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Hydrogen chloride is produced by combining chlorine and hydrogen: Cl 2 + H 2 → 2 HCl. As the reaction is exothermic, the installation is called an HCl oven or HCl burner. The resulting hydrogen chloride gas is absorbed in deionized water, resulting in chemically pure hydrochloric acid. This reaction can give a very pure product, e.g. for use ...
17 Cl chlorine (Cl 2) use: 239.11 K: ... Boiling points of the elements (data page) ... Melting points of the elements (data page)
17 Cl chlorine (Cl 2) use: 171.6 K: ... melting point 302.9146 K ... Boiling points of the elements (data page) List of chemical elements
This list is sorted by boiling point of gases in ascending order, ... Hydrogen chloride: HCl −85 −114.17 36.5 ... Chlorine trifluoride dioxide: ClO 2 F 3: −21.6 ...
The large-scale production of hydrochloric acid is almost always integrated with the industrial scale production of other chemicals, such as in the chloralkali process which produces hydroxide, hydrogen, and chlorine, the latter of which can be combined to produce HCl. [31] [32] Hydrogen chloride is produced by combining chlorine and hydrogen ...
Chlorine dioxide is a chemical compound with the formula ClO 2 that exists as yellowish-green gas above 11 °C, a reddish-brown liquid between 11 °C and −59 °C, and as bright orange crystals below −59 °C. It is usually handled as an aqueous solution.
Boiling point (°C) K b (°C⋅kg/mol) Freezing point (°C) K f (°C⋅kg/mol) Data source; Aniline: 184.3 3.69 –5.96 –5.87 K b & K f [1] Lauric acid:
The temperature at standard pressure should be equal to the normal boiling point, but due to the considerable spread does not necessarily have to match values reported elsewhere. log refers to log base 10 (T/K) refers to temperature in Kelvin (K) (P/Pa) refers to pressure in Pascal (Pa)
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