Published February 2018 | Version v1
Journal article

CO2 mineralization of natural wollastonite into porous silica and CaCO3 powders promoted via membrane electrolysis

  • 1. Sichuan University, College of Chemical Engineering (China)
  • 2. The Ministry of Education, Sichuan University, Key Laboratory of Energy Engineering Safety and Mechanics on Disasters (China)

Description

CO2 is a greenhouse gas, whose emissions threaten the existence of human beings. Its inherently safe sequestration can be performed via CO2 mineralization, which is relatively slow under natural conditions. In this work, an energy-saving membrane electrolysis technique was proposed for accelerating the CO2 mineralization of wollastonite into SiO2 and CaCO3 products. The electrolysis process involved splitting NH4Cl into HCl and NH3·H2O via hydrogen oxidation and water reduction at the anode and cathode of the electrolytic system, respectively. In contrast to the chlor-alkali electrolysis, this method did not involve Cl oxidation and the standard potential of the anode was reduced. Additionally, NH4Cl was used as the electrolyte instead of NaCl; as a result, the generation of NH3·H2O instead of NaOH occurred in the catholyte and the cathodic pH dramatically decreased, thus reducing the cathodic potential for hydrogen evolution. The observed changes led to a 73.5% decrease in the energy consumption. Moreover, after the process of CO2 mineralization was optimized, SiO2 with a specific surface area of 221.8 m2 g−1 and CaCO3 with a purity of 99.9% were obtained.

Additional details

Identifiers

Publishing Information

Journal Title
Environmental Earth Sciences
Journal Volume
77
Journal Issue
4
Journal Page Range
p. 1-10
ISSN
1866-6280

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Copyright (c) 2018 Springer-Verlag GmbH Germany, part of Springer Nature