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Hybrid Hollow Fiber Nanofiltration–Calcite Contactor: A Novel Point-of-Entry Treatment for Removal of Dissolved Mn, Fe, NOM and Hardness from Domestic Groundwater Supplies

机译:混合中空纤维纳滤式 - 方解石接触器:用于从国内地下水供应中去除溶解MN,FE,NOM和硬度的新型进入点治疗方法

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摘要

Groundwater (GW) is one of the main potable water sources worldwide. However, the presence of undesirable compounds and particularly manganese (Mn) and iron (Fe) (mainly co-existing in GWs) are considered as objectionable components of potable water for both health and aesthetic issues. As such, individual dwellings supplied by domestic wells are especially threatened by these issues. Current domestic treatment technologies are complicated to operate and even dangerous if improperly maintained (e.g., catalytic filtration) or consume salts and produce spent brine which pollutes the environment (i.e., ion exchange resins). Therefore, it is of prime importance to design a simple and compact, yet robust, system for Mn and Fe control of the domestic GW sources, which can reliably guarantee the desired Mn limit in the finished water ( 20 μ g/L). In the course of this study, we demonstrated, for the first time, that a hybrid hollow fiber nanofiltration (HFNF)−calcite contactor process is a promising alternative for treating domestic GWs with elevated levels of Mn, Fe, natural organic matter (NOM) and hardness. The efficacy of the HFNF membranes in terms of removal of Mn, Fe, NOM and fouling was compared with commercially available NF270 and NF90 membranes. The results revealed that HFNF (100−200 Da) and NF90 maintained considerably high rejection of Mn, Fe and NOM due to their dominant sieving effect. In contrary, the rejections of the above-mentioned components were decreased in the presence of high hardness for the looser HFNF (200−300 Da) and NF270 membranes. No membrane fouling was detected and the permeate flux was stable when the hard GW was filtered with the HFNF membranes, regardless of their molecular weight cut-off and transmembrane pressure, while the permeability of the NF270 and NF90 membranes steadily decline during the filtration. Integrating a calcite contactor, as a post filtration step, to the HFNF process yielded further Mn, Fe and NOM removals from the HFNF permeate and adjustment of its hardness level. The best performance was achieved when a blend of Calcite−CorosexTM ( 90 / 10 wt . % ) was used as a post-treatment to the tight HFNF (100−200 Da).
机译:地下水(GW)是全球主要饮用水源之一。然而,不希望的化合物和特别是锰(Mn)和铁(Fe)(主要存在于GW)的存在被认为是健康和审美问题的饮用水的令人反感的组分。因此,国内井提供的个别住宅尤其受到这些问题的威胁。当前的国内处理技术复杂,操作甚至危险如果不正确地维持(例如,催化过滤)或消耗盐,并产生污染环境的花盐水(即,离子交换树脂)。因此,设计简单且紧凑且稳健的系统,用于国内GW源的简单且紧凑且稳健的系统,可以可靠地保证成品水中所需的MN限制(20μg/ L)。在本研究过程中,我们首次证明了一种杂交中空纤维纳米滤波(HFNF) - 碱接触器方法是治疗含有Mn,Fe,天然有机物(NOM)水平升高的家庭GW的有前途的替代方案和硬度。将HFNF膜在除去Mn,Fe,NOM和污染方面的疗效与市售的NF270和NF90膜进行比较。结果表明,由于其优势筛分效应,HFNF(100-200AD)和NF90保持着高度抑制MN,FE和NOM。相反,在Looser HFNF(200-300Da)和NF270膜的高硬度存在下,降低上述组分的抑制。当用HFNF膜过滤硬GW时,没有检测到膜污染,无论其分子量截止和跨膜压力如何,渗透剂通量稳定,而NF270和NF90膜的渗透率在过滤期间稳定下降。将方解板接触器作为过滤步骤集成到HFNF过程中,从HFNF渗透物​​中得到另外的Mn,Fe和Nom除去并调整其硬度水平。当核内皮 - Corosextm(90/10重量%)的混合物被用作紧密HFNF(100-200AD)的后处理时,实现了最佳性能。

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