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影响 2,4-二硝基甲苯在连续填充床反应器中好氧生物降解的因素。

Factors influencing the aerobic biodegradation of 2,4-dinitrotoluene in continuous packed bed reactors.

机构信息

Institute of Chemical Technology, Department of Fermentation Chemistry and Bioengineering, Prague, Czech Republic.

出版信息

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2011;46(12):1328-37. doi: 10.1080/10934529.2011.606422.

Abstract

Factors affecting continuous 2,4-DNT degradation by an immobilized mixed microbial culture were investigated including the cell adaptation to this toxic substrate, 4-NT co-degradation, packing material porosity and substrate mass loading. Experiments were carried out in two packed bed reactors, with poraver (porous glass) and expanded slate as packing materials, using a concurrent water-air flow with ample oxygen. Running the system as a batch reactor with re-circulated medium showed that the immobilized cells adapted to higher 2,4-DNT concentrations yielding higher substrate biodegradation rates. The 2,4-DNT removal rate further increased, up to 180-265 mg L(-1)d(-1), when the immobilized biomass cultivation was switched to a continuous mode. The type of the packing material influenced the 2,4-DNT removal rate, apparently due to the difference in biofilm development. Significant changes in the biofilm composition were observed compared to the original inoculum despite poor biofilm growth.

摘要

研究了固定化混合微生物培养物连续降解 2,4-DNT 的影响因素,包括细胞对这种有毒底物的适应性、4-NT 共降解、包装材料孔隙率和基质质量负荷。实验在两个填充床反应器中进行,以多孔玻璃和膨胀石板作为填充材料,采用含氧充足的水-空气并流。以循环介质作为间歇式反应器运行时,固定化细胞适应了更高浓度的 2,4-DNT,从而产生了更高的底物生物降解速率。当将固定化生物量的培养切换为连续模式时,2,4-DNT 的去除率进一步提高,达到 180-265mg L(-1)d(-1)。包装材料的类型影响 2,4-DNT 的去除率,显然是由于生物膜发育的差异所致。尽管生物膜生长不良,但与原始接种物相比,生物膜组成发生了显著变化。

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