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首页> 外文期刊>Journal of Hazardous Materials >Simultaneous removal of ethyl acetate and toluene in air streams using compost-based biofilters
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Simultaneous removal of ethyl acetate and toluene in air streams using compost-based biofilters

机译:使用基于堆肥的生物滤池同时去除气流中的乙酸乙酯和甲苯

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摘要

Biofitration was successfully applied to treat air streams containing a mixture of ethyl acetate and toluene. The experiment was performed by two identical bench-scale biofilters, which were acclimated by ethyl acetate and toluene, respectively. During a 3 month steady-state performance, the two biofilters showed equivalent elimination capacity (EC) for toluene (50 g/m~3 bed/h of pure toluene). However, the biofilter acclimated with ethyl acetate showed a much higher EC for ethyl acetate (400 g/m~3 bed/h of pure ethyl acetate) than that acclimated with toluene (250 g/m~3 bed/h). The concurrent biofiltration of toluene was inhibited by the presence of ethyl acetate. The results also showed that more nitrogen and phosphorus were consumed in the process of the biofiltration of toluene compared with the treatment of ethyl acetate. After the 3 month experiment, the pH of the media treating ethyl acetate dropped from 6.71 to 5.50, whereas the pH of the media treating toluene increased from 6.71 to 7.08.
机译:生物适配技术已成功应用于处理含有乙酸乙酯和甲苯混合物的气流。该实验是通过两个相同的台式生物滤池进行的,分别用乙酸乙酯和甲苯进行驯化。在3个月的稳态运行期间,两个生物滤池显示出等效的甲苯消除能力(EC)(50 g / m〜3床/小时的纯甲苯)。但是,与乙酸乙酯(250 g / m〜3床/小时)相比,用乙酸乙酯驯化的生物滤池对乙酸乙酯(400 g / m〜3床/小时纯乙酸乙酯)的EC值要高得多。乙酸乙酯的存在抑制了甲苯的同时生物过滤。结果还表明,与乙酸乙酯处理相比,甲苯生物过滤过程中消耗了更多的氮和磷。经过3个月的实验后,处理乙酸乙酯的培养基的pH从6.71降至5.50,而处理甲苯的培养基的pH从6.71升高至7.08。

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