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Investigating the performance of inverse fluidized bed biofilm reactor for phenol biodegradation using Pseudomonas fluorescence

机译:使用假单胞菌荧光研究逆流化床生物膜反应器对苯酚生物降解的性能

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摘要

The feasibility of a three phase inverse fluidized bed biofilm reactor with low density support particles (812 kg/m3) was investigated for the degradation of synthetic phenolic effluent (600 mg/l at 30°C) using indigenous pure culture of Pseudomonas fluorescence. The maximum COD removal of 97.9% occurred with complete degradation of phenol in 110 hours of operation and the biofilm and biomass characteristics of Pseudomonas fluorescence with respect to its suspended and attached biomass concentration, biofilm thickness and bioparticle density were also studied. The culture followed substrate inhibition kinetics. Biodegradation data was correlated with kinetic models including Monod, Yano& Koga, Teissier, Aiba et al, Webb and Haldane model. Experimentally obtained data best fitted with the Haldane model and the kinetic parameters were derived by non linear regression with a correlation factor (R2) of 0.9938. The values of Haldane constants rsmax, Ks and Ki were 0.541 h-1, 0.9211 mg/l and 3.57 mg/l respectively. The bio-kinetic constants estimated using these models showed good potential of using Pseudomonas fluorescence culture in phenol degradation in inverse fluidized bed biofilm reactor.
机译:使用本地纯净的假单胞菌荧光培养物,研究了具有低密度支撑颗粒(812 kg / m3)的三相逆流化床生物膜反应器对合成酚类废水(600 mg / l在30°C)的降解的可行性。在操作110小时后,苯酚完全降解,最大COD去除率为97.9%,并且还研究了假单胞菌荧光有关其悬浮和附着的生物量浓度,生物膜厚度和生物颗粒密度的生物膜和生物量特征。培养遵循底物抑制动力学。生物降解数据与动力学模型相关,包括Monod,Yano&Koga,Teissier,Aiba等人,Webb和Haldane模型。实验获得的数据最适合Haldane模型,动力学参数通过非线性回归得出,相关系数(R2)为0.9938。 Haldane常数rsmax,Ks和Ki的值分别为0.541 h-1、0.9211 mg / l和3.57 mg / l。使用这些模型估算的生物动力学常数显示出在逆流化床生物膜反应器中使用假单胞菌荧光培养物进行苯酚降解的良好潜力。

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