IP Library › Granted Patent US 9,617,172
Granted Patent B1
US 9,617,172 · App. 15/178,614 · Granted Apr 11, 2017

Desalination system and method for producing freshwater by reverse osmosis of seawater

Inventor: Henry A Baski (Denver, CO)
C02F1/441B01D29/0068B01D61/022C02F2103/08
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Quick Facts
Patent No.
US 9,617,172
App. No.
15/178,614
Granted
Apr 11, 2017
Kind
B1
Abstract

A desalination system includes a membrane system submerged in the ocean at a depth selected to provide a hydrostatic pressure and a high pressure side for generating reverse osmosis (RO) to produce freshwater from seawater. The desalination system also includes a pumping system in flow communication with the membrane system configured to pump the freshwater to the surface and to provide a low pressure side for the reverse osmosis (RO), a transport system for transporting the freshwater to land, and a storage system for storing the freshwater on land. A desalination method includes the steps of: providing a plurality of reverse osmosis membrane discs at a depth in an ocean selected to provide a hydrostatic pressure; directing seawater through the membrane discs using the hydrostatic pressure; collecting the freshwater directed through the membrane discs; pumping the freshwater to a surface of the ocean; and then transporting the freshwater to land.

Claims (20)

1. A desalination system comprising:

a membrane system configured to perform a reverse osmosis (RO) of seawater, the membrane system submerged in an ocean at a depth selected to provide a hydrostatic pressure for generating the reverse osmosis (RO), the membrane system comprising a plurality of membrane discs mounted to a freshwater collection conduit in a spaced array, each membrane disc comprising a membrane substrate coated with a membrane film in flow communication with the seawater at the depth, the freshwater collection conduit comprising a tubular having a plurality of orifices therethrough in flow communication with the membrane discs at a low-pressure side thereof, the freshwater collection conduit configured to receive freshwater produced by the reverse osmosis (RO) of the seawater by the membrane discs; the membrane system is included in a perforated casing in flow communication with the seawater at the depth; and

a pumping system comprising a casing in flow communication with the freshwater collection conduit configured to receive the freshwater, a shaft rotatably mounted in the casing and a plurality of impellers attached to the shaft configured to pump the freshwater through the casing to a surface of the ocean, the casing configured to provide the low-pressure side for the membrane discs by pumping of the freshwater by the impellers.

2. The desalination system of claim 1 further comprising a transport system for transporting the freshwater to land.

3. The desalination system of claim 1 further comprising a storage system for storing the freshwater.

4. The desalination system of claim 1 further comprising a swivel joint attached to the casing and to the freshwater collection conduit configured to swivel the membrane system to a generally vertical position enabling lowering of the membrane system to the depth and raising of the membrane system to the surface of the ocean.

5. A desalination system for producing freshwater by reverse osmosis (RO) of seawater comprising:

a membrane system submerged in an ocean at a depth selected to provide a hydrostatic pressure for generating the reverse osmosis (RO), the membrane system comprising a plurality of membrane discs mounted to a freshwater collection conduit in a parallel spaced array, each membrane disc comprising a membrane substrate coated with a membrane film in flow communication with the seawater at the depth, the freshwater collection conduit comprising a tubular having a plurality of orifices therethrough in flow communication with the membrane discs at a low-pressure side, the freshwater collection conduit configured to receive freshwater produced by the reverse osmosis (RO) of the seawater by the membrane discs; the membrane system is included in a perforated casing in flow communication with the seawater at the depth; and

a pumping system comprising a casing in flow communication with the freshwater collection conduit configured to receive the freshwater, a shaft rotatably mounted in the casing and a plurality of impellers attached to the shaft configured to pump the freshwater through the casing to a surface of the ocean, the casing configured to provide the low-pressure side for the membrane discs by pumping of the freshwater by the impellers,

the membrane system and the pumping system configured to provide a flow path of the seawater into the membrane discs and a flow path of the freshwater from the membrane discs into the freshwater collection conduit and through the casing to the surface of the ocean.

6. The desalination system of claim 5 wherein the pumping system includes a plurality of spaced bowl assemblies in the casing, each bowl assembly comprising at least one inflatable packer inflated against the casing, a rotatable impeller attached to the shaft, and a stationary diffuser in flow communication with the conduit configured to form a fluid passageway with the impeller for pumping the freshwater.

7. The desalination system of claim 5 further comprising a transport system in flow communication with the pumping system for transporting the freshwater to land.

8. The desalination system of claim 5 further comprising a storage system in flow communication with the pumping system for storing the freshwater.

9. The desalination system of claim 8 wherein the storage system comprises an aquifer storage and recovery (ASR) system.

10. The desalination system of claim 5 wherein the selected depth is selected to generate a pressure differential matched to characteristics of the membrane system.

11. The desalination system of claim 5 further comprising a swivel joint attached to the casing and to the freshwater collection conduit configured to swivel the membrane system to a generally vertical position enabling lowering of the membrane system to the depth and raising of the membrane system to the surface of the ocean.

12. The desalination system of claim 5 further comprising a porous drain substrate laminated to the membrane substrate.

13. The desalination system of claim 5 further comprising an ocean platform configured to support the membrane system and the pumping system.

14. The desalination system of claim 5 wherein each membrane disc comprises a circular disc having a center opening through the membrane substrate for mounting to the freshwater collection conduit.

15. The desalination system of claim 5 wherein each membrane disc comprises a generally circular disc having a thickness that increases from an outside peripheral edge to a center thereof, with a center portion of the membrane disc being thickest and a peripheral edge of the membrane disc being thinnest.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2024
From: BASKI, INC.
To: BASKI WATER INSTRUMENTS, INC.
Reel/Frame 067254/0091 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 16, 2021
From: BASKI, HENRY A.
To: BASKI, INC.
Reel/Frame 055012/0857 →