首页> 外文期刊>Physical chemistry chemical physics: PCCP >One-step gas-phase catalytic oxidation of benzene to phenol with molecular oxygen over Cu-supported ZSM-5 zeolites
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One-step gas-phase catalytic oxidation of benzene to phenol with molecular oxygen over Cu-supported ZSM-5 zeolites

机译:铜负载的ZSM-5分子筛上一步一步气相氧化苯与苯并分子氧催化氧化为苯酚

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摘要

The gas-phase catalytic oxidation of benzene was carried out using molecular oxygen as an oxidant over Cu-supported catalysts. Phenol was formed only when using Cu-supported high-silica-type zeolites as catalysts. The Cu-supported H-ZSM-5 zeolite (CuH-ZSM-5) was the most active among those tested. Deep oxidation products (CO and CO2) were also produced together with phenol and they were suggested to form either via phenol or directly from benzene, based on the activity test experiments by varying the contact time. The yield and selectivity of phenol had a maximum with respect to the Cu contents in the CuH-ZSM-5, and were optimized with ca. a 0.77 wt.% Cu loading ( phenol yield similar to4.9%). The calcination of the CuH-ZSM-5 at the higher temperature of around 1123 K was found to be effective for the phenol formation. The H-ZSM-5 with lower Si/Al atomic ratios was an effective support for the phenol formation. The EPR study revealed that the increase in the square-pyramidal Cu2+ species was brought about when the CuH-ZSM-5 was calcined at higher temperatures or when HZSM-5 with lower Si/Al atomic ratios was used as a support. The isolated square-pyramidal Cu2+ species was suggested to be the active species for the phenol formation. [References: 48]
机译:苯的气相催化氧化是在铜负载的催化剂上使用分子氧作为氧化剂进行的。仅当使用Cu负载的高二氧化硅型沸石作为催化剂时才形成苯酚。在测试的那些中,铜负载的H-ZSM-5沸石(CuH-ZSM-5)活性最高。深氧化产物(CO和CO2)也与苯酚一起生成,并根据通过改变接触时间的活性测试实验,建议通过苯酚或直接从苯形成。相对于CuH-ZSM-5中的Cu含量,苯酚的收率和选择性最大,并用约10.0进行了优化。 0.77%(重量)的铜载量(苯酚收率接近4.9%)。发现在约1123K的较高温度下对CuH-ZSM-5进行煅烧对于形成苯酚是有效的。 Si / Al原子比较低的H-ZSM-5是苯酚形成的有效支撑。 EPR研究表明,当在较高温度下煅烧CuH-ZSM-5或将具有较低Si / Al原子比的HZSM-5用作载体时,会导致方形金字塔形Cu2 +物种的增加。分离出的方形金字塔形的Cu2 +被认为是形成苯酚的活性物质。 [参考:48]

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