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Effective water content reduction in sewage wastewater sludge using magnetic nanoparticles

机译:使用磁性纳米颗粒有效降低污水污泥中的水分含量

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摘要

The present work compares the use of three flocculants for sedimentation of sludge and sludge water content from sewage wastewater i.e. magnetic iron oxide nanoparticles (MION), ferrous sulfate (chemical) and Moringa crude extract (protein). Sludge water content, wet/dry weight, turbidity and color were performed for, time kinetics and large-scale experiment. A 30% reduction of the sludge water content was observed when the wastewater was treated with either protein or chemical coagulant. The separation of sludge from wastewater treated with MION was achieved in less than 5 min using an external magnet, resulted in 95% reduction of sludge water content. Furthermore, MION formed denser flocs and more than 80% reduction of microbial content was observed in large volume experiments. The results revealed that MION is efficient in rapid separation of sludge with very low water content, and thus could be a suitable alternative for sludge sedimentation and dewatering in wastewater treatment processes.
机译:本工作比较了三种絮凝剂用于沉淀废水中污泥和污泥水含量的用途,即磁性氧化铁纳米颗粒(MION),硫酸亚铁(化学)和辣木粗提取物(蛋白质)。进行污泥水含量,干/湿重,浊度和颜色,进行时间动力学和大规模实验。用蛋白或化学混凝剂处理废水时,污泥含水量降低了30%。使用外置磁铁在不到5分钟的时间内即可将污泥与经MION处理的废水分离,从而使污泥含水量降低了95%。此外,MION形成了更致密的絮凝物,在大容量实验中观察到微生物含量降低了80%以上。结果表明,MION可以快速分离含水量极低的污泥,因此可以作为污水处理过程中污泥沉降和脱水的合适替代品。

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