IP Library › Granted Patent US 11,306,012
Granted Patent B2
US 11,306,012 · App. 16/490,735 · Granted Apr 19, 2022

Soil-based flow-through rhizosphere system for treatment of contaminated water and soil

Inventor: Lucian Stephen Gill (South Yorkshire, GB)
Assignee: Reed Scientific Services Ltd.
C02F3/34B09C1/10B09C1/105C02F3/327C09K17/00C12N1/20C02F2101/36C02F2103/06
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Quick Facts
Patent No.
US 11,306,012
App. No.
16/490,735
Granted
Apr 19, 2022
Kind
B2
Abstract

A process for constructing a soil-based rhizosphere flow-through system to break down contaminants in contaminated water. The process includes the steps of: providing plants planted in soil in a test bioreactor, the plants providing a rhizosphere; exposing the rhizosphere to the contaminated water; extracting microorganisms from the rhizosphere following their exposure to the contaminated water; preparing a microbial suspension from the extract; subjecting the microbial suspension to growth conditions to increase the concentration of the microorganisms, thereby preparing a soil conditioner; adding the soil conditioner to soil in a contained area having a water flow inlet and outlet; and planting a plurality of plants in the soil, the plants being of the same species as the plants of the test bioreactor.

Claims (44)

1. A process for preparing a soil conditioner to increase the rate of decontamination of contaminated water or contaminated soil, the process comprising:

a) providing a rhizosphere;

b) exposing the rhizosphere to the contaminated water;

c) obtaining a sample of the rhizosphere, the sample comprising plant roots and soil surrounding the rhizome;

d) extracting microorganisms from the sample after step c) to prepare a microbial extract;

e) preparing a microbial suspension from the microbial extract; and

f) subjecting the microbial suspension to growth conditions to increase the concentration of the microorganisms, thereby preparing the soil conditioner, wherein the soil conditioner includes microorganisms originally present in the contaminated water and microorganisms originally present in the rhizosphere.

2. The process of claim 1 , wherein step b) comprises generating a flow of the contaminated water across the rhizosphere, the flow entering at an inlet and exiting at an outlet.

3. The process of claim 2 , wherein the flow of the contaminated water is conducted for a period of about 4 to about 8 weeks.

4. The process of claim 2 , further comprising testing of outflow from the outlet to identify one or more metabolic products of one or more contaminants present in the contaminated water.

5. The process of claim 1 , further comprising measuring the amount of microorganisms present in the extract in the microbial suspension.

6. The process of claim 1 , further comprising measuring the amount of microorganisms present in the soil conditioner, wherein a plate count of at least about 10 6 counts/mL indicates that the soil conditioner is suitable for use in treatment of a soil bed in construction of the soil-based flow-through rhizosphere system.

7. The process of claim 1 , wherein the rhizosphere is of a wetland plant.

8. The process of claim 7 , wherein the wetland plant is selected from the group consisting of Phragmites australis, Arundo donax L., Neyraudia reynaudiana, Phalaris arundinacea, Glyceria maxima, Elegia tectorum, Thamnochortus insignis , a species of the genus Calamagrostis , a species of the genus Sparganium , and a species of the genus Typha.

9. The process of claim 1 , wherein steps a) and b) are conducted in a test bioreactor having a volume of about 10 L to about 50 L.

10. The process of claim 1 , wherein the contaminated water comprises organic contaminants.

11. A process for constructing a soil-based rhizosphere flow-through system to break down contaminants in contaminated water, the process comprising:

a) providing plants planted in a test bioreactor, the plants providing a rhizosphere;

b) exposing the rhizosphere to the contaminated water;

c) obtaining a sample of the rhizosphere, the sample comprising plant roots and soil surrounding the rhizome;

d) extracting microorganisms from the sample after step c) to prepare a microbial extract;

e) preparing a microbial suspension from the microbial extract;

f) subjecting the microbial suspension to growth conditions to increase the concentration of the microorganisms, thereby preparing a soil conditioner, wherein the soil conditioner includes microorganisms originally present in the contaminated water and microorganisms originally present in the rhizosphere;

g) adding the soil conditioner to different soil in a contained area having a water flow inlet and outlet; and

h) planting a plurality of plants in the different soil, the plants being of the same species as the plants of step a).

12. The process of claim 11 , wherein step b) comprises generating a flow of the contaminated water across the rhizosphere, the flow entering at an inlet and exiting at an outlet.

13. The process of claim 12 , wherein the flow of the contaminated water is conducted for a period of about 4 to about 8 weeks.

14. The process of claim 12 , further comprising testing of outflow from the outlet to identify one or more metabolic products of one or more contaminants present in the contaminated water.

15. The process of claim 11 , further comprising measuring the amount of microorganisms present in the extract in the microbial suspension.

16. The process of claim 11 , further comprising measuring the amount of microorganisms present in the soil conditioner, wherein a plate count of at least about 10 6 counts/mL indicates that the soil conditioner is suitable for use in treatment of a soil bed in construction of the soil-based flow-through rhizosphere system.

17. The process of claim 11 , wherein the rhizosphere is of a wetland plant.

18. The process of claim 17 , wherein the wetland plant is selected from the group consisting of Phragmites australis, Arundo donax L., Neyraudia reynaudiana, Phalaris arundinacea, Glyceria maxima, Elegia tectorum, Thamnochortus insignis , a species of the genus Calamagrostis , a species of the genus Sparganium , and a species of the genus Typha.

19. The process of claim 11 , wherein steps a) and b) are conducted in a test bioreactor having a volume of about 10 L to about 50 L.

20. The process of claim 11 , wherein the contaminated water comprises organic contaminants.

21. A soil-based flow-through rhizosphere system for breaking down contaminant organic compounds in contaminated water, the system comprising:

a) a contained area comprising soil treated with a soil conditioner prepared according to the process of claim 1 and planted with plants of the same species as the rhizosphere, the contained area having a water flow inlet and a flow outlet;

b) a tank for holding the contaminated water before entry of the contaminated water into the contained area; the tank in flow communication with the flow inlet; and

c) a retention pond in communication with the flow outlet.

22. The system of claim 21 , further comprising a soak-away discharge pond in flow communication with the retention pond to allow discharge of treated water into the environment.

23. The system of claim 21 , further comprising a recirculation line in flow communication between the retention pond and the water flow inlet.

24. The system of claim 21 wherein the contained area is a container configured to provide predominately horizontal flow of the contaminated water from the flow inlet to the flow outlet.

25. The system of claim 24 , wherein the container comprises a soil depth of between about 0.4 m to about 0.5 m to provide a predominately aerobic soil environment.

26. The system of claim 21 wherein the contained area is a container configured to provide predominately vertical flow of the contaminated water from the flow inlet to the flow outlet.

27. The system of claim 26 , wherein the container comprises a soil depth of between about 0.8 m to about 1.0 m to provide soil having both a predominately aerobic soil environment closer to the soil surface and a predominately anaerobic soil environment closer to the bottom of the container.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2026
From: REED SCIENTIFIC CO. LTD.
To: NATURAL REED CO. LTD.
Reel/Frame 074093/0761 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 4, 2024
From: REED SCIENTIFIC SERVICES LTD.
To: REED SCIENTIFIC CO. LTD.
Reel/Frame 066638/0309 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 4, 2020
From: GILL, LUCIAN STEPHEN
To: REED SCIENTIFIC SERVICES LTD
Reel/Frame 052838/0799 →
Continuity (2)
Provisional Application 62612929 · Jan 2, 2018
Related Publication 20200002203A1 · Jan 2, 2020