ECCO - preliminary testing part one
Over the past few months, Suhas Ralkar, the inventor of the ECCO "free energy" reactor has been working with his team and the MFMP, to further a collective understanding of what he may have. Suhas continues to impress us with his openness and we extend our gratitude to him for this kindness.
The purpose of this article is to inform the reader, that the ECCO inventor has spent several weeks preparing fresh fuels, then he has run them in his reactor, all with the aim of the MFMP testing their before and after state. Suhas' work has now concluded and below we detail several packages we hope to receive, should the postal services keep their commitments to deliver.
In case they don't get to us, Suhas wisely sent small samples and held the bulk back - so, if the worst happens, we can pick up samples when there.
Envelope one - Raw materials
|Powder contents||Use in ECCO|
|Titanium powder||Used in varying quantities as a component in the fuel|
|Carbon black||Reportedly increased excess heat observed when used in fuel|
|Nickel Sulphate||Mixed with de-ionised water to form the electro deposition solution used to make electrode foil / fuel mobility barrier in reactor|
|Nickel||Used in varying quantities as a component in the fuel|
There are two types of fuel Suhas produced and ran, both of which contain 60% Titanium + 5% Carbon black + 5% Potassium Carbonate + 10% Lithium Hydroxide
In addition, during processing:
- "1x" fuel has 10% Nickel + 10 % Molybdenum
- "final" fuel has 20% Nickel
Fuel starting powder components
|Size range in microns|
Fuel preparation procedure for these tests
|Phase||% by weight of fuel component(s) added||Total|
|60% Titanium + 3% Nickel||63%|
|17% Nickel or 10% Molybdenum + 7% Nickel||80%|
|5% Potassium Carbonate||90%|
|10% Lithium Hydroxide||100%|
Phase F: After ultrasonic treatment in water, the fuel is dried, then washed in acetone, pyrolysed and ultrasonically sieved, 80% does not make the size grading process that selects for particles under 5um
Phase G: 10% of TiH2 is added by weight of fuel to the powder that is used as a charge for the reactor cores. That is to say 10% of TiH2 is added to 90% processed fuel as produced in phase A-E.
NOTE 1: No Phase F (pyrolysing and size grading) was performed, including before being added to the reactor, during this fuel preparation and active run, as the relevant equipment was on test loan out to another company, working in a different field.
NOTE 2: Both ‘1’ and ‘final’ fuels absorbed and retained more moisture when exposed to the atmosphere than in previous batches. This was particularly true of the ‘final’ fuel type, which presents as a solid/slurry. It is believed this is due to the K2CO3 hydrophilic nature.
NOTE 3: TiH2 was not added to the fuel sent for analysis for safety reasons.
NOTE 4: Previously, Al was added as a getter for excess gasses, however, carbon performs that function now
Testing for activity
|Place extracted from in ECCO reactor|
|1x2 ash coarse near centre of core 2|
|1x1 ash coarse near half-rounded electrode of core 1|
|1x4 ash coarse near pointed electrode of core 4|
|1x4 ash near centre of core 4|
Fuel 1x1 and final processed in two batches ( 1st batch & 2nd batch ) after 100 hours
|2x1_ ash near rounded electrode (1_ here is first of 4 reactors)|
|2x4_ ash near pointed electrode (4_ here is fourth of 4 reactors)|
|2x4_ ash near centre (4_ here is fourth of 4 reactors)|
|ash final near centre|
|broken reactor silica tube piece with little ash|
Process when samples are received
- As soon as the samples are received, they will be placed on a Radiographic plate, perhaps with some metal masking and a positional reference photo taken, to see if these freshly produced fuels and ash leave any signatures on the negatives. They may be left like this for several days. (NOTE: It is unexpected, since LENR processes tend to produce stable isotopes, even converting active isotopes to stable ones. With cavitation in the ECCO fuel processor, LENR processes may be occurring.)
- They will be then tested for magnetic properties, first with a smart phone magnetometer and then a neodymium magnet.
- After this, sessions will be arranged for various analytic testing, first of which will be SEM/EDX.
If anyone out there with access to the right tools would also like to test samples, please could they comment below and we will try to arrange onward shipping.
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