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介孔 ZrOSiO 负载的 Pd-Fe 催化剂上 4-氯苯酚的加氢脱氯反应。

Hydrodechlorination of 4-Chlorophenol on Pd-Fe Catalysts on Mesoporous ZrOSiO Support.

机构信息

Chemistry Department, Lomonosov Moscow State University, Leninskie Gory 1/3, 119991 Moscow, Russia.

N.D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, Leninsky Prospect 47, 119991 Moscow, Russia.

出版信息

Molecules. 2020 Dec 30;26(1):141. doi: 10.3390/molecules26010141.

Abstract

A mesoporous support based on silica and zirconia (ZS) was used to prepare monometallic 1 wt% Pd/ZS, 10 wt% Fe/ZS, and bimetallic FePd/ZS catalysts. The catalysts were characterized by TPR-H, XRD, SEM-EDS, TEM, AAS, and DRIFT spectroscopy of adsorbed CO after H reduction in situ and tested in hydrodechlorination of environmental pollutant 4-chlorophelol in aqueous solution at 30 °C. The bimetallic catalyst demonstrated an excellent activity, selectivity to phenol and stability in 10 consecutive runs. FePd/ZS has exceptional reducibility due to the high dispersion of palladium and strong interaction between FeOx and palladium, confirmed by TPR-H, DRIFT spectroscopy, XRD, and TEM. Its reduction occurs during short-time treatment with hydrogen in an aqueous solution at RT. The Pd/ZS was more resistant to reduction but can be activated by aqueous phenol solution and H. The study by DRIFT spectroscopy of CO adsorbed on Pd/ZS reduced in harsh (H, 330 °C), medium (H, 200 °C) and mild conditions (H + aqueous solution of phenol) helped to identify the reasons of the reducing action of phenol solution. It was found that phenol provided fast transformation of Pd to Pd. Pd/ZS also can serve as an active and stable catalyst for 4-PhCl transformation to phenol after proper reduction.

摘要

一种基于二氧化硅和氧化锆(ZS)的中孔载体被用于制备单价 1wt%Pd/ZS、10wt%Fe/ZS 和双金属 FePd/ZS 催化剂。这些催化剂通过原位 H 还原条件下的 TPR-H、XRD、SEM-EDS、TEM、AAS 和吸附 CO 的 DRIFT 光谱进行了表征,并在 30°C 下于水溶液中用于环境污染物 4-氯苯酚的加氢脱氯反应测试。双金属催化剂在 10 次连续运行中表现出优异的活性、对苯酚的选择性和稳定性。FePd/ZS 具有出色的还原性能,这归因于钯的高分散性和 FeOx 与钯之间的强相互作用,这通过 TPR-H、DRIFT 光谱、XRD 和 TEM 得到了证实。其还原在室温下短时间的氢气处理过程中发生。Pd/ZS 更难还原,但可以被水溶液中的苯酚和 H 激活。通过 DRIFT 光谱研究在苛刻(H,330°C)、中等(H,200°C)和温和条件(H + 苯酚水溶液)下还原吸附的 CO,有助于确定苯酚溶液还原作用的原因。结果发现,苯酚可快速将 Pd 转化为 Pd。Pd/ZS 也可以作为 4-PhCl 转化为苯酚的活性和稳定催化剂,在经过适当还原后使用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/924e/7795707/6949ecfe633a/molecules-26-00141-g001.jpg

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