Abstract

Magnesium–aluminum oxide (Mg–Al oxide) obtained by thermal decomposition of Mg–Al layered double hydroxide (Mg–Al LDH) effectively removed HCl from gaseous streams. HCl removal was greater in the presence of added water vapor at all temperatures examined and increased with decreasing temperature in both the presence and absence of added water vapor. Wet and dry removal of gaseous HCl were attributed to the production of MgCl 2 · 6H 2O and MgCl 2 · 4H 2O, respectively. For the wet scrubbing process, the reconstruction reaction of Mg–Al LDH from Mg–Al oxide was the primary mechanism for increased HCl removal.

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