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A focus on pressure-driven membrane technology in olive mill wastewater reclamation: state of the art

机译:专注于橄榄磨厂废水回收中的压力驱动膜技术:最新技术

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Direct disposal of the heavily polluted effluent from olive oil industry (olive mill wastewater, OMW) to the environment or to domestic wastewater treatment plants is actually prohibited in most countries, and conventional treatments are ineffective. Membranes are currently one of the most versatile technologies for environmental quality control. Notwithstanding, studies on OMW reclamation by membranes are still scarce, and fouling inhibition and prediction to improve large-scale membrane performance still remain unresolved. Consequently, adequately targeted pretreatment for the specific binomium membrane-feed, as well as optimized operating conditions for the proper membranes, is today's challenge to ensure threshold flux values. Several membrane materials, configurations and pore sizes have been elucidated, and also different pretreatments including sedimentation, centrifugation, biosorption, sieving, filtration and microfiltration, various types of flocculation as well as advance oxidation processes have been applied so far. Recovery of potential-value compounds, such as a variety of polyphenols highlighting oleuropein and hydroxytyrosol, has been attempted too. All this research should constitute the starting point to proceed with OMW purification beyond recycling for irrigation or depuration for sewer discharge, with the aim of complying with standards to reuse the effluent in the olive oil. production process, together with cost-effective recovery of added-value compounds.
机译:在大多数国家,实际上禁止将来自橄榄油行业的重度污染废水(橄榄油厂废水,OMW)直接排放到环境或生活污水处理厂中,并且常规处理是无效的。膜是目前用于环境质量控制的最通用的技术之一。尽管如此,关于通过膜回收OMW的研究仍然很少,并且结垢抑制和改善大规模膜性能的预测仍未解决。因此,确保特定的通量膜阈值是当今挑战,对特定的二铵膜进料进行充分有针对性的预处理,以及对合适的膜进行优化的操作条件。目前已经阐明了几种膜的材料,构造和孔径,还采用了各种不同的预处理方法,包括沉淀,离心,生物吸附,筛分,过滤和微滤,各种絮凝以及先进的氧化工艺。还尝试了回收具有潜在价值的化合物,例如各种突出了橄榄苦苷和羟基酪醇的多酚。所有这些研究都应成为进行OMW纯化的起点,而不是为了灌溉而进行再循环或为了下水道排放而进行净化,以符合重新使用橄榄油中废水的标准。生产过程,以及具有成本效益的附加值化合物的回收。

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