fig2

Synergistic catalytic strategies for multipollutant control

Figure 2. Advances in synergistic catalytic conversion of NOx and different VOCs on typical catalysts with optimized performance. (A) NOx reduction with CB oxidation at 300 °C over typical V-Ti-based[23-26], Mn-Ce-based[10,11,22,27,30,31], and novel catalysts[32-36]; (B) NOx reduction with toluene oxidation at 250 °C over V-Ti-based[46-49], Mn-Ce-based[51-55], and other optimized CeO2-based catalysts[56-59]; (C) NOx reduction with other VOCs in typical catalysts with optimal synergistic catalytic performance under proper conditions[60-68]. NOx: Nitrogen oxides; VOCs: volatile organic compounds; CB: chlorobenzene; TNT: TiO2 nanotubes; HZSM5: hydrogen form of zeolite Socony Mobil-5; LDO: layered double hydroxide.