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UV 预处理 Fe-ZSM-5 催化剂对 VOC 非均相催化完全氧化的协同效应:可持续利用的技术发展。

Synergistic effect of UV pretreated Fe-ZSM-5 catalysts for heterogeneous catalytic complete oxidation of VOC: A technology development for sustainable use.

机构信息

University of Science and Technology (UST), 217 Gajeong-ro, Yuseong-gu, Daejeon, 305-350, Republic of Korea; Environmental and Plant Engineering Research Institute, Korea Institute of Civil Engineering and Building Technology (KICT), 283 Goyangdae-ro, Ilsanseo-gu, Goyang-si, Gyeonggi-do, 411-712, Republic of Korea; Pakistan Atomic Energy Commission (PAEC), Islamabad, Pakistan.

University of Science and Technology (UST), 217 Gajeong-ro, Yuseong-gu, Daejeon, 305-350, Republic of Korea; Environmental and Plant Engineering Research Institute, Korea Institute of Civil Engineering and Building Technology (KICT), 283 Goyangdae-ro, Ilsanseo-gu, Goyang-si, Gyeonggi-do, 411-712, Republic of Korea.

出版信息

J Hazard Mater. 2017 Oct 15;340:351-359. doi: 10.1016/j.jhazmat.2017.07.019. Epub 2017 Jul 10.

Abstract

In this work, the performance of benzene, toluene, ethylbenzene, and xylene (BTEX) removal and degradation from gas, air streams on UV pretreated Fe-ZSM-5 in a batch reactor at room temperature were studied. The Fe-ZSM-5 zeolite catalyst was prepared by hydrothermal reaction method. The influence of UV pre-irradiation time on the removal of BTEX were assessed by varying the time, ranging from 15min to 60smin. Then, sustainability of the activation of the catalyst resulted by UV pretreatment was studied by the four-cycle experiment with one time UV irradiation and after each cycle irradiation followed by BTEX removal after every cycle respectively. The results of BTEX removal depicted that 30min of UV pretreatment was sufficient for complete organics removal. The UV pretreatment effect on the catalytic oxidation and the stability of the catalyst were studied by modern instrumental techniques. The novelty of the process was the sustainable reuse of catalyst with persistent VOC removal, which works on the -adsorption-oxidation-regeneration-adsorption- cycle, which was confirmed by the characterization studies of the catalyst after four runs. The results revealed that the change in the structure, stability, morphology, and removal efficiency of the catalyst during the experiments was negligible. The VOC degradation mechanism studies showed that the oxidation occurs due to the formation of free radicals as well as hydroxyl ions, so named it heterogeneous photo-Fenton oxidation. The residual materials analysis showed the complete mineralization of VOC except small amount of acetone as oxidation product. Lastly, the kinetics of the VOC removal was studied.

摘要

本工作研究了在室温下,采用批式反应器,在 UV 预处理的 Fe-ZSM-5 上,从气体、空气流中去除和降解苯、甲苯、乙苯和二甲苯(BTEX)的性能。Fe-ZSM-5 沸石催化剂采用水热反应法制备。通过改变时间(从 15min 到 60min),评估了 UV 预辐照时间对 BTEX 去除的影响。然后,通过四次循环实验研究了 UV 预处理对催化剂活化的可持续性,其中一次 UV 辐照和每次循环后的 BTEX 去除分别进行了辐照。BTEX 去除的结果表明,30min 的 UV 预处理足以完全去除有机物。通过现代仪器技术研究了 UV 预处理对催化氧化和催化剂稳定性的影响。该工艺的新颖之处在于催化剂的可持续再利用,具有持久的 VOC 去除效果,该工艺基于 -吸附-氧化-再生-吸附-循环,通过对四次运行后的催化剂进行表征研究得到了证实。结果表明,在实验过程中,催化剂的结构、稳定性、形态和去除效率的变化可以忽略不计。VOC 降解机制研究表明,氧化是由于自由基和羟基离子的形成而发生的,因此称之为非均相光芬顿氧化。残留物质分析表明,除了少量的丙酮作为氧化产物外,VOC 已完全矿化。最后,研究了 VOC 去除的动力学。

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