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Tourmaline-Modified FeMnTiO x Catalysts for Improved Low-Temperature NH3-SCR Performance.
Wang, Fei; Xie, Zhibo; Liang, Jinsheng; Fang, Baizeng; Piao, Yu'ang; Hao, Ming; Wang, Zishuo.
Affiliation
  • Wang F; Key Laboratory of Special Functional Materials for Ecological Environment and Information , Hebei University of Technology, Ministry of Education , Tianjin 300130 , P. R. China.
  • Xie Z; Institute of Power Source and Ecomaterials Science , Hebei University of Technology , Tianjin 300130 , P. R. China.
  • Liang J; Key Laboratory of Special Functional Materials for Ecological Environment and Information , Hebei University of Technology, Ministry of Education , Tianjin 300130 , P. R. China.
  • Fang B; Institute of Power Source and Ecomaterials Science , Hebei University of Technology , Tianjin 300130 , P. R. China.
  • Piao Y; Key Laboratory of Special Functional Materials for Ecological Environment and Information , Hebei University of Technology, Ministry of Education , Tianjin 300130 , P. R. China.
  • Hao M; Institute of Power Source and Ecomaterials Science , Hebei University of Technology , Tianjin 300130 , P. R. China.
  • Wang Z; Department of Chemical & Biological Engineering , University of British Columbia , 2360 East Mall , Vancouver , British Columbia V6T 1Z3 , Canada.
Environ Sci Technol ; 53(12): 6989-6996, 2019 06 18.
Article in En | MEDLINE | ID: mdl-31184128
Low temperature NH3 selective catalytic reduction (NH3-SCR) technology is an efficient and economical strategy for cutting NO x emissions from power-generating equipment. In this study, a novel and highly efficient NH3-SCR catalyst, tourmaline-modified FeMnTiO x is presented, which was synthesized by a simple one-step sol-gel method. We found that the amount of tourmaline has an important impact on the catalytic performance of the modified FeMnTiO x-based catalysts, and the NO x conversion exceeded 80% from 160 to 380 °C with the addition of 5 wt % tourmaline. Compared with the pure FeMnTiO x, the catalytic efficiency at a temperature below 100 °C was increased by nearly 18.9%, and the operation temperature window was broadened significantly. The enhanced catalytic performance of the FeMnTiO x catalyst was mainly attributed to the small spherical nanoparticles structure around the tourmaline powders, resulting in the increased content of Mn3+, Mn4+, and chemical oxygen on the catalytic surface. These as-developed tourmaline-modified FeMnTiO x materials have been demonstrated to be promising as a new type highly efficient low temperature NH3-SCR catalyst.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Cold Temperature / Ammonia Language: En Journal: Environ Sci Technol Year: 2019 Type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Cold Temperature / Ammonia Language: En Journal: Environ Sci Technol Year: 2019 Type: Article