首页> 外文期刊>Environmental Technology >Effect of ball milling on the catalytic activity of cryptomelane for VOC oxidation
【24h】

Effect of ball milling on the catalytic activity of cryptomelane for VOC oxidation

机译:球磨对隐花mel烷催化VOC氧化的影响

获取原文
获取原文并翻译 | 示例
       

摘要

Cryptomelane-type manganese oxides prepared by a solvent-free method were evaluated as catalysts for the oxidation of ethyl acetate, ethanol and toluene. The original catalyst (K-OMS-2) presented high catalytic activity for ethyl acetate and ethanol oxidation, achieving 90% conversion into CO2 around 200 degrees C for both pollutants. Toluene was much harder to oxidize, requiring a temperature near 270 degrees C for the same conversion. The original catalyst was mechanically treated in a ball mill at different intensities, in order to decrease the particle size for subsequent impregnation onto structured supports, as small particle sizes are usually recommended. The catalytic activity of the materials decreases with the increase in the severity of this treatment, which is related to the decrease of the surface area of the catalysts, since the other properties (phase purity, thermal stability, surface oxygen, average oxidation state and reactivity of the oxygen species) are similar among the catalysts with different ball milling treatments. For comparison, a platinum-based catalyst (1%-Pt/Al2O3) was also tested, which exhibited a high activity for toluene, but much lower activities for the two other volatile organic compounds tested. A long-term experiment, using ethanol as model pollutant, showed that the cryptomelane catalyst was stable for more than 100 h.[GRAPHICS].
机译:通过无溶剂方法制备的隐甲烷型锰氧化物被评估为乙酸乙酯,乙醇和甲苯氧化的催化剂。原始催化剂(K-OMS-2)对乙酸乙酯和乙醇氧化具有很高的催化活性,两种污染物在200摄氏度左右都能实现90%转化为CO2。甲苯很难氧化,相同转化所需的温度接近270摄氏度。原始催化剂在球磨机中以不同的强度进行了机械处理,以减小随后用于浸渍到结构化载体上的粒径,因为通常建议使用较小的粒径。材料的催化活性随处理强度的增加而降低,这与催化剂表面积的减少有关,因为其他性能(相纯度,热稳定性,表面氧,平均氧化态和反应性)在采用不同球磨处理的催化剂中,氧种类的百分比相似。为了进行比较,还测试了一种铂基催化剂(1%-Pt / Al2O3),该催化剂对甲苯具有很高的活性,但对其他两种挥发性有机化合物的活性却低得多。以乙醇为模型污染物的长期实验表明,隐锰烷催化剂可稳定100小时以上。[GRAPHICS]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号