | 6.12 | 1.31 |
CO2, % | 13.1 | 11.9 |
HC, ppm | 187 | 93 |
O2, % | 5.4 | 8.9 |
Table 2.
Fuel saving acquired by using magnetic fuel modifier on different types of vehicles
No | Vehicle tested | Type of engine | Type of fuel | % of saving |
1 | DAEWOO bus | injector | diesel | 14.0 |
2 | VOLVO B10m bus | injector | diesel | 23.0 |
3 | NISSAN PATROL | carburetor | petrol | 23.6 |
4 | CHEVROLET LUMINA | injector | petrol | 18.4 |
5 | CHRYSLER | injector | petrol | 28.7 |
6 | TOYOTA CRESSIDA | carburetor | petrol | 27.0 |
7 | MITSUBISHI LANCER | carburetor | petrol | 24.2 |
8 | TOYOTA CAMRY | injector | petrol | 25.0 |
9 | FORD TAURUS | injector | petrol | 26.2 |
10 | NISSAN BLUEBIRD | injector | petrol | 27.2 |
11 | PEUGEOT | injector | petrol | 23.0 |
12 | MERCEDES-220 | injector | petrol | 25.0 |
Magnetic fuel modifier is suitable for usage with any kind of fuel (petrol, diesel, kerosene, gas), and the result will always be positive. The device can be used for any kind of automobiles (cars, jeeps, motorcycles, trucks, buses) and sea vessels (yachts, boats, jet-skis, ships), boilers, large power devices, such as stoves for concrete production, thermal power stations, water-distilling stations, etc.
The device is exclusively simple and easy to use and does not require any special maintenance.
The device was created to solve the following problems:
The device should be fixed directly before the carburetor or injector or, if it is not possible, in any place on the fuel-line which carries fuel from the tank to the engine/carburetor.
Attention: To avoid any damage of the magnetic fuel modifier, the device must not touch hot parts of the engine.
Before the installation of the device:
1. Take the reading of toxic exhaust gases
Then:
2. Install the magnetic fuel modifier
3. Let the engine work for 10 hours
4. Take the second reading of the toxic exhaust gases
Users will readily note the difference in the chemical composition of exhaust gases.
1 - fuel container
2 - filter
3 - magnetic fuel modifier
4 - carburetor (injector)
If installation of the device is not possible in this order, install it anywhere between fuel container and carburetor (injector).
Attention: In all cases, it is necessary to regulate the carburetor additionally after fixing the magnetic fuel modifier. Practice shows that, in order to decrease the amount of fuel injected in to carburetor, such regulation should be done at least 4 times during initial 60 days of the device's functioning. Since all the engine's parts are getting magnetic, the magnetic fuel modifier's functioning becomes more efficient.
Magnetic fuel modifier shall be evaluated directly on the testing vehicle according to the procedure as follows below.
1. Prior installation of magnetic fuel modifier
1.1. Fill the tank with petrol up to the fullest.
1.2. Note milage readings and the time before the start of vehicle.
1.3. Run the vehicle for at least 100 km on a motorway.
1.5. Take milage readings and the time upon completation of the 100 km run.
1.5. Fill the tank with petrol up to the fullest (1.1.) and note the amount of the petrol drawn.
1.6. Fix the modifier onto the fuel line of vehicle.
2. Following installation of magnetic fuel modifier
2.1. Drive the vehicle for 5-7 days in a normal fashion.
2.2. Go for a check run after 5-7 days as per 1.1.-1.5.
Note: average speed is computed by the following formula:
Vav = S / T [km/h] and shall not a difference of ±5 km/h befor and after installation.
3. Efficiency evaluation magnetic fuel modifier
3.1. Calculate specific fuel consumption for a control run before installation of the fuel modifier. Use the following formula:
Y1 = Q1 / S1 [gal/km],
given that,
Q1 - amount of fuel poured into the tank after the run;
S1 - distance covered.
3.2. Calculate specific fuel consumption for a control run after installation of the fuel modifier. Use the following formula:
Y2 = Q2 / S2 [gal/km],
given that,
Q2 - amount of fuel poured into the tank after the run;
S2 - distance covered.
Note: it is advisable that S1 = S2.
3.3. Calculate the fuel saving (modifier efficiency). Use the following formula:
E = (Y1 - Y2) x 100 / Y1 [%]
Warranty: Omni Enviro guarantees qualitative performance of the magnetic fuel modifier for 1 year, provided that there is no mechanical damage of the device.
Note: Efficiency of the magnetic fuel modifier is valid for 10 years.
Type | Output in liters/hour and area of application | Price in $US |
M.F.M.-0,25" |
Not less 250 l/hr. Cars, motorcycles, yachts, military machinery, diesel power systems |
Contact us |
M.F.M.-0,5" |
Not less 1 500 l/hr. Ships, diesel electric power stations, etc. |
Would be designed as per order |
M.F.M.-1" |
Not less 2 500 l/hr. Large power industries, large ships |
|
M.F.M.-1,5" |
Not less 5 000 l/hr. Large power plants |
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