The 4 Main GANSes and Amino Acids

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Basics for the production and processing of GANS
back to categorie: GANS

The first step before we start making GANSes, is the Nano-coating. Our basic GANSes are CO2, ZnO, CuO and CH3. The Amino Acids of each GANS are very important too.

Required materials

Green led: Anode (+) / Cathode (-)
  • Plastic box
  • Clean water
  • Salt
  • Green led
  • Nano-coated Copper (or Zinc for ZnO GANS) wires for connecting the metals
  • Nano-coated Copper plates or coils (for ZnO GANS a Nano-coated Zinc plate is used)
  • Various uncoated metal plates (Zinc for CO2 and ZnO, Copper for CuO and Iron galvanized with Zinc for CH3)


GANS Color Coated Material Uncoated Material Salt content
CO2 (ZnO + CO2) cream white Nano-coated Copper Zinc 3-10%
ZnO white Nano-coated zinc Zinc 3-10%
CH3 (FeO + CH3) reddish brown Nano-coated Copper Zinc-coated Iron 3-10%
CuO (CuO + Cu) turquoise Nano-coated Copper Copper 3-10%

As well proven, average Salt content for the production of GANS, 5% has been found. Read more about Salt.)

IMPORTANT: When you produce your different GANSes, keep a distance (at least 3m, best 5m) between the different GANS containers. The closer the containers, the more the fields of the different GANSes mix up. Keep in mind, that through the selection of your different metals, you create a "magnet", which attracts the fields from the environment.

CO2 GANS / Basic Box setup and instructions

See also: CO2 GANS
CO2 GANS box setup: The setup here on the picture with led is the best option to produce a very good quality of GANS. [For emergency situations only (lower quality): If there is no led to connect the wires, you can use two Nano-coated Copper wires and twist them counterclockwise together. If you have only not Nano-coated Copper wires, you have to use one led!


The (plastic) box is the basic for creating every GANS production of the 4 main GANSes (Picture below). It basically filled up with 5% Salt-water. The plates should hang around 80% in the water, 2 cm above the bottom of the box and 4 to 7 cm away from each other. The mounted holder wires on the picture, should be placed at least 0.5 cm over the water. (Especially the non Nano-coated Copper wire should not touch the water, because it can have the unwanted effect on the production, that CuO GANS is made too). The two connection wires, get connected with an green led. The longer pole (+) gets connected with the Nano-coated Copper plate and the shorter pole (-) gets connected in this case of a CO2 production, with the not Nano-coated Zinc plate connection wire.

When we speak about CO2 GANS, there is every time a amount of ZnO in it too. The use of a green led, to connect the connecting cables allows a high yield of CO2 in the ratio 90:10 to ZnO and the GANS looks creamy white.The ZnO cannot be eliminated completely from the GANS mixture when creating CO2 GANS, but this is of no consequence. (There is also the opportunity to make it without led, but the the ratio of CO2/ZnO GANS is then 20:80. Read more: CO2 GANS)

[In the other GANS productions (ZnO, CuO, CH3) other combinations of plates are used and for the case, you don't have Copper wires or Zinc wires, or Nano-coated wires, it should not stop you, using that, what you have. It's just fine tuning for a very proper GANS. By CO2 GANS, a led is important for preferably high yield of CO2, but if you don't have it, you can also twist the two connection wires just counter clockwise together, as at the other GANS productions too. For CO2 do not use additional electricity.]

ZnO GANS

See also: ZnO GANS
ZnO GANS box setup: The setup here on the picture with led is the best option to produce a very good quality of GANS. [For emergency situations only (lower quality): If there is no led to connect the wires, you can use two Nano-coated Zinc wires and twist them counterclockwise together. If you have only not Nano-coated Zinc wires, you have to use one led!]


For producing Zinc GANS we use a Nano-coated Zinc plate and a normal Zinc plate and connect it with wires and a led between. Some use current for this production. On the surface of the water Amino Acids are created, which get collected separately. Only for this GANS, we use instead of a (Nano-coated) Copper wire a (Nano-coated) Zinc wire. The connection wire (Nano-coated Zinc) from the Nano-coated Zinc plate is connected with the + pole of the led and the - pole of the led, is connected with the Zinc wire to the Zinc plate.

CH3 GANS

See also: CH3 GANS
CH3 GANS box setup: The setup here on the picture with led is the best option to produce a very good quality of GANS. [For emergency situations only (lower quality): If there is no led to connect the wires, you can use two Nano-coated Copper wires and twist them counterclockwise together. If you don't have Nano-coated Copper wires, you have to use one led!]


On the left side you have the Nano-coated Copper plate and on the right side the with Zinc galvanized Iron plate. It's connected with Nano-coated Copper wire and an Copper wire, also with a led. Alternatively, chicken wire can also be used, which is also made of galvanized iron. (The cut ends should protrude out of the water, otherwise the iron will immediately interact with the cut end). At the CH3 GANS production current can be used.

At first the Zinc, from the with Zinc galvanized Iron pate will interact with the Nano-coated Copper and like in the CO2 production, CO2 GANS and the Amino Acid of it will be produced. After a few days, depending on the whole setup and environment, the reddish/brown CH3 GANS production will be start and visible. You can let the creamy white CO2 GANS sediments inside and allow them to be mixed up with the reddish/brown CH3 GANS sediments.

CuO GANS

See also: CuO GANS
CuO GANS Box Setup: The Setup here on the picture with led is the best option to produce a very good quality of GANS. [For emergency situations only (lower quality): If there is no led to connect the wires, you can use two Nano-coated Copper wires and twist them counterclockwise together. If you have only not Nano-coated Copper wires, you have to use one led!]


For producing CuO GANS we use a Nano-coated Copper plate and a normal Copper plate and connect it with wires and a led between, in a 5% Salt water solution. The connection wire (Nano-coated Copper) from the Nano-coated Copper plate is connected with the + pole of the led and the - pole of the led, is connected with the Copper wire to the Copper plate.

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