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  1. Removal of High-Concentration Sulfate Ions from the Sodium Alkali FGD Wastewater Using Ettringite Precipitation Method: Factor Assessment, Feasibility, and Prospect
  2. Chloride Ion Removal from the Wet Flue Gas Desulfurization and Denitrification Wastewater Using Friedel’s Salt Precipitation Method
  3. Novel SCR catalyst with superior alkaline resistance performance: enhanced self-protection originated from modifying protonated titanate nanotubes
  4. Enhanced alkali resistance of CeO2/SO42−–ZrO2 catalyst in selective catalytic reduction of NOx by ammonia
  5. Structure–Activity Relationship of Titanate Nanotube-Confined Ceria Catalysts in Selective Catalytic Reduction of NO with Ammonia
  6. Ceria supported on sulfated zirconia as a superacid catalyst for selective catalytic reduction of NO with NH3
  7. Deactivation mechanism of Ce/TiO2selective catalytic reduction catalysts by the loading of sodium and calcium salts
  8. The Key Role of pH Value in the Synthesis of Titanate Nanotubes-Loaded Manganese Oxides as a Superior Catalyst for the Selective Catalytic Reduction of NO with NH3
  9. Polyethyleneimine functionalized protonated titanate nanotubes as superior carbon dioxide adsorbents
  10. Effects of morphology and structure of titanate supports on the performance of ceria in selective catalytic reduction of NO
  11. Effect of pH value on the microstructure and deNOx catalytic performance of titanate nanotubes loaded CeO2
  12. Selective catalytic reduction of NO over carbon nanotubes supported CeO2
  13. Novel H 2 Ti 12 O 25 -Confined CeO 2 Catalyst with Remarkable Resistance to Alkali Poisoning Based on the “Shell Protection Effect”
  14. Enhanced catalytic activity for selective catalytic reduction of NO over titanium nanotube-confined CeO2 catalyst