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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 |
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Promotion of the performance of Cu-SSZ-13 for selective catalytic reduction of NOx by ammonia in the presence of SO2 during high temperature hydrothermal aging Yong X, Zhang CJ, Wei M, Xie PP, Li YD Journal of Catalysis, 394, 228, 2021 |
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HC-SCR system combining Ag/Al2O3 and Pd/Al2O3 catalysts with resistance to hydrothermal aging for simultaneous removal of NO, HC, and CO Lee KS, Choi BC Journal of Industrial and Engineering Chemistry, 102, 51, 2021 |
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Effects of four-mode hydrothermal aging on three-way catalysts for passive selective catalytic reduction to control emissions from lean-burn gasoline engine Thomas CR, Pihl JA, Lance MJ, Toops TJ, Parks JE, Lauterbach J Applied Catalysis B: Environmental, 244, 284, 2019 |
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Insights into hydrothermal aging of phosphorus-poisoned Cu-SSZ-13 for NH3-SCR Xie KP, Woo J, Bernin D, Kumar A, Kamasamudram K, Olsson L Applied Catalysis B: Environmental, 241, 205, 2019 |
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Investigation of the robust hydrothermal stability of Cu/LTA for NH3-SCR reaction Wang AY, Arora P, Bernin D, Kumar A, Kamasamudram K, Olsson L Applied Catalysis B: Environmental, 246, 242, 2019 |
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Phosphorus modification to improve the hydrothermal stability of a Cu-SSZ-13 catalyst for selective reduction of NOx with NH3 Zhao HW, Zhao YN, Liu MK, Li XH, Ma YH, Yong X, Chen H, Li YD Applied Catalysis B: Environmental, 252, 230, 2019 |
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The influence of chemical poisoning, hydrothermal aging and their co-effects on Cu-SAPO-34 catalyst for NOx reduction by NH3-SCR Albert KB, Fan C, Pang L, Chen Z, Ming SJ, Albert T, Li T Applied Surface Science, 479, 1200, 2019 |
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Deactivation of Cu-SSZ-13 in the presence of SO2 during hydrothermal aging Shan YL, Shi XY, Yan ZD, Liu JJ, Yu YB, He H Catalysis Today, 320, 84, 2019 |
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Effect of various activation conditions on the low temperature NO adsorption performance of Pd/SSZ-13 passive NOx adsorber Ryou Y, Lee J, Lee H, Kim CH, Kim DH Catalysis Today, 320, 175, 2019 |