IP Library Granted Patent US 7,311,842
Granted Patent B2
US 7,311,842 · App. 10/708,001 · Granted Dec 25, 2007

Lignocellulose-based anion-adsorbing medium (LAM) and process for making and using same for the selective removal of phosphate and arsenic anionic contaminants from aqueous solutions

Assignee: H2O Technologies, LLC
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Quick Facts
Patent No.
US 7,311,842
App. No.
10/708,001
Granted
Dec 25, 2007
Kind
B2
Abstract

A lignocellulose-based anion-adsorbing medium (LAM) and process for making and using same for selectively removing phosphates and arsenic contaminants from aqueous solutions is disclosed. Making the LAM comprises (a) dissociating cations such as Fe and Al, from their counterions by adding a chemical compound containing said cations to water and acidifying; (b) pelletizing a lignocellulose; (c) adsorbing the cations to the lignocellulose by bringing the lignocellulose into contact with the solution of step (a) and incubating; and, (d) exposing the lignocellulose of step (c) to an alkaline fixing agent to replace hydrogens (H) of the hydroxyl groups of the lignocellulose with the adsorbed cations to produce the LAM with a positive charge. The LAM may be used to selectively and cost-effectively remove phosphate and arsenic contaminants from aqueous solutions by retaining them at the Fe or Al on the LAM.

Claims (21)

1. A process for treating a contaminated aqueous solution to remove one or more anionic contaminants therefrom, comprising:

a. contacting the contaminated aqueous solution with a lignocellulose-based anion-adsorbing medium (LAM), wherein the LAM has been formed by the steps of:

i. dissociating cations selected from the group consisting of Fe or Al, from their counterions by adding a chemical compound containing said cations to water and acidifying;

ii. pellitizing a lignocellulose having hydroxyl groups (—OH);

iii. combining the cations with said lignocellulose hydroxyl groups (—OH) by bringing the lignocellulose into contact with the solution of step (i) and incubating; and

iv. catalyzing the chemical replacement of the lignocellulose hydrogens (H) of the hydroxyl groups of the lignocellulose with the cations to produce the LAM with a positive charge by exposing the lignocellulose of step (iii) to an alkaline fixing agent;

b. contacting the LAM with the contaminated aqueous solution to enable the contaminants to be retained at the Fe or Al combined with the lignocellulose; and

c. recovering a treated aqueous solution with reduced content of the one or more anionic contaminants.

2. The method of claim 1 , wherein the one or more anionic contaminants is selected from the group consisting of phosphate and arsenic.

3. The method of claim 1 , further comprising regenerating the LAM after its contact with the contaminated aqueous solution by treating the LAM with an alkaline solution to remove the one or more anionic contaminants from the LAM to which said one or more anionic contaminants have been retained, and subsequently neutralizing the LAM with an acid to prepare it for reuse.

4. The method of claim 1 , wherein the lignocellulose is selected from the group consisting of wood, paper, and cotton.

5. A process for treating a contaminated aqueous solution to remove one or more arsenic anionic contaminants therefrom, comprising:

a. contacting the contaminated aqueous solution with a lignocellulose-based anion-adsorbing medium (LAM), wherein the LAM has been formed by the steps of:

i. dissociating cations selected from the group consisting of Fe, Al or Ca, from their counterions by adding a chemical compound containing said cations to water and acidifying;

ii. pellitizing a lignocellulose having hydroxyl groups (—OH);

iii. combining the cations with lignocellulose hydroxyl groups (—OH) by bringing the lignocellulose into contact with the solution of step (i) and incubating; and

iv. catalyzing the chemical replacement of the lignocellulose hydrogens (H) of the hydroxyl groups of the lignocellulose with the cations to produce the LAM with a positive charge by exposing the lignocellulose of step (iii) to an alkaline fixing agent;

b. contacting the LAM with the contaminated aqueous solution to enable the contaminants to be retained at the Fe, Al or Ca combined with the lignocellulose; and

c. recovering a treated aqueous solution with reduced content of the arsenic anionic contaminants.

6. The method of claim 5 , further comprising regenerating the LAM after its contact with the contaminated aqueous solution by treating the LAM with an alkaline solution to remove the arsenic anionic contaminants from the LAM to which the arsenic anionic contaminants have been retained, and subsequently neutralizing the LAM with an acid to prepare it for reuse.

7. The method of claim 5 , wherein the lignocellulose is selected from the group consisting of wood, paper, and cotton.

Assignments (3)
SECURITY INTEREST Recorded Apr 25, 2011
From: AG BIO TECH, LLC
To: AJM INVESTORS, LLC
Reel/Frame 026184/0629 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2008
From: H2O TECHNOLOGIES, LLC
To: AG BIO TECH, LLC
Reel/Frame 021531/0704 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 13, 2004
From: KIM, JU YOUNG
To: H2O TECHNOLOGIES, LLC
Reel/Frame 015329/0946 →
Continuity (1)
Related Publication 20050098503A1 · May 12, 2005