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基于真菌作用的生物滤池。

Biofilters based on the action of fungi.

作者信息

van Groenestijn J W, van Heininge W N, Kraakm N J

机构信息

TNO Environment, Energy and Process Innovation, PO Box 342, 7300 AH Apeldoorn, The Netherlands.

出版信息

Water Sci Technol. 2001;44(9):227-32.

Abstract

Traditional biofilters for waste gas treatment are mainly based on the degradation activity of bacteria. The application of fungi in biofilters has several advantages: fungi are more resistant to acidification and drying out, and the aerial mycelia of fungi form a larger surface area in the gas phase than bacterial biofilms, which may facilitate the uptake of hydrophobic volatile compounds. The research described here identifies important conditions for the operation of fungal-based biofilters. Biofilters with perlite packing were operated at different pHs and relative inlet gas humidities. Toluene was used as a model pollutant. It was shown that a low pH is a prerequisite for fungal growth in biofilters. Also, the fungal biofilters were more resistant to drying out and more active than the bacterial biofilters. Fungal biofilters eliminated 80-125 g toluene/m3 filterbed/h. Several measures that could limit the clogging of fungal biofilters with fungal biomass were investigated. The introduction of mites helped to control excessive fungal growth and pressure drop. The pressure drop of a perlite/fungi/mites filter of 1 m height, loaded with 200 m3 gas/m3 filter/h stabilised around 130 Pa. Biofilters based on the action of fungi are cost-effective for the treatment of waste gases containing aromatic compounds, alkenes and other hydrophobic compounds.

摘要

用于废气处理的传统生物滤池主要基于细菌的降解活性。真菌在生物滤池中的应用具有几个优点:真菌对酸化和干燥更具耐受性,并且真菌的气生菌丝体在气相中形成的表面积比细菌生物膜更大,这可能有助于疏水性挥发性化合物的吸收。此处描述的研究确定了基于真菌的生物滤池运行的重要条件。装有珍珠岩填料的生物滤池在不同的pH值和相对进气湿度下运行。甲苯用作模型污染物。结果表明,低pH值是生物滤池中真菌生长的先决条件。此外,真菌生物滤池比细菌生物滤池更耐干燥且活性更高。真菌生物滤池每立方米滤床每小时可去除80 - 125克甲苯。研究了几种可以限制真菌生物量堵塞真菌生物滤池的措施。引入螨虫有助于控制真菌过度生长和压降。高度为1米、每立方米滤床每小时处理200立方米气体的珍珠岩/真菌/螨虫滤池的压降稳定在130帕左右。基于真菌作用的生物滤池对于处理含有芳香族化合物、烯烃和其他疏水性化合物的废气具有成本效益。

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