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首页> 外文期刊>Scientific reports. >Selective phenol recovery via simultaneous hydrogenation/dealkylation of isopropyl- and isopropenyl-phenols employing an H 2 generator combined with tandem micro-reactor GC/MS
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Selective phenol recovery via simultaneous hydrogenation/dealkylation of isopropyl- and isopropenyl-phenols employing an H 2 generator combined with tandem micro-reactor GC/MS

机译:通过使用H 2发生器和串联微反应器GC / MS进行异丙基和异丙烯基苯酚的同时加氢/脱烷基化,选择性回收苯酚

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摘要

The pyrolysis of bisphenol A (BPA), an essential process ingredient used in industry and many everyday life products, helps produce low-industrial-demand chemicals such as isopropenyl- and isopropyl-phenols (IPP and iPrP). In this study, tandem micro-reactor gas chromatography/mass spectrometry combined with an H2 generator (H2-TR-GC/MS) was employed for the first time to investigate the selective recovery of phenol via simultaneous hydrogenation/dealkylation of IPP and iPrP. After investigating the iPrP dealkylation performances of several zeolites, we obtained full iPrP conversion with over 99% phenol selectivity using the Y-zeolite at 350?°C. In contrast, when applied to IPP, the zeolite acid centres caused IPP polymerisation and subsequent IPP-polymer cracking, resulting in many byproducts and reduced phenol selectivity. This challenge was overcome by the addition of 0.3?wt% Ni on the Y-zeolite (0.3Ni/Y), which enabled the hydrogenation of IPP into iPrP and subsequent dealkylation into phenol (full IPP conversion with 92% phenol selectivity). Moreover, the catalyst deactivation and product distribution over repetitive catalytic use were successfully monitored using the H2-TR-GC/MS system. We believe that the findings presented herein could allow the recovery of phenol-rich products from polymeric waste with BPA macro skeleton.
机译:双酚A(BPA)的热解是工业和许多日常生活产品中使用的必不可少的工艺成分,可帮助生产低工业需求的化学品,例如异丙烯基和异丙基苯酚(IPP和iPrP)。在这项研究中,串联微反应器气相色谱/质谱联用了H 2 发生器(H 2 -TR-GC / MS)。研究通过IPP和iPrP的同时加氢/脱烷基反应选择性回收苯酚。在研究了几种沸石的iPrP脱烷基性能后,我们在350℃下使用Y型沸石获得了全iPrP转化率,苯酚选择性超过99%。相反,当应用于IPP时,沸石酸中心会引起IPP聚合和随后的IPP聚合物裂解,从而导致许多副产物并降低了苯酚的选择性。通过在Y沸石上添加0.3wt%的Ni(0.3Ni / Y)克服了这一挑战,这可以使IPP氢化成iPrP,随后脱烷基化成苯酚(完全IPP转化,苯酚选择性达到92%)。此外,使用H 2 -TR-GC / MS系统成功监测了催化剂的失活和重复使用过程中产物的分布。我们相信,本文介绍的发现可以使具有BPA宏观骨架的聚合物废物中富含苯酚的产品得以回收。

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