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Biodegradation of 2-fluorobenzoate and dichloromethane under simultaneous and sequential alternating pollutant feeding

机译:同时和顺序交替添加污染物对2-氟苯甲酸酯和二氯甲烷的生物降解

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摘要

Two up-flow fixed-bed reactors (UFBRs), inoculated with activated sludge and operated for 162 days, were fed 1 mmol L~(-1) d~(-1) with two model halogenated compounds, 2-fluorobenzoate (2-FB) and dichloromethane (DCM). Expanded clay (EC) and granular activated carbon (GAC) were used as biofilm carrier. EC did not have any adsorption capacity for both model compounds tested, whereas GAC could adsorb 1.3 mmol g~(-1) GAC for 2-FB and 4.5 mmol g~(-1) GAC for DCM. Both pollutants were degraded in both reactors under simultaneous feeding. However, biodegradation in the EC reactor was more pronounced, and re-inoculation of the GAC reactor was required to initiate 2-FB degradation. Imposing sequential alternating pollutant (SAP) feeding caused starvation periods in the EC reactor, requiring time-consuming recovery of 2-FB biodegradation after resuming its feeding, whereas DCM degradation recovered significantly faster. The SAP feeding did not affect performance in the GAC reactor as biodegradation of both pollutants was continuously observed during SAP feeding, indicat-. ing the absence of true starvation.
机译:向两个上流式固定床反应器(UFBRs)接种活性污泥并运行162天,向其中加入两种典型的卤代化合物2-氟苯甲酸酯(2-氟苯甲酸酯(2- FB)和二氯甲烷(DCM)。膨胀粘土(EC)和颗粒状活性炭(GAC)被用作生物膜载体。 EC对两种测试化合物均没有吸附能力,而GAC对2-FB的吸附能力为1.3 mmol g〜(-1)GAC,对于DCM的吸附能力为4.5 mmol g〜(-1)GAC。在同时进料的情况下,两种反应器中的两种污染物均被降解。但是,EC反应器中的生物降解更为明显,需要重新接种GAC反应器以引发2-FB降解。强制采用顺序交替污染物(SAP)进料导致EC反应器出现饥饿期,恢复进料后需要耗时的2-FB生物降解恢复,而DCM降解的恢复速度更快。 SAP进料不会影响GAC反应器的性能,因为在SAP进料期间会持续观察到两种污染物的生物降解。缺乏真正的饥饿。

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