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Removal of toluene in a fungal vapor-phase bioreactor

机译:真菌气相生物反应器中甲苯的去除

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Toluene is a volatile organic compound (VOC) that is listed as a hazardous air pollutant (HAP). As stricter regulations on VOCs and HAPs have been promulgated, the demand for more cost effective and efficient abatement-technologies has increased. One promising new technology for removing VOCs from polluted gas streams is biofiltration, a process in which contaminated air is passed through a biologically active bed. Although bioreactors that contain bacteria have been successfully employed to treat VOCs in waste gas streams, bacterial systems are generally most applicable for removing low concentrations of VOCs. In this study, a fungal vapor-phase bioreactor, operated under aerobic conditions and a 39-second residence time, was used to treat a gas stream contaminated with varying concentrations of toluene. The fungal bioreactor achieved a maximum toluene elimination capacity of 285 g/m~3-hr, which is three to seven times greater than toluene elimination capacities typically reported for bacterial systems. In addition, harsh operating conditions such as low moisture content and low pH did not adversely affect the performance of the fungal bioreactor. These results indicate that fungal bioreactors may be an effective alternative to traditional abatement technologies for treating high concentrations of VOCs in waste gas streams.
机译:甲苯是一种挥发性有机化合物(VOC),被列为有害空气污染物(HAP)。随着有关VOC和HAP的更严格法规的颁布,对更具成本效益和效率的减排技术的需求不断增长。从污染物流中去除VOC的一​​项很有前途的新技术是生物过滤,该过程是将受污染的空气通过生物活性床。尽管包含细菌的生物反应器已成功地用于处理废气流中的VOC,但细菌系统通常最适用于去除低浓度的VOC。在这项研究中,在有氧条件下和39秒的停留时间下运行的真菌气相生物反应器用于处理被不同浓度的甲苯污染的气流。真菌生物反应器的最大甲苯清除能力为285 g / m〜3小时,是细菌系统通常报告的甲苯清除能力的三至七倍。此外,苛刻的操作条件,例如低水分含量和低pH值,不会对真菌生物反应器的性能产生不利影响。这些结果表明,真菌生物反应器可能是传统减排技术的有效替代品,用于处理废气流中的高浓度VOC。

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