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The removal of high concentrations of phenol from saline wastewater using aerobic granular SBR

机译:需氧颗粒SBR去除含盐废水中的高浓度苯酚

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The treatment of saline wastewater containing phenol is a challenge faced in the application of biological pollution control technologies. Phenol-laden saline wastewater is generated from various industrial and manufacturing activities. The aerobic granular sequencing batch reactor (GSBR) was investigated in this work in order to assess its performance for the degradation and chemical oxygen demand (COD) removal of phenol as the sole substrate from saline wastewater. The effect of inlet concentration (100-2000 mg phenol/L), cycle time (14-24 h), filling cycle time (1-4 h), shock loading, and total dissolved solids (TDS) concentration (3-8%) were evaluated on the performance of a bench scale GSBR seeded with granules containing mixed phenol-degrading consortia acclimatized to salt. The results showed that the investigated reactor could remove more than 99% of phenol from the feed saline wastewater at inlet phenol concentrations of up to 1000 mg/L, total cycle time of 17h(15.5h aerating, 1 h filling, and 30 min settling, decanting and idle) and TDS concentrations up to 8%. A high percent of COD removal and phenol mineralization obtained at these operational conditions. The GSBR could also withstand and absorb the strong phenol shock. Furthermore, the granular biomass in the GSBR indicated high quality in terms of sludge settleability. Overall, the results of this work revealed that establishing a granular biomass containing high concentration of active mixed microbial populations in the GSBR system can achieve complete degradation of high concentrations of phenol in saline wastewater. This makes it a very efficient and flexible technology for treating such waste streams in full-scale applications.
机译:含酚的含盐废水的处理是生物污染控制技术应用中面临的挑战。富含苯酚的盐水废水来自各种工业和制造活动。为了评估其在降解含盐废水中作为唯一底物的苯酚的降解和化学需氧量(COD)的性能,对有氧颗粒测序间歇反应器(GSBR)进行了研究。入口浓度(100-2000 mg苯酚/ L),循环时间(14-24 h),填充循环时间(1-4 h),冲击负荷和总溶解固体(TDS)浓度(3-8%)的影响)在台式规模GSBR的性能上进行了评估,该GSBR接种了含有适应了盐的苯酚降解联合体的颗粒。结果表明,所研究的反应器在进口苯酚浓度高达1000 mg / L,总循环时间为17h(充气15.5h,充填1h和沉降30分钟)时,可以从进料盐水废水中去除99%以上的苯酚。 ,倾析和闲置)和TDS浓度高达8%。在这些操作条件下获得了很高的COD去除率和苯酚矿化率。 GSBR还可以承受和吸收强烈的苯酚冲击。此外,就污泥沉降性而言,GSBR中的颗粒状生物质显示出高品质。总体而言,这项工作的结果表明,在GSBR系统中建立包含高浓度的活性混合微生物种群的颗粒状生物质,可以实现盐水废水中高浓度苯酚的完全降解。这使其成为在大规模应用中处理此类废物流的非常有效且灵活的技术。

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