MODIFIED LAMINATED SILICATE-METAL MATERIAL AND THE METHOD OF ITS PRODUCTION Russian patent published in 2007 - IPC C01B33/38 C01B39/04 C01B39/48 

Abstract RU 2299854 C2

FIELD: chemical industry; methods of production of the modified laminated silicate-metal material.

SUBSTANCE: the invention is pertaining to the field of production of the modified laminated silicate-metal material, in particular, to the method of its production. The modified laminated silicate-metal material is produced by the method including the following stages from the first stage up to fifth stage: the first stage provides for heating of the mixture containing the compound-template, boron compound, silicon-containing compound and the water with so production of the precursor (A); the second stage of the acid treatment of the precursor (A) produced at the first stage, with so production of the precursor (B); the third stage of heating of the precursor (B) produced at the second stage, at presence of the substance promoting the swelling for the purpose to stimulate the swelling of the precursor (B), with so production of the precursor (C); the fourth stage of the modification of the version of the layers bundling in the precursor (D) produced at the third stage with so production of the precursor (D); and the fifth stage of the burning of the precursor (D) produced at the fourth stage, with so production of the modified laminated silicate-metal material. The invention allows production of the laminated material, in which the element having the large ionic radius should be introduced into the compound frame in the large quantity.

EFFECT: the invention allows production of the laminated material, in which the element having the big ionic radius should be introduced into the compound frame in the large quantity.

33 cl, 4 dwg

Similar patents RU2299854C2

Title Year Author Number
METHOD OF PRODUCING MWW-ZEOLITIC MATERIAL CONTAINING BORON AND TITANIUM 2015
  • Parvulesku Andrej-Nikolae
  • Myuller Ulrikh
  • Ul Georg
  • Teles Joakhim Enrike
  • Ridel Dominik
RU2698832C2
METHOD FOR PRODUCING BORON-CONTAINING ZEOLITE MATERIAL CONTAINING FRAMEWORK MWW 2014
  • Parvulesku Andrej-Nikolaj
  • Myuller Ulrikh
  • Lyuttsel Khans-Yurgen
  • Ul Georg
  • Bajer Robert
  • Fogelsang Regina
  • Shlosser Robert
  • Ruslim Franki
  • Chajka Pavel
RU2651150C2
METHOD FOR ZEOLITE MATERIAL PRODUCTION 2013
  • Myuller Ulrikh
  • Parvulesku Andrej-Nikolae
  • Yang Dzheff
  • Lyuttsel Khans-Yurgen
  • Ul Georg
  • Dumzer Shtefan
RU2619685C2
CATALYST MATERIALS AND METHOD OF PRODUCING SAID MATERIALS 2005
  • Kumar Narendra
  • Tiitta Mar'Ja
  • Salmi Tapio
  • Ehsterkholm Khejdi
RU2397018C2
PROCESS FOR PREPARING TITANIUM-CONTAINING ZEOLITIC MATERIAL HAVING MWW FRAMEWORK STRUCTURE 2014
  • Parvulesku Andrej-Nikolaj
  • Myuller Ulrikh
  • Lyuttsel Khans-Yurgen
  • Ul Georg
  • Bajer Robert
  • Fogelsang Regina
  • Teles Joakim Khenrike
  • Ridel Dominik
  • Urbanchik Daniel
  • Vegerle Ulrike
RU2650973C2
MODIFIED CARRIER MATERIALS FOR CATALYSTS 2005
  • Kimmich Barbara
  • Uehjd Lesli Eh.
  • Vang Tao
  • Moonen Rulandus Kh. V.
  • Sijpkes Andre Kh.
RU2422433C2
POST-TREATMENT OF DEBORATED ZEOLITE MWW 2013
  • Parvulesku Andrej-Nikolae
  • Yang Dzheff
  • Maurer Shtefan
  • Gaab Manuela
  • Zajdel Karsten
  • Gerlakh Olga
  • Myuller Ulrikh
RU2638851C2
METHOD FOR PRODUCING TITANIUM-CONTAINING ZEOLITE 2017
  • Parvulesku, Andrej-Nikolae
  • Myuller, Ulrikh
  • Fogelzang, Regina
  • Bruns, Nikole Zabine
  • Vajdert, Jan-Oliver
RU2757001C2
REGENERATION OF TITANIUM-CONTAINING ZEOLITE 2014
  • Parvulesku Andrej-Nikole
  • Myuller Ulrikh
  • Teles Joakhim Enrike
  • Zeelig Bianka
  • Kampe Filip
  • Veber Markus
  • Resh Peter
  • Bartosh Kristian
  • Ridel Dominik
  • Urbanchik Daniel
  • Shreder Aleksander
  • Vegerle Ulrike
RU2673798C9
LAYERED CARRIER MATERIAL FOR CATALYST 2004
  • Van Tao
  • Uehjd Lesli Eh.
  • Von Viktor
  • Sokolovskij Valerij
RU2380154C2

RU 2 299 854 C2

Authors

Tatsumi Takasi

Vu Peng

Tsjudzi Katsjuuki

Dates

2007-05-27Published

2004-02-02Filed