The effect of acidic treatments on N2O reduction over Ni catalysts supported on activated carbon was systematically studied. The catalysts were characterized by N-2 adsorption, mass titration, temperature-programmed desorption (TPD), and X-ray photoelectron spectrometry (XPS). It is found that surface chemistry plays an important role in N2O-carbon reaction catalyzed by Ni catalyst. HNO3 treatment produces more active acidic surface groups such as carboxyl and lactone, resulting in a more uniform catalyst dispersion and higher catalytic activity. However, HCl treatment decreases active acidic groups and increases the inactive groups, playing an opposite role in the catalyst dispersion and catalytic activity. A thorough discussion of the mec...
Catalytic conversion of N O to N with Cu- and Co- impregnated activated carbon catalysts (Cu/AC and ...
The influence of ammonia and nitric oxide oxidation on the selective catalytic reduction (SCR) of NO...
The interaction between metal nanoparticles and a support is of key importance in catalysis. In this...
Activated carbon as catalyst support was treated with HCl, HNO3, and HF and the effects of acid trea...
The influences of HCl, HNO3 and HF treatments of carbon on N2O and NO reduction with 20 wt% Cu-loade...
Catalytic conversion of N2O to N-2 over Na- and K-impregnated activated carbon (Na/AC and K/AC) was ...
The carbonaceous layer, formed on a Ni/SiO<sub>2</sub> catalyst, and its influence on the selectivit...
Three nickel catalysts supported on carbon nanofibers (CNFs) have been prepared by deposition–precip...
Catalyst deactivation due to carbon deposition is a major issue in all reforming technologies. Becau...
Catalytic conversion of N2O to N-2 over Cu- and Co-impregnated activated carbon catalysts (Cu/AC and...
Carbon deposition on Ni-based catalysts has a significant influence on their cracking activity and s...
Catalytic conversion of N2O to N-2 With potassium catalysts supported on activated carbon (K/AC) was...
Multidoped carbons are often used for oxygen activation catalysis, both in heterogeneous catalysis a...
The selective catalytic reduction (SCR) of NO by C3H6 has been studied over a series of calcined hyd...
The main goal of this project had been to use model systems to correlate selectivities in partial ox...
Catalytic conversion of N O to N with Cu- and Co- impregnated activated carbon catalysts (Cu/AC and ...
The influence of ammonia and nitric oxide oxidation on the selective catalytic reduction (SCR) of NO...
The interaction between metal nanoparticles and a support is of key importance in catalysis. In this...
Activated carbon as catalyst support was treated with HCl, HNO3, and HF and the effects of acid trea...
The influences of HCl, HNO3 and HF treatments of carbon on N2O and NO reduction with 20 wt% Cu-loade...
Catalytic conversion of N2O to N-2 over Na- and K-impregnated activated carbon (Na/AC and K/AC) was ...
The carbonaceous layer, formed on a Ni/SiO<sub>2</sub> catalyst, and its influence on the selectivit...
Three nickel catalysts supported on carbon nanofibers (CNFs) have been prepared by deposition–precip...
Catalyst deactivation due to carbon deposition is a major issue in all reforming technologies. Becau...
Catalytic conversion of N2O to N-2 over Cu- and Co-impregnated activated carbon catalysts (Cu/AC and...
Carbon deposition on Ni-based catalysts has a significant influence on their cracking activity and s...
Catalytic conversion of N2O to N-2 With potassium catalysts supported on activated carbon (K/AC) was...
Multidoped carbons are often used for oxygen activation catalysis, both in heterogeneous catalysis a...
The selective catalytic reduction (SCR) of NO by C3H6 has been studied over a series of calcined hyd...
The main goal of this project had been to use model systems to correlate selectivities in partial ox...
Catalytic conversion of N O to N with Cu- and Co- impregnated activated carbon catalysts (Cu/AC and ...
The influence of ammonia and nitric oxide oxidation on the selective catalytic reduction (SCR) of NO...
The interaction between metal nanoparticles and a support is of key importance in catalysis. In this...