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My technology is capable of manufacturing 60+ elements, produces electricity and has by-products of ozone and clean water.

My technology is capable of manufacturing 60+ elements, produces electricity and has by-products of ozone and clean water. Read more
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tyler mcmahon
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tyler mcmahon

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About this project

One of the main points of my project are through electrolysis we have a massive amount of resources available to us in our water on this planet, and to clean them while mining them is a very nice bonus. what my project is offering is to mine the oceans and rivers, you can clean them while making a profit, fix the ozone layers, provide the materials for building our medicines, electronics, food, weapons, energy production, construction, and so much more. With a full sized facility i have planned the future of resource development will be available.

  • Generate renewable and green electricity
  • with seawater it can manufacture 40+ elements for sale or to make millions of possible materials, less with river water depending on the pollution in the water.
  • its only emission is ozone for the repair of the ozone layer, clean air and water.
  • can be used to refreeze the polar ice caps, and lower sea level with the water and hydrogen it produces.
  • as a byproduct to one of the electrical production stages water purification can be achieved.
  • uses in the medical, industrial, construction, energy, and military sectors, 
  • Depending on how well funded the full scale designs, my end goal of it will serve as a full scale self powered mine, foundry, factory, and water purification facility that can supply to 

The machine from start to finish can with one variant of the designs powers itself, and can still provide a surplus in electrical energy, the manufacturing stages will be used to mix the  elements mined and purified by the machine into millions of materials for sale in the military, medical, energy, and pretty much all other sectors of the worlds economies. The ozone layer will be slowly fixed as a byproduct of the power generation, and the clean water if produces can be pumped say across the ice shelf an refrozen with some liquid hydrogen that is also produced by the machine. The machine is designed to the best of my ability and almost all of the formulas are double checked but the actual prototyping is very expensive and depending on the amount of funding the size of the machine will change. Here is a list of the elements i am working to be able to mine out of sea water and some of the uses for them and the general market value of the elements:

1. Hydrogen: $12/100g many applications and uses from medical science, fuels, or production of other elements, compounds, electrolysis of many elements, and many thousands of other uses. 2. Oxygen: $0.3/100g, has many applications from industrial uses like welding, chemical industry, rocket fuels, and water treatment, smelting of iron ores, life support and recreational uses, and medical applications with many more applications available, like continuation of breathing. 3. Chloride:$0.15/100g, converts to chlorine through electrolysis, and has uses in desalinization, food preservation, a reliable chemical indicator, 4. Sodium:$25/100g, has many uses in electrolysis, heat transfer, and has biological and industrial uses like the production of aluminium. 5. magnesium:$3.7/100g, used in aircraft, electronics, automotive industries, pyrotechnics, in conjunction with thermite, batteries, compounds, America derives it mainly from electrolysis of sea water, and has many other uses. 6. Sulfur: $24 per 100g, has applications in production in the electrolytic process of some elements, acids, fertilizers, fungicide, pesticide, bactericide, pharmaceuticals, makes cellophane and rayon, and is used for the vulcanization of rubber, and many other uses. 7. Calcium:$200/100g, used in the steel and glass industries, deoxidizer, decarbonizer, desulfurizer, and many applications in military, medical, and industry departments, and many more. 8. Potassium:$100/100g, used in food, fertilizers, electrolysis solutions, acid neutralization, gun powder, inks, dyes, stains, respirations systems, alloys, and many thousands of other applications. 9. Bromine: $5/100g, can be used for pesticides, flame retardants, medical applications, dyes, agrichemicals, water purification, and many other uses. 10. carbon both organic and non: can be used in Nano materials, diamonds, alloys, electronics, batteries, graphene, charcoal, polymers, clothing, construction, industry, military, medical and other sciences can use it as well 11. strontium: $100/100g, can be used for medical sciences, photography, magnets, radioisotope thermoelectric generators, and many others. 12. Boron: $5/gram, has uses in fibreglass production, glass, polymers and ceramics, medical sciences, semiconductors, insecticides, magnets, shielding and neutron absorber in nuclear reactors, pharmaceutical and biological applications, and many others. 13. Silicon:$50/pound - $100 ounce hyper pure, uses in compounds, alloys, electronics, medical and biosciences and modifications, and many others. 14. Aluminum: $ 0.71/pound, uses in but not limited to alloys, construction, musical instruments, electrical transmission lines, thermite and solid rocket fuels, smart bullets, electronics, heat sinks, coins planes, transportation, paints, titanium production and many more. 15. Fluorine:$190/100g, made exclusively by electrolysis, used mainly in nuclear fuel cycle preparation, surfactants, agrichemicals, medical sciences in pharmaceuticals, dental care, polymers, and oxygen carriers with many other uses. 16. Nitrogen:$.4/100g has uses in fire suppression technologies for IT, packing of liquid explosives, photolithography, incandescent light bulbs, tires, manufacture of stainless steel, liquid hydrogen is a cryogenic, coolants for x-rays and infrared detectors, cryotherapy, and possible high energy fuel sources when it’s a solid. 17. Rubidium:$1200/100g has many applications in electronics, potential thermoelectric power generation, positron emission tomography, medical sciences, gps, and atomic clocks, and many more. 18. Lithium: $27/100g has many applications in electrical and electronic manufacturing, ceramics and glass, lubricating grease, air purification, welding, pyrotechnics, and optics, military and nuclear applications as well. 19. Phosphate:$115/ton, uses in biochemistry, and biogeochemistry, agricultural and industrial uses as well. 20. Copper:$2.14/pound used in wiring, electronics, architecture, antifouling and antimicrobial applications, stills, musical instruments, wood preservatives, alloys, and many others. 21. Barium:$55/100g, uses in alloys, agent is fireworks, medical sciences, and many others. 22. Iodine:$8.3/100g, can be used for medical, cloud seeding, ion thrusters, helium-neon lasers, and analytical chemistry, amongst other uses. 23. Nitrite: $360/tonne used in biochemistry and food applications, and as catalysts. 24. Ammonia:$355/tonne has applications in woodworking, fertilizers, cleaners, antimicrobial agents, fermentation, and others. 25. Arsenic:$320/pound has applications in medical, military, alloys, electronics and many others. 26. Iron:$7.2/lbs pure, has many uses in alloys, tools, construction, and well its iron. 27. Zinc:$5.30 pure, used in galvanizing, alloys, semiconductors, detection devices, television and x-ray screens, propellant, nuclear reactors for anti-corrosion, fire suppression, gamma radiation, additives to engine oil, fungicides, and many others. 28. Manganese:$1.70/100g, used in production of steal, and other alloys, batteries, and money, pigments for glass making and many others. 29. Lead: $2.45/pound pure , uses of bullets, boat ballasts, alloys, radiation shielding, construction materials, batteries, solder, USED IN ELECTROLYSIS electrodes, cladding of high powered electrical cables, electronics and many others. 30. Selenium: $300/pound can be used for quantum dots, semiconductors, surge protectors, glass making, pigments, and used for electrolytic cells for manganese winning, alloys, solar cells, photovoltaic properties, catalysts, x-ray crystallography, toning of photographic prints, and many other applications. 31. Tin: $9/100g bulk not pure, can be used in superconductors, solder, alloys, glass making, batteries. 32. Cerium: $380 per 100g uses of catalysts for cracking petroleum, and televisions. 33. Molybdenum: $7.30 per pound uses of x-ray devices, alloys, analysers, and fertilizers. 34. Uranium: $30-40 per pound, many applications in civilian and military departments, be it energy production, for weapons requiring armor piercing, or with large enough amounts high strength building materials. 35. Gallium:$220/100 grams, uses of semi conductors, alloys, biomedical applications, radio gallium salts, neutrino detection, focused ion beams, emergency sprinklers, and many others. 36. Nickel: $4.42/pound. Uses of alloys, super alloys, electroplating, glass tinting, electric guitar strings, microphones, plumping and many others. 37. Thorium: 7X25 grams is $1500 possible uses include welding, lens’s, lighting, and possible nuclear energy, and turns into thoria which has many applications as well. 38. Vanadium: $220/100g uses of fusion reactors, alloys, batteries, and other proposed uses. 39. Lanthanum: $64 per gram can be used for batteries, lake treatment, camera lenses, electron microscopes, scintillators, and many others. 40. Yttrium: $75/oz can be used in televisions, superconductors, material enhancers and medical applications. 41. Mercury:$ 3540 per flask for 99.99% pure, a flask being 36Kg of mercury, has many uses like production of caustic soda, medicine, thermometers, liquid mirror telescopes, electrodes in electrochemistry, lights, neon signs, optical spectrograph, firearms, and many others. 42. Silver: 816 CAD per kilo, has many applications like jewelry, currency, solar energy, water purification, dentistry, electronics, glass coating, electrical transference, biological and medical sciences, catalysts, alloys, clothing and many others. 43. Bismuth: $39 per hundred grams, many uses including chemical manufacturing/refining, medicines, alloys, cosmetics and pigments, and many other uses. 44. Cobalt: $12 per pound USD, has many applications in the fields of alloys, batteries, catalysts, pigments, radioisotopes, electroplating, and biological roles. 45. Gold: $1 319 per ounce USD, has many uses in jewelry, electronic connectors, chemistry, medicine, food and drink, investments, protective coatings in military and space applications, telescopes, and many others. 46. Deuterium: $680-990 per kg USD, has applications in spectroscopy, nuclear reactors, tracing, nuclear weapons and some pharmaceuticals.

Risks and challenges

Some of the challenges i have been having is that i have no funding to build the machine, and a few of the parts of it are relatively expensive to custom order. I have tried to build it from scrap parts and scrounged or re-purposed parts but have not had much luck as most of the initial steps require very exact specifications or it turns into a bomb, and i really do not want to be near a second one of those. With proper investors and a lab, i could finalize the project and finish the patent on it. Depending on the investor, i could design it for power generation, element manufacture, refreezing the polar ice caps, city water purification, or a little bit of everything.

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    Pledge $8,000 About $6,106 USD

    not a small item machine

    if your an interested company, i would be willing to share more information if you send a nondisclosure form so that you understand that i am very serious about my project, but i cant afford to offer prizes, or gifts.
    And this is not a small or cheap machine, it will be used on city scale power generation, and i am sure i cant ship that in the mail.

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