AT67202B - Process for the production of oxygen baths that remain clear. - Google Patents

Process for the production of oxygen baths that remain clear.

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Publication number
AT67202B
AT67202B AT67202DA AT67202B AT 67202 B AT67202 B AT 67202B AT 67202D A AT67202D A AT 67202DA AT 67202 B AT67202 B AT 67202B
Authority
AT
Austria
Prior art keywords
production
oxygen
manganese
baths
remain clear
Prior art date
Application number
Other languages
German (de)
Original Assignee
Max Elb Ges Mit Beschraenkter
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Max Elb Ges Mit Beschraenkter filed Critical Max Elb Ges Mit Beschraenkter
Application granted granted Critical
Publication of AT67202B publication Critical patent/AT67202B/en

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Description

  

   <Desc/Clms Page number 1> 
 



  Verfahren zur Herstellung von klarbleibenden Sauerstoffbädern. 



   Den Gegenstand der Erfindung bildet ein Verfahren zur Herstellung von Sauerstoffbädern. 



  Man hat bereits Mangansalze als Katalysatoren zur Entwicklung von Sauerstoff aus labilen Peroxyden, Persalzen oder Persäuren verwendet. In allen diesen Fällen scheidet sich Mangan in irgend einer Oxydform ab, und ist besonders das abgeschiedene Mangansuperoxyd insofern sehr störend, als es nicht nur an den Wänden des   Badewasserbehälters,   sondern auch an dem Körper des Badenden sich ziemlich fest ansetzt. Dieser Übelstand ist bei denjenigen Salzen, die das Mangan in anderen Oxyd- bzw. Hydratstufen ausscheiden, wesentlich besser, indessen wird auch hier immer noch das Bad stark getrübt. 



   Man hat nun bereits zur Herstellung von   Sauerstonbädern   Mangantartrat bzw. Weinsäure in geringen Mengen verwendet, doch bezweckte man mit dem Zusatz der genannten Stoffe nicht eine restlose Zersetzung des Sauerstoffträgers, sondern die Herstellung von Mangandioxydhydrosol, um durch dieses die katalytische Sauerstoffentwicklung herbeizuführen. Die Entwicklung des Mangandioxydhydrosols aus Mangantartrat usw. geht jedoch nur bei Verwendung 
 EMI1.1 
   Mangandioxyd nicht   in die wirksame kolloidale Lösung   übergeht, sondern   in der unwirksameren Flockenform auftritt. 



   Der Erfinder hat nun gefunden, dass bei der Benutzung von organischen   Mangansalzen   als Katalysatoren bei Gegenwart von Säuren ein Bad erhalten wird, welches klar bleibt und bei 
 EMI1.2 
 Säuren, und zwar am besten die auch bereits in dem Manganosalz vorhandenen zuzusetzen, da bei Anwendung anorganischer Säuren infolge der Umsetzung das organische Mangansalz in das 
 EMI1.3 
 



   Die vorliegenden Bäder vereinigen also die günstigen Eigenschaften der organischen   Mangnpsaize als Katalysatoren mit   den Vorzügen der Bäder, bei denen der Sauerstoff durch Zusatz von Säuren zu   Sauerstoffträgern   entwickelt wird. 



   Für die Zwecke des vorstehend beschriebenen   Verfahrens kommen alle organischen Mangano-   
 EMI1.4 
 

**WARNUNG** Ende DESC Feld kannt Anfang CLMS uberlappen**.



   <Desc / Clms Page number 1>
 



  Process for the production of oxygen baths that remain clear.



   The subject matter of the invention is a process for the production of oxygen baths.



  Manganese salts have already been used as catalysts for the development of oxygen from labile peroxides, persalts or peracids. In all of these cases manganese is deposited in some form of oxide, and the deposited manganese superoxide in particular is very troublesome in that it adheres quite firmly not only to the walls of the bathtub but also to the body of the bather. This deficiency is much better with those salts which precipitate the manganese in other oxide or hydrate levels, but here too the bath is still heavily clouded.



   Manganese tartrate or tartaric acid has already been used in small quantities for the production of oxygen baths, but the aim with the addition of the substances mentioned was not a complete decomposition of the oxygen carrier, but the production of manganese dioxide hydrosol in order to induce the catalytic evolution of oxygen. However, the development of manganese dioxide hydrosol from manganese tartrate etc. only works when used
 EMI1.1
   Manganese dioxide does not pass into the effective colloidal solution, but occurs in the less effective flake form.



   The inventor has now found that when organic manganese salts are used as catalysts, in the presence of acids, a bath is obtained which remains clear and with
 EMI1.2
 Acids, and it is best to add those already present in the manganese salt, since when using inorganic acids the organic manganese salt is converted into the
 EMI1.3
 



   The baths here combine the favorable properties of organic manganese salts as catalysts with the advantages of baths in which the oxygen is developed into oxygen carriers by adding acids.



   For the purposes of the process described above, all organic manganese
 EMI1.4
 

** WARNING ** End of DESC field may overlap beginning of CLMS **.

 

Claims (1)

Verfahren zur Herstellung von klarbleibcnden Sauerstoubädern, dadurch gekennzeichnet, dass als Katalysatoren organische Manganosalze hei Gegenwart von freier, organischer Säure verwendet werden. **WARNUNG** Ende CLMS Feld Kannt Anfang DESC uberlappen**. Process for producing clear oxygen baths, characterized in that organic manganese salts in the presence of free organic acids are used as catalysts. ** WARNING ** End of CLMS field may overlap beginning of DESC **.
AT67202D 1912-02-12 1912-02-12 Process for the production of oxygen baths that remain clear. AT67202B (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
AT67202T 1912-02-12

Publications (1)

Publication Number Publication Date
AT67202B true AT67202B (en) 1914-12-10

Family

ID=3589102

Family Applications (1)

Application Number Title Priority Date Filing Date
AT67202D AT67202B (en) 1912-02-12 1912-02-12 Process for the production of oxygen baths that remain clear.

Country Status (1)

Country Link
AT (1) AT67202B (en)

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