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DE630905C - Process for the production of hydrogen peroxide - Google Patents

Process for the production of hydrogen peroxide

Info

Publication number
DE630905C
DE630905C DEI32656D DEI0032656D DE630905C DE 630905 C DE630905 C DE 630905C DE I32656 D DEI32656 D DE I32656D DE I0032656 D DEI0032656 D DE I0032656D DE 630905 C DE630905 C DE 630905C
Authority
DE
Germany
Prior art keywords
hydrogen peroxide
production
hydrogen
electrical discharges
silent electrical
Prior art date
Legal status (The legal status 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 status listed.)
Expired
Application number
DEI32656D
Other languages
German (de)
Inventor
Dr Oswin Nitzschke
Dr Erich Noack
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
IG Farbenindustrie AG
Original Assignee
IG Farbenindustrie AG
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 IG Farbenindustrie AG filed Critical IG Farbenindustrie AG
Priority to DEI32656D priority Critical patent/DE630905C/en
Application granted granted Critical
Publication of DE630905C publication Critical patent/DE630905C/en
Expired legal-status Critical Current

Links

Classifications

    • CCHEMISTRY; METALLURGY
    • C01INORGANIC CHEMISTRY
    • C01BNON-METALLIC ELEMENTS; COMPOUNDS THEREOF; METALLOIDS OR COMPOUNDS THEREOF NOT COVERED BY SUBCLASS C01C
    • C01B15/00Peroxides; Peroxyhydrates; Peroxyacids or salts thereof; Superoxides; Ozonides
    • C01B15/01Hydrogen peroxide
    • C01B15/029Preparation from hydrogen and oxygen
    • C01B15/0295Preparation from hydrogen and oxygen by electrical discharge

Landscapes

  • Chemical & Material Sciences (AREA)
  • Organic Chemistry (AREA)
  • Inorganic Chemistry (AREA)
  • Electrolytic Production Of Non-Metals, Compounds, Apparatuses Therefor (AREA)

Description

Verfahren zur Herstellung von Wasserstoffsuperoxyd Es ist schon ein Verfahren zur Ausführung von Gasreaktionen mit mindestens einem höher als der schwerstflüchtige Ausgangsstoff siedenden Umsetzungsprodukt unter dem Einfluß stiller elektrischer Entladungen in durch feste Wände begrenzten Entladungsräumen bekanntgeworden, das darin besteht, daß man ungleichmäßiges Ansetzen von Reaktionspradukten an die Wandungen des Entladungsgefäßes dadurch verhütet, daß man eine Sättigung des Gasgemisches mit Reaktiansprodukten verhindert. Es weist gegenüber der bisherigen Arbeitsweise eine Reihe von bedeutenden technischen und wirtschaftlichen Vorteilen auf. Die Arbeitslveise besteht darin, daß durch an sich bekannte Maßnahmen (Arbeiten oberhalb des Taupunktes oder unterhalb der Sättigungsgrenze des Gas- bzw. Dampfgemisches, Berieseln) ungleichmäßige Kondensation an den Gefäßwänden verhindert oder stark vermindert wird.Process for making hydrogen peroxide It's been a Process for carrying out gas reactions with at least one higher than the most volatile one Starting material boiling reaction product under the influence of silent electrical Discharges in discharge spaces delimited by solid walls became known consists in the uneven attachment of reaction products to the walls of the discharge vessel is prevented by saturation of the gas mixture prevented with reactant products. It points to the previous way of working has a number of significant technical and economic advantages. The way of working consists in that by means of known measures (working above the dew point or below the saturation limit of the gas or vapor mixture, sprinkling) uneven Condensation on the vessel walls is prevented or greatly reduced.

Die Vorteile des Verfahrens sind u. a.: a) in jedem Falle i. sehr große Erhöhung der Durchschlagsfestigkeit der Entladungsröhren, daher ist- stärkere Belastung und einfacherer Aufbau möglich, und erhöhte Betriebssicherheit, 2. Erhöhung der Energieausbeute; b) bei Verminderung der Kondensation durch Arbeiten bei höherer Temperatur i. Verminderung des Kühlwasserverbrauchs auf einen kleinen Bruchteil der ursprünglich erforderlichen Menge, 2. Gewinnung des in Wärme umgesetzten Stromanteils in Form von heißem Wasser oder Dampf, 3. Möglichkeit der Anwendung von Strömen höherer Frequenz ohne die technisch schwierige Innenkühlung.The advantages of the method include: a) in each case i. very Great increase in the dielectric strength of the discharge tubes, therefore - is stronger Load and simpler structure possible, and increased operational reliability, 2nd increase the energy yield; b) when the condensation is reduced by working at a higher level Temperature i. Reduction of the cooling water consumption to a small fraction the originally required amount, 2. extraction of the proportion of electricity converted into heat in the form of hot water or steam, 3. possibility of using higher currents Frequency without the technically difficult internal cooling.

Es hat sich weiterhin gezeigt, daß es bei der Herstellung von Wasserstoffsuperoxyd zur Erzielung dieser Vorteile genügt, wenn nur an einer Elektrode ungleichmäßige Kondensation verhindert oder stark vermindert wird. Hieraus ergibt sich in vielen Fällen eine weitere Vereinfachung der Apparatur und- des Betriebes-Es ist bekanntgeworden, bei der Ausscheidung von. Schwebekörpern aus Gasen mit Hilfe stiller elektrischer Entladungen die Niederschlagselektrode durch Kühlung oder Heizung auf die Temperatur der Außenluft zu bringen, um Störungen der Abscheidung des Staubes durch die Unterschiede von Außen- und Innentemperatur zu vermeiden. Man hat auch schon vorgeschlagen, Gasreaktionen mit flüssigen Umsetzungsprodukten unter dem Einfluß stiller elektrischer Entladungen bei @ höherer Temperatur voraü nehmen, jedoch ist bisher nicht erwähnt,-.d bei der Herstellung von Wasserstoffs upertx .. nur eine Elektrode auf einer Temperatur oberhalb des Taupunktes gehalten werden soll und daß dadurch eine Ersparnis an Energie und eine. höhere Ausbeute erzielt wird. Beispiel In einem Entladungsrohr wird ein Gemisch von 970/0 Wasserstoff und 3% Sauerstoff stillen elektrischen Entladungen ausgesetzt. Bei Anwendung der bisher üblichen Kühlung liefert die Röhre stündlich 2,5g Wasserstoffsuperoxyd. Wird das Außenrohr auf 2o°, das Innenrohr auf nur 6o° gekühlt, so schlägt sich nur am Außenrohr Wasserstoffsuperoxyd in einer Menge von 4,0 9 in der Stunde nieder, ährend am Innenrohr jede Kondensation k-@terbleibt. It has also been shown that in the production of hydrogen peroxide it is sufficient to achieve these advantages if uneven condensation is prevented or greatly reduced on only one electrode. In many cases, this results in a further simplification of the apparatus and - of the operation - it has become known during the elimination of. Floating bodies made of gases with the help of silent electrical discharges bring the collecting electrode to the temperature of the outside air by cooling or heating in order to avoid disturbances of the separation of the dust by the differences between outside and inside temperature. It has also already been proposed that gas reactions with liquid reaction products under the influence of silent electrical Discharges at @ higher temperature in advance take, however, has not yet been mentioned -. d in the production of hydrogen upertx .. only one electrode at one temperature is to be kept above the dew point and that thereby a saving of energy and a. higher yield is achieved. Example A mixture of 970/0 hydrogen and 3% oxygen is exposed to silent electrical discharges in a discharge tube. When using the cooling that has been customary up to now, the tube delivers 2.5 g of hydrogen peroxide per hour. If the outer tube is cooled to 20 ° and the inner tube to only 60 °, hydrogen peroxide only penetrates the outer tube an amount of 4.0 9 an hour, During any condensation on the inner tube k- @ remains.

Claims (1)

PATENTANSPRUCH: Verfahren zur Herstellung von Wasserstoffsuperoxyd aus Wasserstoff und Sauerstoff unter dem Einfluß stiller elektrischer Entladungen in durch feste Wände begrenzten Entladungsräumen, dadurch gekennzeichnet, daß eine der beiden Elektroden auf einer Temperatur oberhalb des Taupunktes gehalten wird.PATENT CLAIM: Process for the production of hydrogen peroxide from hydrogen and oxygen under the influence of silent electrical discharges in discharge spaces delimited by solid walls, characterized in that one of the two electrodes is kept at a temperature above the dew point.
DEI32656D 1927-11-12 1927-11-12 Process for the production of hydrogen peroxide Expired DE630905C (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
DEI32656D DE630905C (en) 1927-11-12 1927-11-12 Process for the production of hydrogen peroxide

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DEI32656D DE630905C (en) 1927-11-12 1927-11-12 Process for the production of hydrogen peroxide

Publications (1)

Publication Number Publication Date
DE630905C true DE630905C (en) 1936-06-08

Family

ID=7188194

Family Applications (1)

Application Number Title Priority Date Filing Date
DEI32656D Expired DE630905C (en) 1927-11-12 1927-11-12 Process for the production of hydrogen peroxide

Country Status (1)

Country Link
DE (1) DE630905C (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4106980A1 (en) * 1990-03-06 1991-09-12 Mitsubishi Electric Corp Hydrogen peroxide prodn. - by electric discharge in mixed gas with control of oxygen supply

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4106980A1 (en) * 1990-03-06 1991-09-12 Mitsubishi Electric Corp Hydrogen peroxide prodn. - by electric discharge in mixed gas with control of oxygen supply
US5378436A (en) * 1990-03-06 1995-01-03 Mitsubishi Denki Kabushiki Kaisha Method and apparatus for producing hydrogen peroxide

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