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10 15 20 25 30 35 40 45 36 forces of the system are used, that the end products are not only harmless, but because of the right choice of decontamination and elements, useful matters can be created as the by-product of the decontamination. What this means is that, for example in trying to recycle the CO2, by the use of right matter in one of the cores of the reactor, the system then will produce, using the O2, to produce H2 O, in the form of pure water, and C in the form of carbon atomic or molecular, or even by feeding this back through certain operational compression, gravitational interaction within a small core to recreate, industrial diamond or graphite, for different industries. Then if, connecting or arranging this as part of the exhaust system of a motor car, or industrial unit, the system will become water producing unit for the user, and any other material which the user can utilise for its industrial use or selling the by-product as a commercial material. These systems can be as small as a water cup size, where their immediate utilizations can be commercialized. To achieve such a system, one needs to create a single or the double magnetic field effect for gravitational suction characteristics environment. The design The design of this type of reactor for the physical decontamination of CO2 is very simple and can be achieved by a double or triple core. The normal reactor is feed with the CO2 gas into the third multi-layer reactor core. Where this reactor core only acts as separation chamber. In this process the outer core is or can be filled with sodium or potassium atomic or molecular or metallic vapour. The reactors Caroline core is operated to create plasma only. Then the plasma from the core is feed through to the outer core. The positively charged plasma will interact with the free electrons available by the metallic sodium, creating atomic hydrogen. This chamber has the behaviour of the normal chamber under vacume condition, or normal pressure condition, where the hydrogen gas will rise to the levels away from the inner core surface. Where this gas can be siphoned off directly from the chamber. This atomic hydrogen or even molecular hydrogen can be feed through a decompression chamber diversion, into the third core, where the interaction between hydrogen and CO; will lead to separation of carbon and the Oxygen, by allowing the H, to interact with O CO, leading to creation of H,O, and pure carbon. The inner body of the third core can be allowed to be heated that the interaction of the H2O is in the form of the water vapour.