IP Library Granted Patent US 10,087,107
Granted Patent B2
US 10,087,107 · App. 15/423,110 · Granted Oct 2, 2018

Geopolymer with nanoparticle retardant and method

Inventors: Erez Allouche (Ruston, LA); Yuri Lvov (Ruston, LA); Carlos Montes (Ruston, LA); Anupam Joshi (Ruston, LA)
Assignee: Louisiana Tech Research Corporation
C04B28/006C04B12/00C04B14/044C04B14/06C04B20/1033C04B20/1074C04B22/0093C04B22/062C04B40/0633C04B2103/12C04B2103/22Y02P40/165Y02W30/92
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Quick Facts
Patent No.
US 10,087,107
App. No.
15/423,110
Granted
Oct 2, 2018
Kind
B2
Abstract

A method of controlling the setting time of a geopolymer by coating aluminosilicate particles with nanoparticles to slow the geopolymerization reaction. The coating effectiveness of the nanoparticles may be enhanced by pretreating the aluminosilicate particles with a layer-by-layer assembly of polyelectrolytes. A geopolymer is formed by mixing about 39% to about 66% by weight aluminosilicate source, about 0% to about 40% by weight sand, about 19% to about 33% by weight of alkali activator solution, and about 1% to about 4% nanoparticles.

Claims (22)

1. A composition of matter formed by the mixing of components comprising:

about 39% to about 66% by weight aluminosilicate source;

about 0% to about 40% by weight sand;

about 19% to about 33% by weight alkali activator solution; and

about 1% to about 4% by weight nanoparticle retardant.

2. The composition of matter of claim 1 , wherein the aluminosilicate source comprises fly ash, metakaolin, or rice husk.

3. The composition of matter of claim 1 , wherein the alkali activator solution comprises sodium silicate and a sodium hydroxide solution.

4. The composition of matter of claim 3 , wherein a concentration of the sodium hydroxide solution is in the range of about 10M to about 14M.

5. The composition of matter of claim 3 , wherein the alkali activator solution comprises a silicate to hydroxide ratio of about 1.5.

6. The composition of matter of claim 1 , wherein the nanoparticle retardant comprises halloysite nanotubes or kaolin nanoclay particles.

7. The composition of matter of claim 1 , wherein the composition is formed by mixing of components comprising:

about 64% to about 66% by weight aluminosilicate source;

about 32% to about 33% by weight alkali activator solution; and

about 1% to about 4% by weight nanoparticle retardant.

8. The composition of matter of claim 1 , wherein the composition is formed by mixing of components comprising:

about 39% to about 40% by weight aluminosilicate source;

about 39% to about 40% by weight sand;

about 19% to about 20% by weight alkali activator solution; and

about 1% to about 3% by weight nanoparticle retardant.

9. The composition of matter of claim 1 , wherein a setting time of the composition is about 47 minutes to about 205 minutes.

10. The composition of matter of claim 9 , wherein the compressive strength of the composition 24 hours after mixing is about 4,000 psi to about 8,600 psi.

11. The composition of matter of claim 1 , wherein the flowability of the composition is about 59 to about 116.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 6, 2017
From: LOUISIANA TECH UNIVERSITY RESEARCH FOUNDATION, A DIVISION OF LOUISIANA TECH UNIVERSITY FOUNDATION, INC.
To: LOUISIANA TECH RESEARCH CORPORATION
Reel/Frame 041473/0804 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 3, 2017
From: ALLOUCHE, EREZ; LVOV, YURI; JOSHI, ANUPAM; MONTES, CARLOS
To: LOUISIANA TECH UNIVERSITY RESEARCH FOUNDATION, A DIVISION OF LOUISIANA TECH UNIVERSITY FOUNDATION, INC.
Reel/Frame 041455/0440 →
Continuity (2)
Division 14469687 · Aug 27, 2014
Related Publication 20170144933A1 · May 25, 2017
Cited By (1)
US 12,704,031