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A holistic treatment system for palm oil mill effluent by incorporating the anaerobic-aerobic-wetland sequential system and a convective sludge dryer

机译:一种整体处理系统,通过掺入厌氧 - 有氧湿地序列系统和对流污泥干燥器来源

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An integrated treatment system which incorporated an anaerobic-aerobic-wetland sequential system (AAWSS) and a convective sludge dryer (CSD) was established to treat highly polluting palm oil mill effluent (POME) in a shorter retention period and with a smaller area requirement. Before actual treatment, a start-up operation was performed to achieve optimal degradation performance. The strategy involved a stepwise feeding from 0.2 to 1 m(3) d(-1) at three day intervals for 15 days. During the operation, the lowest hydraulic retention time of 21 days was achieved and the biogas production was gradually increased from 1442 to 11,028 kg d(-)(1)with the increase of organic loads from 0.46 to 2.2 kg m(-3) d(-1). COD, VSS and VFA were almost completely (99%) removed, whereas the average percentage removals of SS and TN were 96% and 72%, respectively. To demonstrate the plant's robustness in treating POME, the AAWSS was proceeded with a 360 days operation. A slight deterioration in COD and SS removals were observed from day 225 to day 265 due to an organic shock load. One unanticipated finding was that the AAWSS regained its stability shortly thereafter thus ensuring consistency of the treatment performance for long-term use. Further treatment with CSD was designed to produce a clear effluent that surpassed the industrial effluent discharge limits at low-cost. By referring to mass balance, the production efficiency achieved 95% condensate yield, leaving 7% concentrate and 2% dewatered solids as byproducts.
机译:建立了一种掺入厌氧 - 有氧湿地顺序系统(AAWS)和对流污泥干燥器(CSD)的综合治疗系统,以在较短的保留期内处理高度污染的棕榈油磨流出物(PAME),并且面积要求较小。在实际处理之前,执行启动操作以实现最佳的降解性能。该策略在三天间隔下逐步喂养0.2至1M(3)D(-1)15天。在操作期间,实现了21天的最低液压保留时间,并从1442〜11,028kg d( - )(1)逐渐增加了沼气产量,随着0.46至2.2 kg m(-3)d的有机载荷增加(-1)。鳕鱼,VSS和VFA几乎完全(99%)移除,而SS和TN的平均百分比分别为96%和72%。为了展示植物在治疗Pome方面的稳健性,AAWS进行了360天运营。由于有机冲击载荷,从第225天到第265天观察到COD和SS去除的轻微劣化。一个意想不到的发现是,此后,AAWSS很快就恢复了其稳定性,因此确保了治疗性能的一致性,以便使用长期使用。使用CSD进一步处理旨在产生清澈的污水,以低成本超过工业流出物放电限值。通过参考质量平衡,生产效率实现了95%的冷凝水产率,留下7%的浓缩物和2%脱水固体作为副产物。

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