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Osmosis process for leachate treatment in industrial platform: Economic and performances evaluations to zero liquid discharge

机译:工业平台渗滤液处理的渗透过程:零液体排放的经济和性能评估

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The industrial processes require large quantities of water. The presence of discharges results not only in significant environmental impact but implies wastage of water resources. This problem could be solved treating and reusing the produced wastewaters and applying the new zero liquid discharge approach. This paper discusses the design and the performances of reverse osmosis membranes for the upgrading of full scale platform for industrial liquid wastes. The final effluent from the ultrafiltration unit of the full scale plant was monitored to design the reverse osmosis unit Previous modelling phase was used to evaluate the specific ordinary and maintenance costs and the final effluent quality (2.7 €/m~3). The system was designed in triple stages at different operative pressures. The economic feasibility and the payback period of the technology at different percentages of produced permeate were determined. The recovery of 90% was identified as profitable for the reverse osmosis application. One experimental pilot plant applying the reverse osmosis was used to test the final effluent Moreover, the same flow was treated with second pilot system based on the forward osmosis process. The final efficiencies were compared. Removals higher than 95% using the reverse system were obtained for the main macro-pollutants and ions. No sustainable applicability of the forward osmosis was determined.
机译:工业过程需要大量的水。排放物的存在不仅会严重影响环境,而且还会浪费水资源。该问题可以通过处理和再利用产生的废水并采用新的零液体排放方法来解决。本文讨论了反渗透膜的设计及其在工业液体废物全规模平台升级中的性能。监测全规模工厂超滤单元的最终流出物,以设计反渗透单元。先前的建模阶段用于评估特定的常规和维护成本以及最终流出物的质量(2.7€/ m〜3)。该系统在不同的操作压力下分三阶段设计。确定了在不同渗透液百分比下该技术的经济可行性和投资回收期。 90%的回收率被认为对反渗透应用是有利的。一个采用反渗透的试验性中试工厂用于测试最终废水。此外,基于正向渗透过程的第二个中试系统处理了相同的流量。比较了最终效率。对于主要的大型污染物和离子,使用反向系统的去除率高于95%。没有确定正渗透的可持续适用性。

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