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Effect of hydraulic retention time on the biodegradation of complex phenolic mixture from simulated coal wastewater in hybrid UASB reactors

机译:水力停留时间对UASB混合反应器模拟煤废水中复杂酚类混合物生物降解的影响

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摘要

This study describes the feasibility of anaerobic treatment of complex phenolics mixture from a simulated synthetic coal wastewater using four identical 13.5 L (effective volume) bench scale hybrid up-flow anaerobic sludge blanket (HUASB) (combining UASB + anaerobic filter) reactors at four different hydraulic retention times (HRT) under mesophilic (27 ± 5 ℃) conditions. Synthetic coal wastewater with an average chemical oxygen demand (COD) of 2240 mg/L and phenolics concentration of 752 mg/L was used as substrate. The phenolics contained phenol (490 mg/L); m-, o-, p-cresols (123.0, 58.6,42 mg/L); 2,4-, 2,5-, 3,4- and 3,5-dimethyl phenols (6.3,6.3,4.4 and 21.3 mg/L) as major phenolic compounds. The study demonstrated that at optimum HRT, 24 h, and phenolic loading rate of 0.75 g COD/(m~3-d), the phenolics and COD removal efficiency of the reactors were 96% and 86%, respectively. Bio-kinetic models were applied to data obtained from experimental studies in hybrid UASB reactor. Grau second-order multi-component substrate removal model was best fitted to the hybrid UASB reactor. The second-order substrate removal rate constant (k_2(s)) was found as 1.72 h~(-1) for the hybrid reactor treating complex phenolic mixture. Morphological examination of the sludge revealed rod-type Methanoathrix-like, cells to be dominant on the surface.
机译:这项研究描述了在四个不同的地方使用四个相同的13.5 L(有效体积)台式规模混合上流厌氧污泥毯(HUASB)(结合UASB +厌氧滤池)反应器对模拟合成煤废水进行复杂酚类混合物进行厌氧处理的可行性在中温(27±5℃)条件下的水力停留时间(HRT)。合成煤废水的平均化学需氧量(COD)为2240 mg / L,酚类浓度为752 mg / L。酚类化合物含有苯酚(490 mg / L);间,对,对甲酚(123.0,58.6,42 mg / L);作为主要酚类化合物的2,4-,2,5-,3,4-和3,5-二甲基苯酚(6.3、6.3、4.4和21.3 mg / L)。研究表明,在最佳HRT,24 h和0.75 g COD /(m〜3-d)的酚类负载速率下,反应器中的酚类和COD去除效率分别为96%和86%。将生物动力学模型应用于从混合UASB反应器中的实验研究获得的数据。 Grau二阶多组分底物去除模型最适合混合UASB反应器。发现混合反应器处理复杂酚类混合物的二阶底物去除速率常数(k_2(s))为1.72 h〜(-1)。污泥的形态学检查显示杆状甲烷菌丝状细胞在表面占优势。

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