RU98106633A - ACCUMULATING OXYGEN MATERIAL WITH HIGH TEMPERATURE RESISTANCE, AND ALSO WAY OF ITS PRODUCTION - Google Patents

ACCUMULATING OXYGEN MATERIAL WITH HIGH TEMPERATURE RESISTANCE, AND ALSO WAY OF ITS PRODUCTION

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Publication number
RU98106633A
RU98106633A RU98106633/12A RU98106633A RU98106633A RU 98106633 A RU98106633 A RU 98106633A RU 98106633/12 A RU98106633/12 A RU 98106633/12A RU 98106633 A RU98106633 A RU 98106633A RU 98106633 A RU98106633 A RU 98106633A
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RU
Russia
Prior art keywords
oxygen storage
storage material
oxide
carrier
material according
Prior art date
Application number
RU98106633/12A
Other languages
Russian (ru)
Other versions
RU2214861C2 (en
Inventor
Муссманн Лотар
ван Йперен Ренэ
Линднер Дитер
Кройцер Томас
Локс Эгберт
Original Assignee
Дегусса Акциенгезельшафт
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
Priority claimed from DE19714707A external-priority patent/DE19714707A1/en
Application filed by Дегусса Акциенгезельшафт filed Critical Дегусса Акциенгезельшафт
Publication of RU98106633A publication Critical patent/RU98106633A/en
Application granted granted Critical
Publication of RU2214861C2 publication Critical patent/RU2214861C2/en

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Claims (11)

1. Аккумулирующий кислород материал с высокой термостойкостью, содержащий оксид церия и по меньшей мере один стабилизатор, выбранный из группы, включающей оксид празеодима, оксид лантана, оксид иттрия и оксид неодима, причем стабилизатор или стабилизаторы присутствуют в высокодисперсной форме на поверхности носителя с высокоразвитой поверхностью, а удельная поверхность аккумулирующего кислород материала после кальцинирования на воздухе при 900° С в течение 10 ч все еще составляет более 20 м2/г, предпочтительно более 30 м2/г.1. An oxygen storage material with high heat resistance, containing cerium oxide and at least one stabilizer selected from the group consisting of praseodymium oxide, lanthanum oxide, yttrium oxide and neodymium oxide, wherein the stabilizer or stabilizers are present in a finely divided form on the surface of a carrier with a highly developed surface and the specific surface of the oxygen storage material after calcining in air at 900 ° C for 10 hours is still more than 20 m 2 / g, preferably more than 30 m 2 / g. 2. Аккумулирующий кислород материал по п. 1, отличающийся тем, что носителем является оксид церия или смешанный оксид церия и циркония. 2. The oxygen storage material according to claim 1, characterized in that the carrier is cerium oxide or a mixed oxide of cerium and zirconium. 3. Аккумулирующий кислород материал по п. 2, отличающийся тем, что носителем является смешанный оксид церия и циркония с содержанием оксида церия 60 - 90 мас.% в пересчете на общий вес смешанного оксида. 3. The oxygen storage material according to claim 2, characterized in that the carrier is a mixed cerium and zirconium oxide with a cerium oxide content of 60 to 90 wt.%, Calculated on the total weight of the mixed oxide. 4. Аккумулирующий кислород материал по п. 1, отличающийся тем, что носителем является оксид алюминия, оксид циркония, оксид титана, оксид кремния или их смешанный оксид, на котором оксид церия вместе со стабилизаторами присутствует в высокодисперсной форме. 4. The oxygen storage material according to claim 1, characterized in that the carrier is alumina, zirconium oxide, titanium oxide, silicon oxide or a mixed oxide thereof, on which cerium oxide together with stabilizers is present in finely divided form. 5. Аккумулирующий кислород материал по п. 4, отличающийся тем, что носителем является оксид циркония или оксид алюминия, на котором оксид церия и стабилизатор или стабилизаторы присутствуют в высокодисперсной форме, причем содержание оксида церия в аккумулирующем кислород материале составляет 5 - 60 мас.% в пересчете на общий вес аккумулирующего кислород материала. 5. The oxygen storage material according to claim 4, characterized in that the carrier is zirconium oxide or alumina, on which cerium oxide and a stabilizer or stabilizers are present in highly dispersed form, wherein the cerium oxide content in the oxygen storage material is 5-60 wt.% in terms of the total weight of the oxygen storage material. 6. Аккумулирующий кислород материал по любому из предыдущих пунктов, отличающийся тем, что он содержит 0,1 - 10 мас.% стабилизаторов в пересчете на общий вес аккумулирующего кислород материала. 6. The oxygen storage material according to any one of the preceding paragraphs, characterized in that it contains 0.1 to 10 wt.% Stabilizers, calculated on the total weight of the oxygen storage material. 7. Аккумулирующий кислород материал по п. 6, отличающийся тем, что стабилизатор или стабилизаторы присутствуют на носителе в рентгеноаморфном виде с размерами кристаллитов менее 7 нм. 7. The oxygen storage material according to claim 6, characterized in that the stabilizer or stabilizers are present on the carrier in an X-ray amorphous form with crystallite sizes less than 7 nm. 8. Аккумулирующий кислород материал по п. 7, отличающийся тем, что в качестве стабилизатора применяется оксид празеодима. 8. The oxygen storage material according to claim 7, characterized in that praseodymium oxide is used as a stabilizer. 9. Аккумулирующий кислород материал, отличающийся тем, что он содержит смесь нескольких аккумулирующих кислород материалов по пп. 6-8. 9. The oxygen storage material, characterized in that it contains a mixture of several oxygen storage materials according to paragraphs. 6-8. 10. Применение аккумулирующего кислород материала по любому из предыдущих пунктов в каталитических нейтрализаторах отработавших газов двигателей внутреннего сгорания. 10. The use of oxygen storage material according to any one of the preceding paragraphs in catalytic converters of exhaust gases of internal combustion engines. 11. Способ получения аккумулирующего кислород материала по любому из предыдущих пунктов, отличающийся тем, что растворенные предшественники стабилизатора или стабилизаторов и необязательно оксид церия вводят в предварительно приготовленную водную дисперсию выбранного носителя при постоянном перемешивании дисперсии и затем, медленно повышая рН дисперсии до значений 8-10 путем добавления основания, осаждают на носитель. 11. A method of producing an oxygen storage material according to any one of the preceding paragraphs, characterized in that the dissolved stabilizer or stabilizer precursors and optionally cerium oxide are introduced into a pre-prepared aqueous dispersion of the selected carrier with constant stirring of the dispersion and then slowly increasing the dispersion pH to values of 8-10 by adding a base, precipitate on a carrier.
RU98106633/12A 1997-04-09 1998-04-08 Oxygen-accumulating material with high thermal stability and method for its preparing RU2214861C2 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE19714707.0 1997-04-09
DE19714707A DE19714707A1 (en) 1997-04-09 1997-04-09 Oxygen-storing material with high temperature stability and process for its production

Publications (2)

Publication Number Publication Date
RU98106633A true RU98106633A (en) 2000-02-27
RU2214861C2 RU2214861C2 (en) 2003-10-27

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Country Status (17)

Country Link
US (1) US6576207B1 (en)
EP (1) EP0870543B1 (en)
JP (1) JP4264142B2 (en)
KR (1) KR100556046B1 (en)
CN (1) CN1114487C (en)
AR (1) AR012345A1 (en)
AT (1) ATE247521T1 (en)
AU (1) AU732362B2 (en)
BR (1) BR9806463B1 (en)
CA (1) CA2234348C (en)
CZ (1) CZ106598A3 (en)
DE (2) DE19714707A1 (en)
PL (1) PL325736A1 (en)
RU (1) RU2214861C2 (en)
TR (1) TR199800612A2 (en)
TW (1) TW376330B (en)
ZA (1) ZA983001B (en)

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