首页> 外文期刊>Journal of Environmental Science and Health >Oxidative degradation of 2,6-dibromophenol using anion-exchange resin supported supramolecular catalysts of iron(III)-5,10,15,20-tetrakis (p-hydroxyphenyl)porphyrin bound to humic acid prepared via formaldehyde and urea-formaldehyde polycondensation
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Oxidative degradation of 2,6-dibromophenol using anion-exchange resin supported supramolecular catalysts of iron(III)-5,10,15,20-tetrakis (p-hydroxyphenyl)porphyrin bound to humic acid prepared via formaldehyde and urea-formaldehyde polycondensation

机译:阴离子交换树脂负载的铁(III)-5,10,15,20-四(对羟基苯基)卟啉与腐殖酸结合的超分子催化剂氧化降解2,6-二溴苯酚的甲醛和脲醛缩聚反应

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摘要

An iron(III)-porphyrin catalyst, iron(III)-tetrakis(p-hydroxyphenyl)porphyrin (FeTHP), was introduced into a humic acid via a formaldehyde or urea-formaldehyde polycondensation reaction to stabilize the catalyst. The prepared supramolecular catalysts were then attached to Dowex-22, an anion-exchange resin. The oxidation of 2,6-dibromophenol (2,6-DBP) was then used, to evaluate the catalytic activities of the supported catalysts. The supported catalyst prepared via the urea-formaldehyde polycondensation reaction showed the highest catalytic activity of all catalysts tested. However, no debromination was observed under any conditions. To examine the reusability of the supported catalysts, they were evaluated on the basis of the decrease in the percent degradation of 2,6-DBP for the number times that they could be used. To determine why the catalytic activities decreased with increasing use, the surface of the supported catalysts were observed by scanning electron microscopy and energy dispersive X-ray spectrometry (SME-EDS) after each use. The poor reusability of the supported catalysts can be attributed to the fact that 2,6-DBP and/or brominated byproducts are tightly absorbed to the catalyst in the vicinity of the active site, which leads to inactivation of the supported catalysts.
机译:通过甲醛或脲-甲醛缩聚反应将铁(III)-卟啉催化剂,铁(III)-四(对羟基苯基)卟啉(FeTHP)引入到腐殖酸中以稳定催化剂。然后将制备的超分子催化剂连接到阴离子交换树脂Dowex-22上。然后使用2,6-二溴苯酚(2,6-DBP)的氧化来评估负载型催化剂的催化活性。通过脲-甲醛缩聚反应制备的负载型催化剂在所有测试的催化剂中显示出最高的催化活性。但是,在任何条件下均未观察到脱溴。为了检查负载型催化剂的可重复使用性,在2,6-DBP降解百分率下降的基础上评估了它们的可使用次数。为了确定为什么催化活性随使用量增加而降低,在每次使用后通过扫描电子显微镜和能量色散X射线光谱法(SME-EDS)观察负载型催化剂的表面。负载型催化剂的可重复使用性差的原因可归因于这样的事实,即2,6-DBP和/或溴化副产物被紧密吸附在活性位点附近的催化剂上,这导致负载型催化剂失活。

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