Method for Electrochemical Ocean Alkalinity Enhancement

Background


As companies work to meet their net zero goals, the need for additional carbon offsets is presented. Ocean carbon dioxide (CO2) capture is a general technique used for decreasing CO2 levels in the atmosphere by using the ocean to capture atmospheric CO2. In order for this to occur, the ocean’s acidity must be mitigated through a process called electrochemical ocean alkalinity enhancement. This describes the use of electrochemistry to generate alkalinity to be added to the ocean, decreasing its pH and allowing for the safe absorption of CO2 into the ocean as bicarbonate. These electrochemical systems often take in electricity and brine streams as inputs and output the constituent acid and base of the incoming salt (e.g. NaCl in seawater is converted to HCl acid and NaOH base). One way of doing this is with bipolar membrane electrodialysis, which is an electrochemical process that uses ion-selective membranes between two end electrodes to generate HCl and NaOH from incoming NaCl‑containing brine. If the HCl is kept on land and the NaOH and seawater are returned to the ocean, the alkalinity of the ocean is enhanced, thus inducing the absorption of CO2 from the atmosphere. A problem is presented in which the incoming brine streams often contain unwanted divalent cations like calcium or magnesium. They are typically removed via water softening pretreatment to avoid scaling of solid calcium and magnesium precipitate on the membranes, which leads to higher energy consumption and shorter membrane lifetime. However, this pretreatment is expensive.

Technology


Researchers at Stony Brook University (SBU) propose a technology that enables electrochemical ocean alkalinity enhancement without the need for pretreatment of incoming seawater. This system produces “negative emission” carbon offsets of very high quality at a highly reduced cost due to the avoidance of pretreatment.

Advantages

  • Cheaper
  • More energy efficient
  • No need for expensive water-softening pretreatment

Application

  • High quality carbon offsets
  • Ocean acidification mitigation

Patent Status

United States | Patent Issued: Patent No.: 11,998,875                                                                                                                                          United States | Patent Pending: Serial No.: 18/680,523 | Publication No.: US 2024-0316501 A1 South Africa | Patent Pending: Serial No.: 2024/04721 New Zealand | Patent Pending: Serial No.: 812115 Japan | Patent Pending: Serial No.: 2024-538203 India | Patent Pending: Serial No.: 202417047495 Hong Kong | Patent Pending: Serial No.: 62025106360.3 |  Publication No.: 40118310A Australia | Patent Pending: Serial No.: 2022421059 China | Patent Issued: Patent No.: ZL202280092379.6 Canada | Patent Pending: Serial No.: 3,243,044 Europe Patent Office | Patent Pending: Serial No.: 26169424.4 Europe Patent Office | Patent Issued: Patent No.: EP4452869
Additional European Validation Countries
Italy | Patent Issued: Patent No.: 502026000031048
France | Patent Issued: Patent No.: EP4452869
Great Britain | Patent Issued: Patent No.: EP4452869
Ireland | Patent Issued: Patent No.: EP4452869
Portugal | Patent Issued: Patent No.: EP4452869
Spain | Patent Issued: Patent No.: EP4452869
Germany | Patent Issued: Patent No.: EP4452869
Iceland | Patent Issued: Patent No.: EP4452869
Norway | Patent Issued: Patent No.: EP4452869


Stage Of Development

Licensing Potential


Development partner - Commercial partner - Licensing

Licensing Status


Available 

Additional Info

Additional Information:


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Blue Planet Studio, https://stock.adobe.com/uk/549444030, stock.adobe.com
Patent Information:
Case ID: R050-9291
For Information, Contact:
Donna Tumminello
Assistant Director
State University of New York at Stony Brook
6316324163
donna.tumminello@stonybrook.edu
Inventors:
Matthew Eisaman (deceased)
Keywords: