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钯浸渍 ZSM-5 涂覆整体式催化剂的等离子体协同催化去除乙烯。

Plasma-catalytic ethylene removal by a ZSM-5 washcoat honeycomb monolith impregnated with palladium.

机构信息

Department of Chemical and Biological Engineering, Jeju National University, Jeju 63243, Republic of Korea.

Department of Chemical and Biological Engineering, Jeju National University, Jeju 63243, Republic of Korea; Institute of Research and Development, Duy Tan University, Danang 550000, Vietnam.

出版信息

J Hazard Mater. 2022 Mar 15;426:127843. doi: 10.1016/j.jhazmat.2021.127843. Epub 2021 Nov 21.

Abstract

The effective removal of dilute ethylene in a novel honeycomb plasma reactor was investigated using a honeycomb catalyst (Pd/ZSM-5/monolith) sandwiched between two-perforated electrodes operating at ambient temperature. Herein, the dependence of catalyst performance on the binder fraction, catalyst preparation method, and catalyst loading was examined. Ethylene removal was carried out by a process comprising cycles of 30-min adsorption conjugated with 15-min plasma-catalytic oxidation. Interestingly, the performance of the cyclic process was superior to continuous plasma-catalytic oxidation and thermally activated catalyst in terms of energy conservation, i.e., ~36 compared to ~105 and ~300 J/L, respectively. Hence, the novel cyclic process can be considered advanced-oxidation technology that features room-temperature oxidation, offers low energy consumption, negligible hazardous by-products emissions such as NO and O. Moreover, the process operated under described conditions: low-pressure drop, ambient atmosphere, a mechanically stable system, and a simple reactor configuration, suggesting the practical applicability of this plasma process.

摘要

采用夹心式结构的整体式催化剂(Pd/ZSM-5/整体式催化剂),在两个带有穿孔电极的平板之间构建新型蜂窝状等离子体反应器,研究了其在常温条件下有效去除稀乙烯的效果。在此,考察了结合剂分数、催化剂制备方法和催化剂负载量对催化剂性能的影响。采用吸附-等离子体协同氧化循环过程(吸附 30min 与等离子体协同氧化 15min 交替进行)去除乙烯。有趣的是,与连续等离子体协同氧化和热激活催化剂相比,该循环过程在节能方面表现更佳,即分别节约约 36%、105%和 300%的能量(以焦耳/升为单位)。因此,该新型循环过程可被视为一种先进的氧化技术,具有室温氧化、低能耗、几乎无氮氧化物(NOx)和臭氧(O3)等有害副产物排放的特点。此外,该过程在低压降、环境气氛、机械稳定的系统和简单的反应器结构下运行,表明该等离子体过程具有实际应用潜力。

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