The Industrial Electrolytic Regeneration of Mn2(SO4)3 for the Oxidation of Substituted Toluene to the Corresponding Benzaldehyde

A new industrial process for the electrolytic regeneration of Mn2(SO4)3 is presented in which:– a slurry of MnSO4/Mn2(SO4)3 in 55% H2SO4 is used as a carrier,– the electrolyte is purified with an optimum mode before electrogeneration, and–a new industrial electrochemical reactor is develop...

Full description

Bibliographic Details
Main Authors: Pierre Vaudano, Eric Plattner, Christos Comninellis
Format: Article
Language:deu
Published: Swiss Chemical Society 1995-01-01
Series:CHIMIA
Online Access:https://chimia.ch/chimia/article/view/2453
_version_ 1819281128179105792
author Pierre Vaudano
Eric Plattner
Christos Comninellis
author_facet Pierre Vaudano
Eric Plattner
Christos Comninellis
author_sort Pierre Vaudano
collection DOAJ
description A new industrial process for the electrolytic regeneration of Mn2(SO4)3 is presented in which:– a slurry of MnSO4/Mn2(SO4)3 in 55% H2SO4 is used as a carrier,– the electrolyte is purified with an optimum mode before electrogeneration, and–a new industrial electrochemical reactor is developed for an economical electrogeneration of Mn2(SO4)3
first_indexed 2024-12-24T00:54:46Z
format Article
id doaj.art-b2cbe9345abe4a88a3c3802ae9a8d3a0
institution Directory Open Access Journal
issn 0009-4293
2673-2424
language deu
last_indexed 2024-12-24T00:54:46Z
publishDate 1995-01-01
publisher Swiss Chemical Society
record_format Article
series CHIMIA
spelling doaj.art-b2cbe9345abe4a88a3c3802ae9a8d3a02022-12-21T17:23:30ZdeuSwiss Chemical SocietyCHIMIA0009-42932673-24241995-01-01491-2The Industrial Electrolytic Regeneration of Mn2(SO4)3 for the Oxidation of Substituted Toluene to the Corresponding BenzaldehydePierre VaudanoEric PlattnerChristos Comninellis A new industrial process for the electrolytic regeneration of Mn2(SO4)3 is presented in which:– a slurry of MnSO4/Mn2(SO4)3 in 55% H2SO4 is used as a carrier,– the electrolyte is purified with an optimum mode before electrogeneration, and–a new industrial electrochemical reactor is developed for an economical electrogeneration of Mn2(SO4)3 https://chimia.ch/chimia/article/view/2453
spellingShingle Pierre Vaudano
Eric Plattner
Christos Comninellis
The Industrial Electrolytic Regeneration of Mn2(SO4)3 for the Oxidation of Substituted Toluene to the Corresponding Benzaldehyde
CHIMIA
title The Industrial Electrolytic Regeneration of Mn2(SO4)3 for the Oxidation of Substituted Toluene to the Corresponding Benzaldehyde
title_full The Industrial Electrolytic Regeneration of Mn2(SO4)3 for the Oxidation of Substituted Toluene to the Corresponding Benzaldehyde
title_fullStr The Industrial Electrolytic Regeneration of Mn2(SO4)3 for the Oxidation of Substituted Toluene to the Corresponding Benzaldehyde
title_full_unstemmed The Industrial Electrolytic Regeneration of Mn2(SO4)3 for the Oxidation of Substituted Toluene to the Corresponding Benzaldehyde
title_short The Industrial Electrolytic Regeneration of Mn2(SO4)3 for the Oxidation of Substituted Toluene to the Corresponding Benzaldehyde
title_sort industrial electrolytic regeneration of mn2 so4 3 for the oxidation of substituted toluene to the corresponding benzaldehyde
url https://chimia.ch/chimia/article/view/2453
work_keys_str_mv AT pierrevaudano theindustrialelectrolyticregenerationofmn2so43fortheoxidationofsubstitutedtoluenetothecorrespondingbenzaldehyde
AT ericplattner theindustrialelectrolyticregenerationofmn2so43fortheoxidationofsubstitutedtoluenetothecorrespondingbenzaldehyde
AT christoscomninellis theindustrialelectrolyticregenerationofmn2so43fortheoxidationofsubstitutedtoluenetothecorrespondingbenzaldehyde
AT pierrevaudano industrialelectrolyticregenerationofmn2so43fortheoxidationofsubstitutedtoluenetothecorrespondingbenzaldehyde
AT ericplattner industrialelectrolyticregenerationofmn2so43fortheoxidationofsubstitutedtoluenetothecorrespondingbenzaldehyde
AT christoscomninellis industrialelectrolyticregenerationofmn2so43fortheoxidationofsubstitutedtoluenetothecorrespondingbenzaldehyde