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Effects of phenol on physicochemical properties and treatment performances of partial nitrifying granules in sequencing batch reactors

机译:顺序分批反应器中苯酚对部分硝化颗粒理化性质及处理性能的影响

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摘要

This study attempts to investigate the effect of phenol on physicochemical properties and treatment performances of partial nitrifying granules (PNGs). Two sequencing batch reactors (SBRs) fed with synthetic ammonium wastewaters were operated in absence (R1) or presence (R2) of phenol. The PNGs in R1 maintained excellent partial nitrification performance and relatively stable physicochemical properties, and exhibited compact and regular shaped structure with a cocci-dominant surface. However, as phenol concentration was stepwise increased from 0 to 300 mg/L in R2, filamentous bacteria appeared and gradually dominated within granules, which in turn resulted in settleability deterioration. Most notably, granules in R2 got easier to agglomerate in the reactor walls and then been washed out with effluent, leading to significant biomass loss, frequent outflow pipe blockage, and eventual system failure. The extracellular polymeric substances (EPS) contents including proteins and polysaccharides in R2 reached 1.8 and 1.7 times of that in R1, respectively, indicating that the presence of phenol played an important role on EPS production. Removal efficiency of ammonium and phenol remained high, but dropped sharply when phenol concentration reached 300 mg/L. Moreover, the failed maintenance of partial nitrification was observed due to the revival of nitrite oxidizing bacteria (NOB) within granules after phenol exposure, which was confirmed by quantitative fluorescence in situ hybridization (FISH) analysis. Overall this study demonstrates that phenol had negative effects on PNGs, and pretreatment to eliminate phenolic substances is recommended when using PNGs for wastewater treatment.
机译:本研究试图探讨苯酚对部分硝化颗粒(PNG)的理化性质和处理性能的影响。在不存在苯酚(R1)或存在苯酚(R2)的情况下,操作了两个装有合成铵废水的顺序分批反应器(SBR)。 R1中的PNG保持出色的部分硝化性能和相对稳定的理化性质,并表现出紧凑且规则的形状结构,表面呈球状。但是,随着R2中苯酚的浓度从0逐步增加到300 mg / L,丝状细菌出现并逐渐在颗粒中占主导地位,进而导致沉降性下降。最值得注意的是,R2中的颗粒更容易在反应器壁上附聚,然后用流出液冲洗掉,从而导致大量生物质流失,频繁的流出管堵塞和最终系统故障。 R2中包括蛋白质和多糖在内的细胞外聚合物(EPS)含量分别达到R1的1.8倍和1.7倍,表明苯酚的存在对EPS的产生起着重要作用。氨和苯酚的去除效率仍然很高,但是当苯酚浓度达到300 mg / L时,去除率急剧下降。此外,由于暴露于苯酚后颗粒内亚硝酸盐氧化细菌(NOB)的恢复,观察到部分硝化的维持失败,这通过定量荧光原位杂交(FISH)分析得以证实。总体而言,这项研究表明苯酚对PNG具有负面影响,建议在将PNG用于废水处理时进行预处理以消除酚类物质。

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