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首页> 外文期刊>Journal of the air & waste management association >Biofiltration Kinetics of a Gaseous Aldehyde Mixture Using a Synthetic Matrix
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Biofiltration Kinetics of a Gaseous Aldehyde Mixture Using a Synthetic Matrix

机译:使用合成基质的气态醛混合物的生物过滤动力学

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Although aldehydes contribute to ozone and particulate matter formation, there has been little research on the biofiltration of these volatile organic compounds (VOCs), especially as mixtures. Biofiltration degradation kinetics of an aldehyde mixture containing hexanal, 2-methylbutanal (2-MB), and 3-methylbutanal (3-MB) was investigated using a bench-scale, synthetic, media-based biofilter. The adsorption capacity of the synthetic media for a model VOC, 3-methylbutanal, was 10 times that of compost. Periodic residence time distribution analysis (over the course of 1 yr) via a tracer study (84-99% recovery), indicated plug flow without channeling in the synthetic media and lack of compaction in the reactor. Simple first-order and zero-order kinetic models both equally fit the experimental data, yet analysis of the measured rate constants versus fractional conversion suggested an overall first-order model was more appropriate. Kinetic analysis indicated that hexanal had a significantly higher reaction rate (k = 0.09 ± 0.005 1/sec; 23 ± 1.3 ppmv) compared with the branched aldehydes (k = 0.04 ± 0.0036 1/sec; 31 ± 1.6 ppmv for 2-MB and 0.03 ± 0.0051 1/sec; 22 ± 1.3 ppmv for 3-MB). After 3 months of operation, all three compounds reached 100% removal (50 sec residence time, 18-46 ppmv inlet). Media samples withdrawn from the biofilter and observed under scanning electron microscopy analysis indicated microbial growth,rnsuggesting removal of the aldehydes could be attributed to biodegradation.
机译:尽管醛有助于臭氧和颗粒物的形成,但对这些挥发性有机化合物(VOC),尤其是混合物的生物过滤的研究很少。使用试验台规模的,合成的,基于介质的生物滤池,研究了含有己醛,2-甲基丁醛(2-MB)和3-甲基丁醛(3-MB)的醛混合物的生物过滤降解动力学。对于VOC模型3-甲基丁醛,合成介质的吸附能力是堆肥的10倍。通过示踪研究(84-99%的回收率)进行的定期停留时间分布分析(历时1年)表明,塞流没有在合成介质中通道化,并且在反应器中没有压实。简单的一阶和零阶动力学模型都同样适合实验数据,但是对测得的速率常数与分数转化率的分析表明,整体一阶模型更为合适。动力学分析表明,与支链醛相比,己醛的反应速率(k = 0.09±0.005 1 / sec; 23±1.3 ppmv)明显更高(k = 0.04±0.0036 1 / sec; 2-MB和31±1.6 ppmv)。 0.03±0.0051 1 / sec;对于3 MB,22±1.3 ppmv)。运行3个月后,所有三种化合物的去除率均达到100%(停留时间为50秒,进样口18-46 ppmv)。从生物滤池中取出的培养基样品在扫描电子显微镜分析下观察到,表明微生物的生长,这表明醛的去除可能是由于生物降解引起的。

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