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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Removal of NO and fly ash over a carbon supported catalyst: Effects of fly ash concentration and operating time
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Removal of NO and fly ash over a carbon supported catalyst: Effects of fly ash concentration and operating time

机译:用碳载催化剂去除NO和粉煤灰:粉煤灰浓度和运行时间的影响

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摘要

This study investigated the removal efficiency of NO and fly ash from flue gas over a Cu catalyst supported on modified activated carbon (AC) in a pilot-scale fluidized-bed catalytic reactor. The fly ash came from a coal-fired power plant was used in our experiment. The AC support was pretreated by either HNO3 (AC-N), H2O2, H2SO4, or NaOH. The acidic concentrations in the four catalysts followed the order CuO/AC-N (0.174 mol g-(-1))>CuO/AC-H (0.138 mol g~(-1))>CuO/AC-S (0.103 mol g~(-1))>CuO/AC-Na (0.009 mol g~(-1)). Good dispersion of nanoscale CuO particles was observed over the modified supports having a large total number of acidic sites. Moreover, the increase in the number of phenolic and carboxylic groups may increase the NO removal efficiency over modified CuO/AC catalysts. The results was also suggested that the total number of acidic groups decreased in the reduction of NO over the CuO/AC catalysts due to the adsorption of NH3 on NO reduction. Simultaneous removal of NO and fly ash in flue gas under different fly ash concentrations and operating times was studied over the CuO/AC-N catalyst. When fly ash (1406-49,108 mg m~(-3)) was added in the flue gas, the removal efficiencies of NO and fly ash over Cu/AC-N were 58%-61% and 82%-86%, respectively. At an operating time of 240 min, the removal efficiency of fly ash was 76%, and the NO removal efficiency decreased slightly to 55%. The NO removal efficiency was inhibited slightly under high fly ash concentration and long operating time.
机译:这项研究调查了中试流化床催化反应器中负载在改性活性炭(AC)上的Cu催化剂上烟道气中NO和飞灰的去除效率。实验中使用的是来自燃煤电厂的粉煤灰。使用HNO3(AC-N),H2O2,H2SO4或NaOH预处理AC载体。四种催化剂中的酸性浓度依次为CuO / AC-N(0.174 mol g-(-1))> CuO / AC-H(0.138 mol g〜(-1))> CuO / AC-S(0.103 mol) g〜(-1))> CuO / AC-Na(0.009 mol g〜(-1))。在具有大量酸性位点的改性载体上观察到纳米级CuO颗粒的良好分散。而且,与改性的CuO / AC催化剂相比,酚基和羧基基团数目的增加可以增加NO的去除效率。结果还表明,由于NH 3吸附在NO还原上,与CuO / AC催化剂相比,NO还原时酸性基团的总数减少。在CuO / AC-N催化剂上研究了在不同粉煤灰浓度和运行时间下烟气中NO和粉煤灰的同时去除。在烟气中加入粉煤灰(1406-49,108 mg m〜(-3))时,NO和粉煤灰对Cu / AC-N的去除效率分别为58%-61%和82%-86%。 。在240分钟的运行时间下,粉煤灰的去除效率为76%,而NO去除效率则略微降低至55%。在高粉煤灰浓度和较长的运行时间下,NO去除效率受到轻微抑制。

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