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Pilot scale nanofiltration treatment of olive mill wastewater: a technical and economical evaluation

机译:橄榄轧机废水的试验规模纳滤处理:技术与经济评价

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摘要

The treatment of large volumes of olive mill wastewater is presently a challenge. This study reports the technical and economical feasibility of a sequential treatment of olive mill wastewater comprising a dissolved air flotation pretreatment and nanofiltration. Different pilot nanofiltration assays were conducted in a concentration mode up to different volume reduction factors (29, 45, 58, and 81). Data attained demonstrated that nanofiltration can be operated at considerably high volume reduction factors and still be effective towards the removal of several components. A flux decline of approximately 50% was observed at the highest volume reduction factor, mainly due to increase of the osmotic pressure. Considerably high rejections were obtained across all experiments for total suspended solids (83 to > 99%), total organic carbon (64 to 99%), chemical oxygen demand (53 to 77%), and oil and grease (67 to > 82%). Treated water was in compliance with European legal limits for discharge regarding total suspended solids and oil and grease. The potential recovery of phenolic compounds was evaluated and found not relevant. It was demonstrated that nanofiltration is economically feasible, involving operation costs of approximately 2.56-3.08 is an element of/m(3), depending on the working plan schedule and volume reduction factor, and requiring a footprint of approximately 52 m(2) to treat 1000 m(3) of olive mill wastewater.
机译:大量橄榄磨废水的处理目前是一个挑战。本研究报告了包含溶解的空气浮选预处理和纳米过滤的橄榄磨废水的顺序处理的技术和经济可行性。在浓度模式下以不同的体积降低因子(29,45,58和81)进行不同的先导纳滤液测定。获得的数据证明,纳米过滤可以在大容量降低因子中以相当大的污垢操作,并且仍然有效地去除几个组分。在最高体积减少因子下观察到约50%的通量下降,主要是由于渗透压的增加。在所有实验中获得总悬浮固体(83至> 99%),总有机碳(64至99%),化学需氧量(53至77%),油和油脂(67至> 82%) )。处理过的水符合欧洲的法律限制,用于排出总悬浮固体和油脂和油脂。评估酚类化合物的潜在回收并发现不相关。据证明纳米过滤是经济上可行的,涉及约2.56-3.08的运营成本是/ m(3)的元素,具体取决于工作计划时间表和减少因素,并需要约52米(2)的占地面积。治疗1000米(3)米橄榄磨废水。

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