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Novel micro/ultraanocentrifugation membrane process assessment for revalorization and reclamation of agricultural wastewater

机译:新型微/超/纳米离心膜工艺评估,用于农业废水的再生和再生

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摘要

The concentration and recovery of the high-added value phenolic fraction from two-phase olive mill wastewater and the simultaneous effluent treatment by a novel micro/ultraanocentrifugation membrane process assessment is addressed, permitting to gather information for a correct and effective screening procedure for the adequate membrane election (MF-UF-loose NF) for the target. Phenolic compounds are the major factor of phytotoxicity of these effluents, but on the other hand they present high antioxidant properties that makes them very relevant for food, cosmetic, pharmaceutical and biotechnological industries. The selection of a membrane MWCO between 100 kDa and 0.45 mu m permitted the complete transfer of the phenolic fraction to the permeate, whereas below 3 kDa they would be transferred to the concentrate stream instead, with similar to 60% COD reduction and EC lowered to 551-662 mu S cm(-1) in the final treated stream ensured, sensibly improving the effluent quality. This would provide a purified effluent with good salinity standards according to the indications given by the FAO for irrigation reuse. This procedure could be quick and reliable for the assessment of the adequate membrane needed for a particular purification process, in contrast with long-term, time consuming common bench-scale procedures.
机译:解决了两相橄榄磨坊废水中高附加值酚类馏分的浓缩和回收以及通过新型微/超/纳米离心膜工艺评估同时处理废水的问题,从而可以收集信息,以进行正确有效的筛选程序足够的膜选择(MF-UF-松散NF)的目标。酚类化合物是这些废水产生植物毒性的主要因素,但另一方面,它们具有很高的抗氧化性能,使其与食品,化妆品,制药和生物技术行业非常相关。在100 kDa和0.45μm之间选择膜MWCO可以将酚类馏分完全转移到渗透液中,而在3 kDa以下,它们将转移到浓缩液中,COD降低约60%,EC降低到最终处理后的水流确保551-662μS cm(-1),可显着提高废水质量。根据粮农组织给出的灌溉再利用指示,这将提供具有良好盐度标准的纯化废水。与长期,费时的常规台式规模过程相比,该过程对于评估特定纯化过程所需的适当膜可能是快速而可靠的。

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