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首页> 外文期刊>Journal of Cleaner Production >Diatomite enhanced dynamic membrane technology for simultaneous backwash sludge pre-dewatering and backwash wastewater recycling
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Diatomite enhanced dynamic membrane technology for simultaneous backwash sludge pre-dewatering and backwash wastewater recycling

机译:硅藻土增强动态膜技术,可同时进行反冲洗污泥预脱水和反冲洗废水回收

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A novel diatomite-enhanced dynamic membrane (DM) technology was investigated for simultaneous backwash sludge pre-dewatering and backwash wastewater recycling from the backwashing process of a biological aerated filter (BAF), which was much cleaner and more sustainable than coagulation or centrifugation process. In this study, the backwash wastewater was mixed with diatomite to enhance the formation of the DM layer, which played a key role in backwash wastewater filtration and sludge predewatering. The entire DM filtration process was operated under gravity-driven mode (200 mm water head). The effluent turbidity was reduced to less than 6 NTU at a diatomite addition concentration of 0.6 g/L and was acceptable for reuse in the backwashing process. The backwash sludge was retained on the DM and pre-dewatered to a water content of 87% with 0.6 g/L diatomite addition; this greatly reduced the sludge volume, saving energy and chemicals in subsequent sludge disposal processes. The sludge water content in sedimentation with PACl/PAM was only reduced to 99.5% and the further centrifugation could achieve sludge water content of 97%. In summary, DM technology shows great potential for backwash sludge pre-dewatering and backwash wastewater reuse, simplifying the sludge dewatering process in BAFs. (C) 2018 Published by Elsevier Ltd.
机译:研究了一种新型的硅藻土增强动态膜(DM)技术,该技术可同时进行生物曝气滤池(BAF)的反冲洗过程中的反冲洗污泥预脱水和反冲洗废水的循环利用,该工艺比凝结或离心分离过程更清洁,更可持续。在这项研究中,将回洗废水与硅藻土混合以增强DM层的形成,这在回洗废水过滤和污泥预脱水中起着关键作用。整个DM过滤过程均在重力驱动模式(200毫米水头)下运行。在硅藻土添加浓度为0.6 g / L的情况下,废水的浊度降低至小于6 NTU,可以在回洗过程中重复使用。将反洗污泥保留在DM上,并添加0.6 g / L硅藻土将其预脱水至含水量为87%。这大大减少了污泥量,在后续的污泥处置过程中节省了能源和化学物质。用PACl / PAM沉淀的污泥水含量仅降低到99.5%,进一步离心可达到97%。总之,DM技术在反冲洗污泥的预脱水和反冲洗废水的再利用方面显示出巨大的潜力,从而简化了BAF中污泥的脱水过程。 (C)2018由Elsevier Ltd.发布

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