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Hyperhydrochloric Acid:修订间差异

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imported>Hydrogen Sulfide
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imported>Hydrogen Sulfide
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Hyperhydrochloric Acid(HA in short), with the molecular formula (HCI)<sub>10 </sub>, has a scientific name of '''tri(1λ3,2λ3-dichloranyl)-1λ3,2λ3,3λ3,4λ3-tetrachloretane.'''It is especially important in industry.
Hyperhydrochloric Acid (HA in short), with the molecular formula (HCl)<sub>10</sub>, has a scientific name of '''tri(1λ3,2λ3-dichloranyl)-1λ3,2λ3,3λ3,4λ3-tetrachloretane.'''It is especially important in industry.
== The Production of HA ==
== The Production of HA ==
=== Industrial production ===
=== Industrial production ===

2024年4月4日 (四) 02:38的最新版本

地球人请注意:本条目是超盐酸的鹰语版。

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Hyperhydrochloric Acid (HA in short), with the molecular formula (HCl)10, has a scientific name of tri(1λ3,2λ3-dichloranyl)-1λ3,2λ3,3λ3,4λ3-tetrachloretane.It is especially important in industry.

The Production of HA[编辑]

Industrial production[编辑]

HA is a kind of important chemical-industry material. However, its requirement of laboratorian synthesis is too high, and the chemical plants are therefore purchasing HA from labs with a high price. The RP of the labs are different, so the HA sent is very different too. As a result, industrian HA is neither with a high concentration nor with a high quality.

Laboratorian synthesis[编辑]

There is only one way of the laboratorian synthetise of HA, which was discovered by chinese antimonitian Zhao Mingyi, the great physicist and chemist in 250 B.C.. Antimonitian secret tales sais:' This method is with very good conditions, it's natural. It's Zhaos-secret-method.'Because of the long history, no one knows if he synthetised HA, so he is only thought to invent the method ,not to firstly use the method.

In 2007 , after the inprovement and research by Wan Tsaoyuanzhu, he put forward the most widely used method:Antimony-Kadium-catalysis method, which is operated in a synthesis-tower.

① 2Molecule of HCI γ-Kadium become (E)-1λ3,2λ3-dichlorene in the catalysis of y-Kadium ,which becomes 1λ3,2λ3-trichlorane later.

② 1λ3,2λ3-trichlorane becomes tris(1λ3,2λ3-dichloranyl)-13,23,33,43-tetrachloretane in the catalysis of Antimony.