IP Library Patent Application 18839248
Patent Application
App. No. 18/839,248

STABILISED ZINC OXIDE MATERIALS

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Quick Facts
Patent No.
US None
App. No.
18/839,248
Abstract

A silicon-modified zinc oxide material, wherein the silicon-modified zinc oxide material (i) has a BET surface area of at least 50 m 2 /g, (ii) has a Si:Zn atomic ratio in the range of 0.001 to 0.5:1 and (iii) is in the form of a shaped unit selected from a pellet, extrudate or granule, or a wash-coat on a monolith support. The silicon-modified zinc oxide material has improved resistance to thermal sintering and may be used as a catalyst or sorbent material.

Claims (28)

1 . A silicon-modified zinc oxide material suitable for use in a catalyst or sorbent material, wherein the silicon-modified zinc oxide material (i) has a BET surface area of at least 50 m 2 /g, (ii) has a Si:Zn atomic ratio in the range of 0.001 to 0.5:1 and (iii) is in the form of a shaped unit selected from a pellet, extrudate or granule, or a wash-coat on a monolith support.

2 . The silicon-modified zinc oxide material according to claim 1 , wherein the Si:Zn atomic ratio is in the range of 0.01 to 0.1:1.

3 . A silicon-modified zinc oxide material according to claim 1 , wherein the Si content, expressed as SiO 2 , is up to 10% by weight.

4 . The A-silicon-modified zinc oxide material according to claim 1 , wherein the silicon is incorporated into the zinc oxide lattice.

5 . A silicon-modified zinc oxide material according to claim 1 , further comprising an alumina, or a hydrated alumina in an amount up to 20% by weight of the material.

6 . A silicon-modified zinc oxide material according to claim 1 , wherein the pellets, extrudates or granules have a length and width each in the range 1 to 25 mm, with an aspect ratio≤4.

7 . A silicon-modified zinc oxide material according to claim 1 in the form of a wash-coat on a monolith support, wherein the monolith support has a length and width each in the range 10 to 100 cm.

8 . A silicon-modified zinc oxide material according to claim 1 , wherein the BET surface area is ≥55 m 2 /g.

9 . A silicon-modified zinc oxide material according to claim 1 , having one or more 29 Si solid state nuclear magnetic resonance (SSNMR) signals in the range from about −60 ppm to −80 ppm, referenced against kaolinite at −91.2 ppm.

10 . A method for making the silicon-modified zinc oxide material according to claim 1 , comprising the steps of:

(i) forming, in an aqueous medium, an intimate mixture comprising a precipitate of zinc compounds and silica, wherein the silica is provided by a soluble silicate or a colloidal silica,

(ii) recovering, washing and drying the intimate mixture to form a dried composition, and

(iii) forming a shaped unit by calcining and shaping the dried composition by pelleting, extruding or granulating, or by applying the dried composition or calcined composition as a wash coat to a monolithic support.

11 . A method according to claim 10 , wherein the precipitate of zinc compounds and silica is prepared by mixing an acidic aqueous solution containing a zinc compound with an aqueous alkaline precipitant solution in a precipitation vessel.

12 . A method according to claim 11 , wherein the zinc compound is a zinc nitrate and the alkaline precipitant comprises an alkali metal carbonate.

13 . A method according to claim 11 , wherein the precipitation is performed at a temperature in the range of 40 to 80° C.

14 . A method according to claim 11 , wherein the precipitate is aged in a separate ageing vessel at a temperature in the range of 10 to 80° C.

15 . A method according to claim 10 , wherein the silica is derived from a silica sol, or from a water-soluble silicon compound, or from an organo-silicate.

16 . A method according to claim 11 , wherein a silica sol is added to the acidic aqueous solution and/or added to the precipitation vessel and/or the ageing vessel.

17 . A method according to claim 11 , wherein an alkali metal silicate is added to the alkaline precipitant solution and/or to the precipitation vessel and/or ageing vessel.

18 . A method according to claim 11 , wherein an alumina sol or a soluble aluminium compound is added to the precipitation vessel.

19 . A method according to claim 10 , wherein the drying step is performed at a temperature in the range of 90-150° C.

20 . A method according to claim 10 , wherein the calcination is performed at a temperature in the range of 225 to 450° C.

21 . A method according to claim 10 , wherein the calcination is performed before shaping by pelleting, extruding or granulating.

22 . A catalyst comprising the silicon-modified zinc oxide according to claim 1 supporting a catalytically active metal or metal compound.

23 . A catalytic process using a catalyst according to claim 22 .

24 . A sorbent or sorbent precursor comprising the silicon-modified zinc oxide according to claim 1 .

25 . A sorbent process using a sorbent or sorbent precursor according to claim 24 to capture sulphur compounds or chloride compounds from process fluids or capture heavy metals from contaminated gaseous or liquid fluid streams.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2025
From: JOHNSON MATTHEY PLC
To: JOHNSON MATTHEY DAVY TECHNOLOGIES LIMITED
Reel/Frame 072941/0488 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 16, 2024
From: GARCIA, MONICA; GLEN, PAULINE ELIZABETH; MACLEOD, NORMAN; NICHOLSON, MICHAEL THOMAS
To: JOHNSON MATTHEY PUBLIC LIMITED COMPANY
Reel/Frame 068675/0926 →