IP Library Patent Application 14642324
Patent Application
App. No. 14/642,324

Cerium (IV) Oxide with Exceptional Biological Contaminant Removal Properties

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Quick Facts
Patent No.
US None
App. No.
14/642,324
Abstract

This disclosure relates to cerium (IV) oxide composition for removing biological and other contaminants from aqueous streams. It is particularly concerned with cerium (IV) oxide compositions for removing biological contaminants from groundwater and drinking water. Typically, the biological contaminants are bacteria, fungi and algae.

Claims (112)

1 . A method, comprising:

contacting a cerium (IV) oxide composition with a biological contaminant-containing aqueous stream, wherein one or more of the following (i)-(vi) is true:

(i) the cerium (IV) oxide composition has a zeta potential at about pH 7 of no more than about 30 mV and of more than about 1 mV;

(ii) the cerium (IV) oxide composition has a particle size D 10 of more than about 0.5 μm and no more than about 7 μm;

(iii) the cerium (IV) oxide composition has a particle size D 50 of more than about 2 μm and no more than about 20 μm;

(iv) the cerium (IV) oxide composition has a particle size D 90 of more than about 12 μm and no more than about 50 μm;

(v) the cerium (IV) oxide composition has a crystallite size of more than about 1 nm and no more than about 22 nm; and

(vi) the cerium (IV) oxide composition has an acidic site concentration of more than about 0.0001 acidic sites/kg and no more than about 0.020 acidic sites/kg; and

wherein the contacting of the cerium (IV) oxide composition with the biological contaminant-containing aqueous stream removes some of the biological contaminant from the biological contaminant-containing aqueous stream.

2 . The method of claim 1 , wherein the biological contaminant is selected from the group consisting of bacteria, yeasts, algae, and viruses.

3 . The method of claim 1 , wherein the biological contaminant is one selected from the group of Klebsiella oxytoca, Saccharomyces cerevisiae, Selenastum capriocornutum , and MS2.

4 . The method of claim 2 , wherein the cerium (IV) oxide composition removes more of the biological contaminant per gram of CeO 2 than an oxide of cerium (IV) and wherein one or more of (i), (ii), (iii), (iv), (v) and (vi) are false for the oxide of cerium (IV).

5 . The method of claim 1 , wherein (i) is true and wherein one of the following is true:

(I) wherein (ii), (iii), (iv), (v) and (vi) are false;

(II) wherein one of (ii), (iii), (iv), (v) and (vi) is false and the others of (ii), (iii), (iv), (v) and (vi) are true;

(III) wherein two of (ii), (iii), (iv), (v) and (vi) are false and the others of (ii), (iii), (iv), (v) and (vi) are true;

(IV) wherein three of (ii), (iii), (iv), (v) and (vi) are false and the others of (ii), (iii), (iv), (v) and (vi) are true;

(V) wherein four of (ii), (iii), (iv), (v) and (vi) are false and the others of (ii), (iii), (iv), (v) and (vi) is true; and

(VI) wherein five of (ii), (iii), (iv), (v) and (vi) are false and the other of (ii), (iii), (iv), (v) and (vi) is true.

6 . The method of claim 1 , wherein (ii) is true and where in one of the following is true:

(I) wherein (i), (iii), (iv), (v) and (vi) are false;

(II) wherein one of (i), (iii), (iv), (v) and (vi) is false and the others of (i), (iii), (iv), (v) and (vi) are true;

(III) wherein two of (i), (iii), (iv), (v) and (vi) are false and the others of (i), (iii), (iv), (v) and (vi) are true;

(IV) wherein three of (i), (iii), (iv), (v) and (vi) are false and the others of (i), (iii), (iv), (v) and (vi) are true;

(V) wherein four of (i), (iii), (iv), (v) and (vi) are false and the others of (i), (iii), (iv), (v) and (vi) is true; and

(VI) wherein five of (i), (iii), (iv), (v) and (vi) are false and the other of (i), (iii), (iv), (v) and (vi) is true.

7 . The method of claim 1 , wherein (iii) is true and where in one of the following is true:

(I) wherein (i), (ii), (iv), (v) and (vi) are false;

(II) wherein one of (i), (ii), (iv), (v) and (vi) is false and the others of (i), (ii), (iv), (v) and (vi) are true;

(III) wherein two of (i), (ii), (iv), (v) and (vi) are false and the others of (i), (ii), (iv), (v) and (vi) are true;

(IV) wherein three of (i), (ii), (iv), (v) and (vi) are false and the others of (i), (ii), (iv), (v) and (vi) are true;

(V) wherein four of (i), (ii), (iv), (v) and (vi) are false and the others of (i), (ii), (iv), (v) and (vi) is true; and

(VI) wherein five of (i), (ii), (iv), (v) and (vi) are false and the other of (i), (ii), (iv), (v) and (vi) is true.

8 . The method of claim 1 , wherein (iv) is true and where in one of the following is true:

(I) wherein (i), (ii), (iii), (v) and (vi) are false;

(II) wherein one of (i), (ii), (iii), (v) and (vi) is false and the others of (i), (ii), (iii), (v) and (vi) are true;

(III) wherein two of (i), (ii), (iii), (v) and (vi) are false and the others of (i), (ii), (iii), (v) and (vi) are true;

(IV) wherein three of (i), (ii), (iii), (v) and (vi) are false and the others of (i), (ii), (iii), (v) and (vi) are true;

(V) wherein four of (i), (ii), (iii), (v) and (vi) are false and the others of (i), (ii), (iii), (v) and (vi) is true; and

(VI) wherein five of (i), (ii), (iii), (v) and (vi) are false and the other of (i), (ii), (iii), (v) and (vi) is true.

9 . The method of claim 1 , wherein (v) is true and where in one of the following is true:

(I) wherein (i), (ii), (iii), (iv) and (vi) are false;

(II) wherein one of (i), (ii), (iii), (iv) and (vi) is false and the others of (i), (ii), (iii), (iv) and (vi) are true;

(III) wherein two of (i), (ii), (iii), (iv) and (vi) are false and the others of (i), (ii), (iii), (iv) and (vi) are true;

(IV) wherein three of (i), (ii), (iii), (iv) and (vi) are false and the others of (i), (ii), (iii), (iv) and (vi) are true;

(V) wherein four of (i), (ii), (iii), (iv) and (vi) are false and the others of (i), (ii), (iii), (iv) and (vi) is true; and

(VI) wherein five of (i), (ii), (iii), (iv) and (vi) are false and the other of (i), (ii), (iii), (iv) and (vi) is true.

10 . The method of claim 1 , wherein (vi) is true and where in one of the following is true:

(I) wherein (i), (ii), (iii), (iv) and (v) are false;

(II) wherein one of (i), (ii), (iii), (iv) and (v) is false and the others of (i), (ii), (iii), (iv) and (v) are true;

(III) wherein two of (i), (ii), (iii), (iv) and (v) are false and the others of (i), (ii), (iii), (iv) and (v) are true;

(IV) wherein three of (i), (ii), (iii), (iv) and (v) are false and the others of (i), (ii), (iii), (iv) and (v) are true;

(V) wherein four of (i), (ii), (iii), (iv) and (v) are false and the others of (i), (ii), (iii), (iv) and (v) is true; and

(VI) wherein five of (i), (ii), (iii), (iv) and (v) are false and the other of (i), (ii), (iii), (iv) and (v) is true.

11 . The method of claim 1 , wherein one or more of the following is true:

(a) the zeta potential at about pH 7 is from about 7.5 to about 12.5 mV;

(b) the particle size D 10 is from about 1 to about 3 μm;

(c) the particle size D 50 is from about 7.5 to about 10.5 μm;

(d) the particle size D 90 is from about 20 to about 30 μm;

(e) the crystallite size is from about 7.5 to about 12.5 nm; and

(f) wherein the number of acid sites is no more than about 0.02 acidic sites/kg.

12 . A device, comprising:

an inlet to receive

an aqueous stream having a first level of a biological contaminant;

a contacting chamber, in fluid communication with the inlet and containing a cerium (IV) oxide composition to contact the aqueous stream, wherein one or more of the following (i)-(vi) is true:

(i) the cerium (IV) oxide composition has a zeta potential at about pH 7 of no more than about 30 mV and of more than about 1 mV;

(ii) the cerium (IV) oxide composition has a particle size D 10 of more than about 0.5 μm and no more than about 7 μm;

(iii) the cerium (IV) oxide composition has a particle size D 50 of more than about 2 μm and no more than about 20 μm;

(iv) the cerium (IV) oxide composition has a particle size D 90 of more than about 12 μm and no more than about 50 μm;

(v) the cerium (IV) oxide composition has a crystallite size of more than about 1 nm and no more than about 22 nm; and

(vi) the cerium (IV) oxide composition has an acidic site concentration of more than about 0.0001 acidic sites/kg and no more than about 0.020 acidic sites/kg; and

wherein the aqueous stream has the first level of biological contaminant prior to the of the aqueous stream contacting the cerium (IV) oxide composition and a second level of biological contaminant after the contacting of the aqueous stream with the cerium (IV) oxide, wherein the first level of biological contaminant is greater than the second level of the biological contaminant, and

an outlet in fluid communication with the contacting chamber to output the aqueous stream having second level of the biological contaminant.

13 . The device of claim 12 , wherein the biological contaminant is selected from the group consisting of bacteria, yeasts, algae, and viruses.

14 . The device of claim 12 , wherein the biological contaminant is one selected from the group of Klebsiella oxytoca, Saccharomyces cerevisiae, Selenastum capriocornutum , and MS2.

15 . The device of claim 12 , wherein one of the following is true:

(I) wherein one of (i) through (vi) is true and the other five are false;

(II) wherein two of (i) through (vi) are true and the other four are false;

(III) wherein three of (i) through (vi) are true and the other three are false;

(IV) wherein four of (i) through (vi) are true and the other two are false;

(V) wherein five of (i) through (vi) are true and the other one is false; and

(VI) wherein all six of (i) through (vi) are true.

16 . The device of claim 12 , wherein one or more of the following is true:

(a) the zeta potential at about pH 7 is from about 7.5 to about 12.5 mV;

(b) the particle size D 10 is from about 1 to about 3 μm;

(c) the particle size D 50 is from about 7.5 to about 10.5 μm;

(d) the particle size D 90 is from about 20 to about 30 μm;

(e) the crystallite size is from about 7.5 to about 12.5 nm; and

(f) the number of acid sites is wherein the number of acid sites is no more than about 0.02 acidic sites/kg.

17 . The device of claim 12 , wherein the cerium (IV) oxide composition removes more of the biological contaminant per gram of CeO 2 than an oxide of cerium (IV) and wherein one or more of (i), (ii), (iii), (iv), (v) and (vi) are false for the oxide of cerium (IV).

18 . A composition, comprising:

a cerium (IV) oxide composition having a sorbed biological contaminant, wherein one or more of the following (i)-(vi) is true:

(i) the cerium (IV) oxide composition has, prior to the biological contaminant being sorbed, a zeta potential at about pH 7 of no more than about 30 mV and of more than about 1 mV;

(ii) the cerium (IV) oxide composition has a particle size D 10 of more than about 0.5 μm and no more than about 7 μm;

(iii) the cerium (IV) oxide composition has a particle size D 50 of more than about 2 μm and no more than about 20 μm;

(iv) the cerium (IV) oxide composition has a particle size D 90 of more than about 12 μm and no more than about 50 μm;

(v) the cerium (IV) oxide composition has a crystallite size of more than about 1 nm and no more than about 22 nm; and

(vi) the cerium (IV) oxide composition has, prior to the biological contaminant being sorbed, an acidic site concentration of more than about 0.0001 acidic sites/kg and no more than about 0.020 acidic sites/kg.

19 . The composition of claim 18 , wherein the sorbed biological contaminant is selected from the group consisting of bacteria, yeasts, algae, and viruses and wherein one of the following is true:

(I) wherein one of (i) through (vi) is true and the other five are false;

(II) wherein two of (i) through (vi) are true and the other four are false;

(III) wherein three of (i) through (vi) are true and the other three are false;

(IV) wherein four of (i) through (vi) are true and the other two are false;

(V) wherein five of (i) through (vi) are true and the other one is false; and

(VI) wherein all six of (i) through (vi) are true.

20 . The composition of claim 18 , wherein the sorbed biological contaminant is one selected from the group of Klebsiella oxytoca, Saccharomyces cerevisiae, Selenastum capriocornutum , and MS2 and, wherein one or more of the following is true:

(a) the zeta potential at about pH 7 is from about 7.5 to about 12.5 mV;

(b) the particle size D 10 is from about 1 to about 3 μm;

(c) the particle size D 50 is from about 7.5 to about 10.5 μm;

(d) the particle size D 90 is from about 20 to about 30 μm;

(e) the crystallite size is from about 7.5 to about 12.5 nm; and

(f) the number of acid sites is wherein the number of acid sites is no more than about 0.02 acidic sites/kg.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2017
From: LANDI, CAROL
To: SECURE NATURAL RESOURCES LLC
Reel/Frame 042431/0143 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 15, 2016
From: MOLYCORP MINERALS, LLC
To: SECURE NATURAL RESOURCES LLC
Reel/Frame 040981/0753 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 30, 2016
From: PSARAS, DIMITRIOS; GAO, YUAN; HANELINE, MASON; LUPO, JOSEPH
To: MOLYCORP MINERALS, LLC
Reel/Frame 039222/0125 →