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首页> 外文期刊>Journal of Biotechnology >Removal of surfactant solubilized polycyclic aromatic hydrocarbons by Phanerochaete chrysosporium in a rotating biological contactor reactor
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Removal of surfactant solubilized polycyclic aromatic hydrocarbons by Phanerochaete chrysosporium in a rotating biological contactor reactor

机译:Phanerochaete chrysosporium在旋转生物接触器反应器中去除表面活性剂可溶的多环芳烃

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White rot fungi can oxidize surfactant solubilized polycyclic aromatic hydrocarbons (PAH). The objective of this study was to evaluate the performance of immobilized white rot fungus, Phanerochaete chrysosporium, to remove surfactant Tween 80 solubilized PAH i.e. phenanthrene, pyrene and benzo(alpha)pyrene in a rotating biological contactor (RBC) reactor. Results indicated that the immobilized P. chrysosporium in the RBC reactor system in continuous operation could effectively remove the three tested PAH at specific hydraulic loading rates and concentrations tested for each individual PAH. Batch operation of RBC reactor showed that the immobilized P. chrysosporium was stable and effective for the eight successive batch treatments of PAH in solution medium i.e. PAH removal was greater than 90% after 60 h, although only low levels of ligninolytic enzyme activity were detected. The removal of phenanthrene and pyrene in solution medium has been found to be a first order reaction in batch operation. A mass balance calculation indicated that biological oxidation was the main factor for removal of benzo(a)pyrene i.e. 95.7% in the RBC reactor. However, for phenanthrene and pyrene, both biological oxidation (i.e. 49 and 56%, respectively) and RBC disc foam adsorption (i.e. 44 and 34%, respectively) made a significant contribution to the removal of PAH.
机译:白腐真菌可以氧化表面活性剂溶解的多环芳烃(PAH)。这项研究的目的是评估固定化的白腐真菌Phanerochaete chrysosporium在旋转生物接触器(RBC)反应器中去除表面活性剂Tween 80增溶的PAH,即菲,pyr和苯并α-py的性能。结果表明,在连续运行的RBC反应器系统中固定的金黄色葡萄球菌可以在特定的水力加载速率和每个单独的PAH测试浓度下有效去除三种测试的PAH。 RBC反应器的分批操作表明,固定化的金黄色葡萄球菌对溶液介质中的PAH连续八次分批处理是稳定且有效的,即60h后PAH去除率大于90%,尽管仅检测到低水平的木质素分解酶活性。已发现在溶液介质中去除菲和pyr是间歇操作中的一级反应。质量平衡计算表明,生物氧化是除去苯并(a)re的主要因素,即在RBC反应器中占95.7%。但是,对于菲和pyr,生物氧化(分别为49%和56%)和RBC圆盘泡沫吸附(分别为44%和34%)都对去除PAH做出了重要贡献。

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