Data for: Sequential carbonate mineralization of desalination brine for CO2 emission reduction

Published: 22 July 2019| Version 1 | DOI: 10.17632/2jmr23w4wk.1
Contributors:
Jeongyun Kim, Jun-Hwan Bang, Ji-Whan Kim, Seung Woo Lee, kyung-sun song, Soo-Chun Chae

Description

Desalination brine is a potential source for CO2 mineralization aimed at reducing CO2 emissions, because the concentration of Ca and Mg in brine is almost twice that of ordinary seawater. However, the previously achieved conversion ratio of CO2 to carbonate minerals is too low for commercial application, as Ca and Mg compete and interfere with each other during precipitation. In this study, we tested the separate and sequential mineralization of Ca and Mg in brine, enhancing the CO2 conversion ratio to 57% from the previous 12%. We also tested the use of 15% CO2 gas (the typical concentration of actual combustion gas), finding that 69% of injected CO2 was precipitated as Ca and Mg carbonate minerals and 99% of Ca and 69% of Mg in the initial brine were precipitated. In addition, the volume of NaOH solution required was reduced by 76%. These results demonstrate the commercial feasibility of using brine discharged from desalination plants for CO2 mineralization to reduce CO2 emissions, while reducing the environmental impact of brine release as no further additives are required.

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Carbon Mineralization

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