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Development and utilization of aerobic granules for the palm oil mill (POM) wastewater treatment

机译:棕榈油厂废水处理中好氧颗粒的开发与利用

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The high COD and turbidity level of palm oil mill (POM) wastewater has been the driving force to find an efficient treatment system. In this work, biological and adsorption methods are integrated and used to treat the POM wastewater. In biological treatment, aerobic granules are developed and used in the sequencing batch reactor (SBR), whereas in adsorption treatment, the waste aerobic granules (WAG) are utilized as adsorbent. Response Surface Methodology (RSM) has been used to model and optimize the adsorption of biologically treated POM wastewater. Aerobic granules took 110 days to appear and the average diameter was 0.9 mm (with a maximum value of 3.1 mm). The aerobic granules are able to remove 88% of the influent COD at organic loading rate (OLR) of 3.0 kg COD/m~3 day. The increase of OLR to 6.0 kg COD/m~3 day did not affect the COD removal efficiency and the aerobic granules immediately responded to the OLR increase. The adsorption system revealed that the 21% of the remaining COD (of the biologically treated POM wastewater) and almost 99% of the turbidity were removed. At optimum point (3.28 cm of bed height and 2.13 ml/min flow rate), the amount of COD and turbidity removed are 21% and 96%, respectively.
机译:棕榈油厂(POM)废水的高COD和浊度一直是寻找有效处理系统的动力。在这项工作中,生物和吸附方法被整合并用于处理POM废水。在生物处理中,需氧颗粒被开发出来并用于顺序批处理反应器(SBR)中,而在吸附处理中,废需氧颗粒(WAG)被用作吸附剂。响应面方法学(RSM)已用于对经过生物处理的POM废水进行建模和优化吸附。好氧颗粒需要110天才能出现,平均直径为0.9毫米(最大值为3.1毫米)。好氧颗粒能够以3.0 kg COD / m〜3天的有机负荷率(OLR)去除88%的进水COD。 OLR增加到6.0 kg COD / m〜3天不影响COD去除效率,好氧颗粒立即对OLR的增加做出反应。吸附系统表明,除去了21%的剩余COD(经过生物处理的POM废水)和几乎99%的浊度。在最佳点(床高3.28厘米,流速为2.13毫升/分钟),去除的COD和浊度分别为21%和96%。

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