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评价 Au/γ-AlO 纳米催化剂用于甲苯的等离子体催化分解。

Evaluation of Au/γ-AlO nanocatalyst for plasma-catalytic decomposition of toluene.

机构信息

School of Environmental and Safety Engineering, Changzhou University, Jiangsu, 213164, China; Advanced Plasma Catalysis Engineering Laboratory for China Petrochemical Industry, Changzhou University, Jiangsu, 213164, China.

School of Environmental Science and Engineering, Zhejiang Gongshang University, Zhejiang, 310018, China; Focused Photonics (Hangzhou) Inc., Zhejiang, 310052, China.

出版信息

Chemosphere. 2021 Dec;285:131474. doi: 10.1016/j.chemosphere.2021.131474. Epub 2021 Jul 10.

Abstract

The emission of toluene into the atmosphere can seriously affect the environmental quality and endanger human health. A dielectric barrier discharge reactor filled with a small amount of Au nanocatalysts was used to decompose toluene in He and O gases mixtures at room temperature and atmospheric pressure. Normally, the oxidation of toluene using Au nanocatalysts suffers from low reaction activity and facile catalyst deactivation. Herein, the effects of Au loading, calcination time and calcination temperature were systematically investigated. It was found that 0.1 wt%Au/γ-AlO calcined at 300 °C for 5 h can keep an average size around 6 nm with good dispersion on γ-AlO surface and display the best catalytic performance. Moreover, the influences of energy density, gas flow rate, toluene concentration and O concentration on toluene degradation using 0.1 wt%Au/γ-AlO were evaluated. It showed the best catalytic performance of near 100% conversion for toluene degradation under the reaction conditions of the energy density was 20 J/L, the gas flow rate was 300 mL/min, the concentration of toluene was 376 mg/m and the oxygen content was 10%. Combining experimental results and theoretical calculations, the values of reaction constant k were 8.6 × 10, 3.53 × 10 and 3.09 × 10 m/(mol*J), when O concentration, power or flow rate changed, respectively. Therefore, O concentration has the greatest effect on toluene decomposition compared to other factors in the presence of Au/γ-AlO.

摘要

甲苯排入大气会严重影响环境质量,危害人类健康。本文采用填充有少量 Au 纳米催化剂的介质阻挡放电反应器,在室温常压下分解 He 和 O 混合气体中的甲苯。通常,Au 纳米催化剂氧化甲苯的反应活性低,催化剂易失活。本文系统研究了 Au 负载量、煅烧时间和煅烧温度的影响。结果表明,负载量为 0.1wt%、煅烧温度为 300°C、煅烧时间为 5h 的 0.1wt%Au/γ-AlO 可以保持平均粒径约 6nm,具有良好的分散性。此外,还评估了能量密度、气体流速、甲苯浓度和 O 浓度对 0.1wt%Au/γ-AlO 降解甲苯的影响。在能量密度为 20J/L、气体流速为 300mL/min、甲苯浓度为 376mg/m 和 O 浓度为 10%的反应条件下,0.1wt%Au/γ-AlO 对甲苯的催化性能最佳,转化率接近 100%。结合实验结果和理论计算,当 O 浓度、功率或流速发生变化时,反应常数 k 的值分别为 8.6×10、3.53×10 和 3.09×10m/(mol*J)。因此,在 Au/γ-AlO 的存在下,O 浓度对甲苯分解的影响比其他因素都大。

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