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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >The effect of permeate recirculation on the depuration of pretreated olive mill wastewater through reverse osmosis membranes
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The effect of permeate recirculation on the depuration of pretreated olive mill wastewater through reverse osmosis membranes

机译:渗透物再循环对反渗透膜预处理橄榄厂废水净化的影响

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摘要

Still scarce are the studies addressing the depuration of olive mill wastewater (OMW) by means of membrane technology, encountering severe fouling problems related to ineffective pretreatments. In addition, they focus only on meeting irrigation standards. The target of this investigation was to experimentally evaluate the improvement driven by recirculating a fraction of the permeate stream in the performance of a thin-film composite reverse osmosis membrane (polyamide/polysulfone) for purification of OMW previously pretreated by means of chemical oxidation based on Fenton's reagent, coagulation-flocculation and filtration through olive stones. For this purpose, permeate flux and rejection of pollutants under increasing permeate recirculation fraction, additionally to fouling on membrane surface, were examined and found to be improved. Similarly, influence of operating temperature was as well investigated. Operating in a diafiltration mode, instead of the batchwise common to most OMW depuration processes, attempted semicontinuous production and lower rate of increase of pollutants concentration. Upon recirculation of a fraction of the permeate stream above 10%, high and stable permeate flux was provided ensuring no significant steady-state flux decline. Under these conditions, 100% suspended solids, phenols and iron removal was achieved, in addition to around 99.4% and 98.2% overall COD and conductivity rejection efficiencies respertively.
机译:通过膜技术解决橄榄厂废水(OMW)净化问题的研究仍然很少,但遇到了与无效预处理相关的严重结垢问题。此外,他们只关注满足灌溉标准。这项研究的目的是通过实验评估通过再循环一部分渗透液而对薄膜复合反渗透膜(聚酰胺/聚砜)的性能进行改进所产生的效果,该膜用于纯化事先通过化学氧化预处理的OMW Fenton的试剂,通过橄榄石进行凝结-絮凝和过滤。为此,除了增加膜表面的结垢外,还检查了渗透通量和在增加的渗透再循环分数下的污染物排阻,并发现它们得到了改善。同样,还研究了工作温度的影响。以渗滤模式进行操作,而不是大多数OMW净化过程中常见的分批操作,而是尝试半连续生产并降低污染物浓度的增加速率。当一部分渗透物流超过10%进行再循环时,可提供高而稳定的渗透通量,从而确保不会出现明显的稳态通量下降。在这些条件下,除总的COD和电导率去除效率分别达到99.4%和98.2%之外,还实现了100%的悬浮固体,酚和铁去除。

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