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Removal of inhibitory phenolic compounds by biological activated carbon coupled membrane bioreactor

机译:生物活性炭偶联膜生物反应器去除抑制性酚类化合物

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摘要

Phenolic compounds cause problems for conventional treatments due to their toxic and inhibitory properties. This work investigated the treatability of phenolic compounds by using two membrane-bioreactor systems, namely: activated sludge coupled with MBR (AS-MBR) and biological granular activated carbon coupled with MBR (BAC-MBR). Initially, the system was fed with phenol (500 mg/L followed by adding 2,4-dichlorophenol (2,4-DCP). Phenol, 2,4-DCP, TOC and COD removal were higher than 98.99% when the organic load ranged between 1.80 and 5.76 kg/m(3).d COD. In addition to MBR system development, removal mechanisms were also investigated. Relatively low values of phenol adsorption of GAC and biomass, and high maximum substrate removal rates obtained from a biokinetic experiment, proved that the removals were mainly due to biodegradation. Analysis of sludge indicated a significant difference in the sludge characteristics of the two reactors. The high EPS content in BAC-MBR led to higher viscosity and poor sludge settling properties. The relationship between sludge properties and EPS components revealed that settleability had no direct correlation with EPS, though it was better correlated to protein/carbohydrate ratios.
机译:酚类化合物由于其毒性和抑制性而导致常规治疗的问题。这项工作通过使用两种膜生物反应器系统研究了酚类化合物的可处理性,即:与MBR偶联的活性污泥(AS-MBR)和与MBR偶联的生物颗粒活性炭(BAC-MBR)。最初,向系统中加入苯酚(500 mg / L),然后添加2,4-二氯苯酚(2,4-DCP),有机负荷时苯酚,2,4-DCP,TOC和COD的去除率均高于98.99%。 (3).d COD范围为1.80至5.76 kg / m 3(d)除MBR系统开发外,还研究了去除机理,通过生物动力学实验获得的相对较低的GAC和生物质的苯酚吸附值和最高的最大去除率污泥的分析表明,两个反应器的污泥特性存在显着差异; BAC-MBR中较高的EPS含量导致较高的粘度和较差的污泥沉降性能;污泥性能之间的关系和EPS成分表明沉降性与EPS没有直接关系,尽管它与蛋白质/碳水化合物比更好。

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