RU2000111508A - COLLOID BOROSILICATES AND THEIR APPLICATION IN PAPER RECEIVING - Google Patents

COLLOID BOROSILICATES AND THEIR APPLICATION IN PAPER RECEIVING

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Publication number
RU2000111508A
RU2000111508A RU2000111508/12A RU2000111508A RU2000111508A RU 2000111508 A RU2000111508 A RU 2000111508A RU 2000111508/12 A RU2000111508/12 A RU 2000111508/12A RU 2000111508 A RU2000111508 A RU 2000111508A RU 2000111508 A RU2000111508 A RU 2000111508A
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RU
Russia
Prior art keywords
borosilicate
alkali metal
silicon
molar ratio
aqueous solution
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RU2000111508/12A
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Russian (ru)
Other versions
RU2201396C2 (en
Inventor
Брюс А. КЕЙЗЕР
Джеймс Е. УИТТЕН
Original Assignee
Налко Кемикал Компани
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Publication of RU2000111508A publication Critical patent/RU2000111508A/en
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Publication of RU2201396C2 publication Critical patent/RU2201396C2/en

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Claims (15)

1. Синтетический аморфный боросиликат, отличающийся тем, что он имеет размер частицы 1-2000 нм и площадью поверхности 15-3000 м2/г, в котором указанный аморфный синтетический боросиликат не является боросиликатным стеклом.1. Synthetic amorphous borosilicate, characterized in that it has a particle size of 1-2000 nm and a surface area of 15-3000 m 2 / g, wherein said amorphous synthetic borosilicate is not borosilicate glass. 2. Синтетический боросиликат по п. 1, отличающийся тем, что его размер частицы составляет 1-200 нм. 2. Synthetic borosilicate according to claim. 1, characterized in that its particle size is 1-200 nm. 3. Синтетический боросиликат по п. 1, отличающийся тем, что его размер частицы составляет 20-80 нм. 3. Synthetic borosilicate under item 1, characterized in that its particle size is 20-80 nm. 4. Синтетический боросиликат по п. 1, отличающийся тем, что имеет площадь поверхности 250-3000 м2/г.4. Synthetic borosilicate according to claim 1, characterized in that it has a surface area of 250-3000 m 2 / g. 5. Синтетический боросиликат по п. 1, отличающийся тем, что имеет площадь поверхности 700-3000 м2/г.5. Synthetic borosilicate under item 1, characterized in that it has a surface area of 700-3000 m 2 / g. 6. Синтетическая аморфная боросиликатная композиция, отличающаяся тем, что имеет
а. молярное отношение бора к кремнию от 1: 1000 до 100: 1;
b. молярное отношение щелочного металла к кремнию от 6: 1000 до 1,04: 1;
с. размер частицы 1-2000 нм;
d. площадь поверхности 15-2000 м2/г,
в котором указанный синтетический аморфный боросиликат не является боросиликатным стеклом.
6. Synthetic amorphous borosilicate composition, characterized in that it has
but. boron to silicon molar ratio from 1: 1000 to 100: 1;
b. the molar ratio of alkali metal to silicon is from 6: 1000 to 1.04: 1;
with. particle size 1-2000 nm;
d. surface area 15-2000 m 2 / g,
wherein said synthetic amorphous borosilicate is not borosilicate glass.
7. Композиция по п. 6, отличающаяся тем, что
а. молярное отношение бора к кремнию составляет от 1: 100 до 2: 5;
b. молярное отношение щелочного металла к кремнию составляет от 6: 1000 до 1,04: 1;
с. размер частицы составляет 1-80 нм;
d. площадь поверхности составляет 250-3000 м2/г.
7. The composition according to p. 6, characterized in that
but. the molar ratio of boron to silicon is from 1: 100 to 2: 5;
b. the molar ratio of alkali metal to silicon is from 6: 1000 to 1.04: 1;
with. particle size is 1-80 nm;
d. surface area is 250-3000 m 2 / g.
8. Композиция по п. 6, отличающаяся тем, что
а. молярное отношение бора к кремнию составляет от 1: 100 до 2: 5;
b. молярное отношение щелочного металла к кремнию составляет от 6: 1000 до 1,04: 1;
с. размер частицы составляет 20-80 нм;
d. площадь поверхности составляет 700-3000 м2/г.
8. The composition according to p. 6, characterized in that
but. the molar ratio of boron to silicon is from 1: 100 to 2: 5;
b. the molar ratio of alkali metal to silicon is from 6: 1000 to 1.04: 1;
with. particle size is 20-80 nm;
d. surface area is 700-3000 m 2 / g.
9. Аморфный коллоидный боросиликат, отличающийся тем, что имеет
а. молярное отношение бора к кремнию от 1: 1000 до 100: 1;
b. молярное отношение щелочного металла к кремнию от 6: 1000 до 1,04: 1;
с. размер частицы 1-2000 нм;
d. площадь поверхности 15-3000 м2/г,
и названный аморфный боросиликат получают посредством следующих стадий;
а. смешивание разбавленного водного раствора кремниевой кислоты с разбавленным водным раствором бората щелочного металла и затем;
b. выделение водной суспензии аморфного коллоидного боросиликата, имеющего величину рН от 6 до 14, в которой указанный аморфный коллоидный боросиликат не является боросиликатным стеклом.
9. Amorphous colloidal borosilicate, characterized in that it has
but. boron to silicon molar ratio from 1: 1000 to 100: 1;
b. the molar ratio of alkali metal to silicon is from 6: 1000 to 1.04: 1;
with. particle size 1-2000 nm;
d. surface area of 15-3000 m 2 / g,
and said amorphous borosilicate is prepared by the following steps;
but. mixing a dilute aqueous solution of silicic acid with a dilute aqueous solution of alkali metal borate and then;
b. isolation of an aqueous suspension of an amorphous colloidal borosilicate having a pH from 6 to 14, in which said amorphous colloidal borosilicate is not borosilicate glass.
10. Коллоидный боросиликат по п. 9, отличающийся тем, что указанный боросиликат обладает следующими свойствами:
а. молярное отношение бора к кремнию составляет от 1: 100 до 2: 5;
b. молярное отношение щелочного металла к кремнию составляет от 6: 1000 до 1,04: 1;
с. размер частицы составляет 1-200 нм;
d. площадь поверхности составляет 250-3000 м2/г.
10. Colloidal borosilicate according to claim. 9, characterized in that said borosilicate has the following properties:
but. the molar ratio of boron to silicon is from 1: 100 to 2: 5;
b. the molar ratio of alkali metal to silicon is from 6: 1000 to 1.04: 1;
with. particle size is 1-200 nm;
d. surface area is 250-3000 m 2 / g.
11. Коллоидный боросиликат по п. 9, отличающийся тем, что указанный боросиликат обладает следующими свойствами:
а. молярное отношение бора к кремнию составляет от 1: 100 до 2: 5;
b. молярное отношение щелочного металла к кремнию составляет от 6: 1000 до 1,04: 1;
с. размер частицы составляет 20-80 нм;
d. площадь поверхности составляет 700-3000 м2/г.
11. Colloidal borosilicate according to claim. 9, characterized in that said borosilicate has the following properties:
but. the molar ratio of boron to silicon is from 1: 100 to 2: 5;
b. the molar ratio of alkali metal to silicon is from 6: 1000 to 1.04: 1;
with. particle size is 20-80 nm;
d. surface area is 700-3000 m 2 / g.
12. Коллоидный боросиликат по п. 9, отличающийся тем, что в разбавленный водный раствор кремниевой кислоты прибавляют к разбавленному водному раствору бората щелочного металла. 12. Colloidal borosilicate according to claim 9, characterized in that it is added to a dilute aqueous solution of silicic acid to a dilute aqueous solution of an alkali metal borate. 13. Коллоидный боросиликат по п. 10, отличающийся тем, что разбавленный водный раствор кремниевой кислоты прибавляют к разбавленному водному раствору бората щелочного металла. 13. Colloidal borosilicate under item 10, characterized in that the diluted aqueous solution of silicic acid is added to the diluted aqueous solution of alkali metal borate. 14. Коллоидный боросиликат по п. 11, отличающийся тем, что разбавленный водный раствор кремниевой кислоты прибавляют к разбавленному водному раствору бората щелочного металла. 14. The colloidal borosilicate according to claim 11, wherein a dilute aqueous solution of silicic acid is added to a dilute aqueous solution of an alkali metal borate. 15. Аморфный коллоидный боросиликат, отличающийся тем, что его получают
а. взаимодействием разбавленного водного раствора силиката щелочного металла с катионнообменной смолой для получения кремниевой кислоты;
b. формированием осадка типа пятки смешением вместе разбавленного водного раствора бората щелочного металла с гидроксилом щелочного металла с образованием водного раствора, содержащего 0,01-30% В2О3, имеющего величину рН от 7 до 10,5;
с. добавлением разбавленной кремниевой кислоты к водному раствору при перемешивании и затем
d. выделение водного коллоидного боросиликата,
в котором указанный аморфный коллоидный боросиликат не является боросиликатным стеклом.
15. Amorphous colloidal borosilicate, characterized in that it is obtained
but. the interaction of a dilute aqueous solution of alkali metal silicate with a cation exchange resin to obtain silicic acid;
b. forming a heel type precipitate by mixing together an dilute aqueous solution of an alkali metal borate with an alkali metal hydroxyl to form an aqueous solution containing 0.01-30% B 2 O 3 , having a pH from 7 to 10.5;
with. by adding dilute silicic acid to the aqueous solution while stirring and then
d. isolation of aqueous colloidal borosilicate,
wherein said amorphous colloidal borosilicate is not borosilicate glass.
RU2000111508/12A 1997-09-30 1998-09-17 Colloidal borosilicates and their employment in papermaking RU2201396C2 (en)

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