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首页> 外文期刊>Environmental Technology >Fate of nonylphenol ethoxylate (NPEO) and its inhibitory impact on the biodegradation of acetate under aerobic conditions
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Fate of nonylphenol ethoxylate (NPEO) and its inhibitory impact on the biodegradation of acetate under aerobic conditions

机译:壬基酚乙氧基化物(NPEO)的去向及其对好氧条件下乙酸生物降解的抑制作用

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This study evaluated the kinetics of nonylphenol ethoxylate (NPEO) and acetate biodegradation at a moderate sludge age by acclimated culture under aerobic conditions. A laboratory-scale sequencing batch reactor was set and fed only with acetate mixture. The system was operated at steady state with a sludge age of 8 days. Following this stage, a mixture of NPEO and acetate was fed to the mixed culture in order to assess the biodegradation kinetics of NPEO and its impact on acetate utilization. A mechanistic model was developed involving model components and kinetic parameters for both substrates. The model was calibrated with parameters such as oxygen uptake rate and polyhydroxyalkanoates. Biodegradation characteristics and kinetics of acetate and NPEO were estimated by using the model results. Evaluation of calibrated model indicated that exposure of NPEO to non-acclimated sludge caused significant inhibitory impact on the utilization and storage of acetate. However, acclimation of biomass greatly suppressed inhibitory effects of NPEO on growth process involved in the degradation of acetate.
机译:这项研究通过在有氧条件下进行适应性培养,评估了适度污泥年龄下壬基酚乙氧基化物(NPEO)和乙酸酯生物降解的动力学。设置实验室规模的测序间歇反应器,仅加入乙酸盐混合物。该系统在稳定状态下运行,污泥龄为8天。在该阶段之后,将NPEO和乙酸盐的混合物加入到混合培养物中,以评估NPEO的生物降解动力学及其对乙酸盐利用的影响。建立了涉及两种基材的模型成分和动力学参数的机械模型。使用诸如氧气吸收率和聚羟基链烷酸酯等参数对模型进行校准。利用模型结果估算了乙酸盐和NPEO的生物降解特性和动力学。校准模型的评估表明,NPEO暴露于未驯化的污泥会对乙酸盐的利用和储存产生明显的抑制作用。然而,生物量的驯化极大地抑制了NPEO对涉及乙酸盐降解的生长过程的抑制作用。

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