화학공학소재연구정보센터
검색결과 : 814건
No. Article
1 Facile control of surface properties in CeO2-promoted Mn/TiO2 catalyst for low-temperature selective catalytic reduction of NO by NH3
Kim MJ, Youn JR, Lee SJ, Ryu IS, Nam SC, Jeong SK, Jeon SG
Journal of Industrial and Engineering Chemistry, 108, 438, 2022
2 Selective catalytic reduction of NOx by NH3 over V2O5-WO3 supported by titanium isopropoxide (TTIP)-treated TiO2
Lee GY, Ye BR, Lee MJ, Chun SY, Jeong BR, Kim HD, Jae JH, Kim TW
Journal of Industrial and Engineering Chemistry, 109, 422, 2022
3 노후 특수.화물 차량 PM/NOx 저감을 위한 SDPF 촉매 및 코팅 기술 연구
정관형, 서필원, 오형석, 김종국, 강소연, 강정호, 김현준, 신병선
Applied Chemistry for Engineering, 32(6), 695, 2021
4 Layered Pd/SSZ-13 with Cu/SSZ-13 as PNA - SCR dual-layer monolith catalyst for NOx abatement
Wang AY, Xie KP, Kumar A, Kamasamudram K, Olsson L
Catalysis Today, 360, 356, 2021
5 Optimizing the dual-layer Pt/Al2O3 + Cu/SSZ-13 washcoated monolith: Selective oxidation of NH3 to N-2
Dhillon PS, Harold MP, Wang D, Kumar A, Joshi SY
Catalysis Today, 360, 426, 2021
6 Theory and practice of metal oxide catalyst design for the selective catalytic reduction of NOx with NH3
Shan WP, Yu YB, Zhang Y, He GZ, Peng Y, Li JH, He H
Catalysis Today, 376, 292, 2021
7 Microwave synthesis conditions dependent catalytic performance of hydrothermally aged CuII-SSZ-13 for NH3-SCR of NO
Wang B, Yu HF, Wang MX, Han LA, Wang JC, Bao WR, Chang LP
Catalysis Today, 376, 19, 2021
8 Improved catalytic performance and resistance to SO2 over V2O5-WO3/TiO2 catalyst physically mixed with Fe2O3 for low-temperature NH3-SCR
Kang TH, Youn S, Kim DH
Catalysis Today, 376, 95, 2021
9 Synthesis of bulk vanadium oxide with a large surface area using organic acids and its low-temperature NH3-SCR activity
Inomata Y, Hata S, Kiyonaga E, Morita K, Yoshida K, Haruta M, Murayama T
Catalysis Today, 376, 188, 2021
10 Acid-pretreated red mud for selective catalytic reduction of NOx with NH3: Insights into inhibition mechanism of binders
Wang B, Ma J, Wang D, Gong ZQ, Shi QL, Gao CA, Lu CM, Crittenden J
Catalysis Today, 376, 247, 2021