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Treatment of Toluene-Contaminated Air using a Rotary-Type Biofilter and Highly Porous Packing Material

机译:使用旋转型生物膜和高孔填料材料处理甲苯污染空气

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Volatile organic compounds (VOCs) are potentially malodorous, toxic and carcinogenic. Toluene is an important VOC used in diverse industries. This study was conducted to examine the operating parameters of a newly developed rotary-type biofilter having polyvinyl formal (pvf) as the packing material. Air contaminated with toluene was fed into the biofilter in an up-flow mode. Air samples obtained were analyzed with a gas chromatograph (GC) equipped with a flame ionization detector (FID). Nutrient solution was supplied daily to the filter bed to provide nitrogen. Nutrient samples were analyzed using indophenol blue method. Pressure drop, room temperature, and CO{sub}2 concentrations were monitored daily. The results obtained showed that the biofilter was very efficient in treating the toluene-contaminated air. As the inlet load increased, elimination capacity increased while removal efficiency decreased. The maximum inlet load, elimination capacity, and removal efficiency obtained were 1623gm{sup}(-3)h{sup}(-1), 120.7gm{sup}(-3)h{sup}(-1) and 99.98%, respectively. Concentration of ammonium nitrogen in the nutrient solution decreased over time because microorganisms utilized the nitrogen for metabolic processes.
机译:挥发性有机化合物(VOC)是可能的恶臭,有毒和致癌性。甲苯是各种行业中使用的重要VOC。进行该研究以检查新开发的旋转型生物膜的操作参数,其具有聚乙烯族(PVF)作为包装材料。用甲苯污染的空气以上流模式送入生物过滤器。用配备有火焰电离检测器(FID)的气相色谱仪(GC)分析所得空气样品。营养溶液每天供应到过滤床中以提供氮气。使用靛酚蓝方法分析营养样品。每天监测压降,室温和CO {亚} 2浓度。得到的结果表明,生物过滤器在治疗甲苯污染的空气中非常有效。随着入口载荷的增加,消除容量随着除去效率而增加的。获得的最大入口载荷,消除容量和去除效率为1623gm {sup}( - 3)h {sup}( - 1),120.7gm {sup}( - 3)h {sup}( - 1)和99.98% , 分别。营养液中氮氮的浓度随着时间的推移而降低,因为微生物利用氮来代谢过程。

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