Gas planets are planets shrouded in mystery and obscurity, mainly due to the impossibility of their full exploration. Polus Corporation researchers managed to study less than 15% of the composition of these planets. However, despite their mystery, gas planets almost immediately established themselves as the best places in the cluster for the extraction of hydrazine.

Gas planets certainly cannot be called the most stable planets in the cluster. The first attempts to build spaceports on planets of this type ended in failure. These planets do not tolerate inaccuracies, a small error in calculating the density of the atmosphere served as a catalyst for a catastrophe that occurred on one of the gas planets. A multi-kilometer platform intended for the construction of the first spaceport floating in the atmosphere on it suddenly collapsed down into an endless gas abyss. After the incident, Polus Corporation engineers developed lighter and more practical platforms for construction on gas planets.
The exact size of the core of gas planets has not yet been determined. However, the sizes of dense gas clusters forming the surface of the planets visible to us range from 2100 to 2300 kilometers in diameter.
Since only endless gas clouds and nebulae could be found on the surface of these planets, and the research equipment was not yet adapted to a deeper dive into their depths, scientists had to explore surface gases.
However, the results of the gas analyzes showed an incredibly high content of nitrogen and radon. After identifying such unusual features, scientists and engineers of the Polus Corporation immediately began to study possible ways of extracting useful resources from surface gas accumulations on an industrial scale.
Hydrazine
Scientists have managed to find an extremely effective way to extract hydrazine from the found gas.
By splitting thick gas in a centrifuge under high pressure, they have succeeded in extracting dry nitrogen, which is the main element of hydrazine. Then the resulting nitrogen undergoes several oxidation and filtration procedures, after which the final substance, hydrazine, is poured into containers and prepared for further transportation.

<aside> <img src="/icons/chemistry_pink.svg" alt="/icons/chemistry_pink.svg" width="40px" /> The described method of receiving hydrazine was recognized as the most effective
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Radon Water
Radon was another element found in the composition of the gas. It is extremely radioactive in its pure form. However, when it is enriched with water in the proportion of 1/3, the resulting liquid, called radon water, can be effectively used in the creation of electronics.
The production of radon water on gas planets has been fully automated thanks to the development of special tanks in which water is enriched with radon.

Polyonium
Despite the fact that polyonium ore has not been found on gas planets, the production of valuable metal - polyonium, is still quite common there.
Due to the extremely low cost of fuel on gas planets, the construction and launch of polyonium processing plants are quite profitable here.
Polyonium plants on gas planets are fully automated and operate on hydrazine engines.
