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低温条件下利用木灰对醛混合物进行催化氧化:动力学、机理及臭氧的影响。

Low-temperature catalytic oxidation of aldehyde mixtures using wood fly ash: kinetics, mechanism, and effect of ozone.

机构信息

Biological and Agricultural Engineering, Weaver Labs, North Carolina State University, Raleigh, NC 27695-7625, USA.

出版信息

Chemosphere. 2010 Feb;78(9):1110-5. doi: 10.1016/j.chemosphere.2009.12.033. Epub 2010 Jan 12.

Abstract

Poultry rendering emissions contain volatile organic compounds (VOCs) that are nuisance, odorous, and smog and particulate matter precursors. Present treatment options, such as wet scrubbers, do not eliminate a significant fraction of the VOCs emitted including, 2-methylbutanal (2-MB), 3-methylbutanal, and hexanal. This research investigated the low-temperature (25-160 degrees C) catalytic oxidation of 2-MB and hexanal vapors in a differential, plug flow reactor using wood fly ash (WFA) as a catalyst and oxygen and ozone as oxidants. The oxidation rates of 2-MB and hexanal ranged between 3.0 and 3.5 x 10(-9)mol g(-1)s(-1) at 25 degrees C and the activation energies were 2.2 and 1.9 kcal mol(-1), respectively. The catalytic activity of WFA was comparable to other commercially available metal and metal oxide catalysts. We theorize that WFA catalyzed a free radical reaction in which 2-butanone and CO(2) were formed as end products of 2-MB oxidation, while CO(2), pentanal, and butanal were formed as end products of hexanal oxidation. When tested as a binary mixture at 25 and 160 degrees C, no inhibition was observed. Additionally, when ozone was tested as an oxidant at 160 degrees C, 100% removal was achieved within a 2-s reaction time. These results may be used to design catalytic oxidation processes for VOC removal at poultry rendering facilities and potentially replace energy and water intensive air pollution treatment technologies currently in use.

摘要

家禽炼油排放物含有挥发性有机化合物 (VOCs),这些化合物具有异味、烟雾和颗粒物前体的特点。目前的处理方法,如湿式洗涤器,并不能消除包括 2-甲基丁醛 (2-MB)、3-甲基丁醛和己醛在内的大量 VOCs。本研究在微分、塞流反应器中,以木灰 (WFA) 作为催化剂,以氧气和臭氧作为氧化剂,研究了 2-MB 和己醛蒸气在低温 (25-160 摄氏度) 下的催化氧化。在 25 摄氏度下,2-MB 和己醛的氧化速率分别在 3.0 和 3.5 x 10(-9)mol g(-1)s(-1)之间,活化能分别为 2.2 和 1.9 kcal mol(-1)。WFA 的催化活性可与其他市售的金属和金属氧化物催化剂相媲美。我们推断 WFA 催化了自由基反应,其中 2-丁酮和 CO(2)作为 2-MB 氧化的最终产物形成,而 CO(2)、戊醛和丁醛作为己醛氧化的最终产物形成。当在 25 和 160 摄氏度下作为二元混合物进行测试时,没有观察到抑制作用。此外,当臭氧在 160 摄氏度下作为氧化剂进行测试时,在 2 秒的反应时间内可实现 100%去除。这些结果可用于设计家禽炼油厂 VOC 去除的催化氧化工艺,并可能取代目前使用的能源和水密集型空气污染处理技术。

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