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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Copper- and iron-pillared clay catalysts for the WHPCO of model and real wastewater streams from olive oil milling production
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Copper- and iron-pillared clay catalysts for the WHPCO of model and real wastewater streams from olive oil milling production

机译:铜和铁桩粘土催化剂,用于橄榄油研磨生产的模型废水和实际废水中的WHPCO

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The properties of copper-based pillared clays (Cu-PILC) have been studied and compared with those of the analogous iron-based clays (Fe-PILC) in the wet hydrogen peroxide catalytic oxidation (WHPCO) of model phenolic compounds (p-coumaric and p-hydroxybenzoic acids) and real olive oil milling wastewater (OMW). These two catalysts show comparable performances in all these reactions, although they show some differences in the rates of the various steps of reaction. In particular, Cu-PILC shows a lower formation of oxalic acid (main reaction intermediate) with respect to Fe-PILC. Both catalysts show no leaching of the transition metal differently from other copper-based catalysts prepared by wetness impregnation on oxides (alumina, zirconia) or ion-exchange of clays (bentonite) or zeolite ZSM-5. No relationship was observed between copper reducibility in the catalyst and the performance in WHPCO, as well as between the rate of copper leaching and catalytic behavior. Cu-PILC shows a comparable activity to dissolved Cu2+ ions, although the turnover number is lower assuming that all copper ions in Cu-PILC are active. Cu-PILC shows a high resistance to leaching and a good catalytic performance, which was attributed to the presence of copper essentially in the pillars of the clay. A high efficiency in H2O2 use in the first hour of reaction with the participation of dissolved O-2 in solution was also shown. For longer reaction times, however, the efficiency of H2O2 use considerably decreases. (c) 2006 Elsevier B.V. All rights reserved.
机译:研究了铜基柱状粘土(Cu-PILC)的性能,并将其与类似铁基粘土(Fe-PILC)在模型酚类化合物(p-couumaric)的湿式过氧化氢催化氧化(WHPCO)中的性能进行了比较。和对羟基苯甲酸)和真正的橄榄油研磨废水(OMW)。这两种催化剂在所有这些反应中均表现出可比的性能,尽管它们在各个反应步骤的速率上显示出一些差异。特别地,相对于Fe-PILC,Cu-PILC显示出较低的草酸(主要反应中间体)的形成。与通过湿法浸渍在氧化物(氧化铝,氧化锆)或粘土(膨润土)或沸石ZSM-5进行离子交换制得的其他铜基催化剂不同,两种催化剂均未显示出过渡金属的浸出。在催化剂中的铜还原性和在WHPCO中的性能之间,以及在铜的浸出速率和催化行为之间,没有发现任何关系。尽管假定Cu-PILC中的所有铜离子均具有活性,但营业额较低,但Cu-PILC的活性与溶解的Cu2 +离子相当。 Cu-PILC显示出高的耐浸出性和良好的催化性能,这归因于基本上在粘土柱中存在铜。还显示出在反应的第一小时内H2O2的高效利用,溶解的O-2参与了溶液。然而,对于更长的反应时间,H 2 O 2的使用效率大大降低。 (c)2006 Elsevier B.V.保留所有权利。

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