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Seek the production process for rare gas fluorides.

2009-04-13View Original

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A 30-point option is available, with various additional options; to reach 100 points, at least 3 fluoride treatment methods need to be used
Reply #22009-04-14
Does really no one know, or is it possible to achieve industrial production of rare gas fluorides?
Reply #32009-04-14
Hydrofluoric acid (HF) is produced by reacting dried fluorite (i.e., CaF) with concentrated sulfuric acid in a rotary furnace. There is such a device in Fushan Town, Changshu, Jiangsu, and it has been in operation for many years. The drying and reaction furnaces among them are those we produce.
Reply #42009-04-20
Xenon tetrafluoride Molecular formula: XeF4 Properties: Colorless crystal. The molecular configuration is a planar tetragonal shape. Melting point 117°C. It undergoes hydrolysis upon contact with water, producing xenon trioxide and releasing oxygen. It reacts with hydrogen at 127°C to produce xenon and hydrogen fluoride. Xenon hexafluoride can be produced by reacting it with fluorine under pressurized conditions. Xenon tetrafluoride has strong oxidizing properties and can oxidize sulfur tetrafluoride to sulfur hexafluoride. In a nickel container, a mixture of xenon and fluorine in a volume ratio of 1:5 is prepared, which can be obtained by heating it at 0.6 MPa and 400°C for several hours. A fluorinating agent used as an organic compound. Xenon fluoride: Preparation or source: (1) Xenon is mixed with fluorine and heated; increasing the amount of fluorine allows the production of xenon difluoride, xenon tetrafluoride, and xenon hexafluoride in sequence. The yield can be increased if the ratios of fluorine and xenon, as well as the reaction temperature and pressure, are chosen appropriately. (2) Xenon (in slight excess) and fluorine are introduced into a hard glass reactor, and under a pressure of 98066.5 Pa, irradiation is applied for 24 hours; xenon difluoride is then formed in the liquid, and crystals appear after several weeks. It should be noted, however, that the reactor must be absolutely dry; otherwise, it will corrode. The reactivity can be **increased** using catalysts such as silver oxide, nickel trioxide, nickel difluoride, and silver fluoride. This post was last edited by *ayh126 on 2009-4-20 15:00]
Reply #52009-04-25
Is the production process that easy to handle? Let’s all go start a factory. The experimental methods are a bit…
Reply #62009-04-25
Could you specify which type of F compound it is?
Reply #72009-05-04
Lab methods work too; waiting for the upload from upstairs by 6# ywjiebd
Reply #82009-05-06
Just a few sentences: 1. Method of producing fluorine: electrolyzing a molten mixture of KF and HF. 2. Carbon tetrafluoride: Produced by electrolyzing acetic acid dissolved in anhydrous hydrofluoric acid. 3. HF: Produced by the reaction of fluorite with concentrated sulfuric acid. 4. SF6: Produced by the reaction of sulfur and fluorine at high temperatures. It is essential to be aware of the dangers of fluoride in order to proceed and decide on the appropriate material to use. Be safe.
Reply #92009-05-06
Could you explain the various production methods in more detail upstairs? Hehe, it’s too simple. 9# ywjiebd
Reply #102009-05-07
As long as those familiar with chemistry understand the properties of the relevant substances and select the right materials, they can produce them. To purify it, one needs to understand low-temperature distillation. It’s also necessary to choose the right materials; it’s quite complicated, and there’s no need to go into further detail.
Reply #112009-05-09
Could you provide some information or precautions regarding low-temperature distillation?
Reply #122009-05-20
Find this link and check it out by yourself: http://bbs.hcbbs.com/thread-91336-1-1.html
Reply #132022-11-03
Thanks for sharing, coming in to learn!* ! ! ! !

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