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Catalytic Wet Air Oxidation of Aniline with Nanocasted Mn-Ce-Oxide Catalyst

机译:纳米铸造的Mn-Ce-氧化物催化湿式苯胺氧化

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The catalytic wet air oxidation of aqueous solution containing 1000 ppm aniline was conducted in a trickle-bed reactor packed with a novel nanocasted Mn-Ce-oxide catalyst (surface area of 300 m~2/g) prepared using SBA-15 silica as a hard template. A range of liquid hourly space velocities (5-20 h~(-1)) and temperatures (110-140℃) at 10 bar of oxygen were tested. The experiments were conducted to provide the intrinsic performance of the catalysts. Complete aniline conversion, 90% TOC conversion, and 80% nitrogen mineralization were achieved at 140℃ and 5 h~(-1). Blank experiments yielded relatively low homogeneous aniline (<35%) and negligible TOC conversions. Fast deactivation of the catalysts was experienced due to leaching caused by complexation with aniline. Acidification of the solution with HCI (molar HCI to aniline ratio of 1.2) was necessary to avoid colloidization and leaching of the nanoparticulate catalyst components. The catalyst displayed stable performance for over 200 h on stream.
机译:含有1000 ppm苯胺的水溶液的湿式催化氧化是在滴流床反应器中进行的,该反应器装有以SBA-15二氧化硅为原料制备的新型纳米浇铸Mn-Ce-氧化物催化剂(表面积300 m〜2 / g)。硬模板。测试了在10 bar氧气下的液体时空速度(5-20​​ h〜(-1))和温度(110-140℃)的范围。进行实验以提供催化剂的固有性能。在140℃和5 h〜(-1)条件下,苯胺完全转化,TOC转化率为90%,氮矿化率为80%。空白实验产生的均相苯胺相对较低(<35%),TOC转化率可忽略不计。由于与苯胺络合引起的浸出,导致催化剂快速失活。用HCl酸化溶液(HCl与苯胺的摩尔比为1.2)对于避免胶体化和纳米颗粒催化剂组分的浸出是必要的。催化剂在运行200多个小时后表现出稳定的性能。

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