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Evaluation of mud filtrate clarification to improve factory performance

机译:评估泥浆澄清度以提高工厂绩效

摘要

Clarification performance and flocculant dosage isudstrongly linked to the mud solids loading in the feed entering the clarifier. The recycle of filtrate can represent an extra ~10-15% mud solids loading on the clarifier, thereby reducing its effective capacity. Filtrate recycling may cause significant increase in turbidity, complexed calcium ion formation, phosphate, proteins and polysaccharides in mixed juice that impact on evaporatorudscale formation and molasses exhaustion. The paper details the results obtained from laboratory, pilot scale and factory trials of filtrate clarification using both sedimentation and flotation methods. Clarified filtrate could be produced of similar quality to ESJ. Filtrate clarification was able to significantly remove insoluble solids, turbidity, phosphate, and polysaccharides contentudwith slight reductions in minerals content of the filtrate. On the basis of improved filtrate quality, the clarified filtrate could be directed to ESJ, instead of the normal practice of directing the mud filtrate to mixed juice. The potential impacts of implementing filtrate clarification are discussed in respect to improved performance and throughput of the clarification station.
机译:澄清性能和絮凝剂用量与进入澄清池的进料中的泥浆固体含量密切相关。滤液的再循环可能会增加澄清池中约10-15%的泥浆固体含量,从而降低其有效容量。滤液的回收利用可能会导致混浊中混浊,钙离子形成的复杂性,磷酸盐,蛋白质和多糖的显着增加,从而影响蒸发器乌垢的形成和糖蜜的消耗。本文详细介绍了使用沉淀法和浮选法从实验室,中试规模和滤液澄清实验中获得的结果。可以产生与ESJ相似质量的澄清滤液。滤液的澄清能够显着除去不溶性固体,浊度,磷酸盐和多糖的含量,同时滤液中矿物质的含量略有降低。在提高滤液质量的基础上,可以将澄清的滤液直接送至ESJ,而不是将泥浆滤液直接引入混合果汁的常规做法。讨论了进行滤液澄清的潜在影响,以提高澄清站的性能和产量。

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