Evides Water Company, PO Box 4472, 3006 AL, Rotterdam, the Netherlands; Department of Environmental Technology, Wageningen University, Bornse Weilanden 9, 6708 WG, Wageningen, the Netherlands; IHE Delft Institute for Water Education, Environmental Engineering and Water Technology Department, Westvest 7, 2611 AX, Delft, the Netherlands.
Evides Water Company, PO Box 4472, 3006 AL, Rotterdam, the Netherlands.
Chemosphere. 2023 Apr;321:138049. doi: 10.1016/j.chemosphere.2023.138049. Epub 2023 Feb 4.
This study comprehensively investigates the quality of drinking water produced by novel advanced treatment encompassing 1 kDa hollow fiber nanofiltration (HFNF) - Biological Activated Carbon Filtration (BACF) from (reservoir) surface water, and compares this with drinking water after conventional 'CSF' pretreatment (coagulation - flocculation - sedimentation - media filtration - UV-disinfection) - BACF. The objective of HFNF - BACF treatment is to enhance the drinking water's quality in increased biological stability, reduced concentrations of organic micropollutants (OMP), and improvement in other chemical-physical parameters, whilst maintaining sufficient hardness to avoid subsequent remineralization. For this study a large suite of quality parameters was extensively monitored in pilot plants during nearly two years, enabling the incorporation of seasonal effects. HFNF - BACF treatment accomplished a similarly high level of biological stability as regrowth-free drinking waters (total organic carbon (DOC) 0.6 mg/L, assimilable organic carbon (AOC) 4 μg/L Ac-C and <1 μg/L biopolymer-C, total microbial growth potential (MGP) as BPC 50 ng d/L and as BGP 170 × 10 cells/mL), unlike the conventional treatment (1.9 mg/L, 10 μg/L, 9 μg/L, 130 ng d/L and 170 × 10 cells/mL, respectively) where regrowth occurred in its distribution network. Average OMP removal, including perfluoro-alkyl substances (PFAS), by HFNF - BACF (54%) was higher than conventional treatment (37%). This improvement was mainly attributable to rejection in the HFNF membrane step, indicating that the DOC concentration after HFNF pretreatment was not yet sufficiently low to eliminate competitive adsorption and/or preloading in the BACF (confirmed by laboratory experiments). The advanced treatment also performed better in turbidity, particulates and most trace metals. Importantly, hardness retention by HFNF was only moderate, rendering remineralization unnecessary. Overall, this study demonstrates the superior performance in water quality of advanced HFNF - BACF treatment compared to conventional treatment.
本研究全面考察了新型高级处理工艺生产的饮用水质量,该工艺包括 1kDa 中空纤维纳滤(HFNF)-生物活性炭过滤(BACF),处理地表水,并将其与经过传统“CSF”预处理(混凝-絮凝-沉淀-介质过滤-UV 消毒)-BACF 的饮用水进行比较。HFNF-BACF 处理的目的是提高饮用水的生物稳定性,降低有机微量污染物(OMP)浓度,并改善其他化学物理参数,同时保持足够的硬度以避免后续再矿化。为此,本研究在近两年的中试工厂中广泛监测了大量质量参数,纳入了季节性影响。HFNF-BACF 处理实现了与无再生长自由饮用水相同的高生物稳定性水平(总有机碳(DOC)0.6mg/L,可同化有机碳(AOC)4μg/L Ac-C 和 <1μg/L 生物聚合物-C,总微生物生长潜力(MGP)为 BPC 50ng/d/L 和 BGP 170×10 细胞/mL),与传统处理(1.9mg/L、10μg/L、9μg/L、130ng/d/L 和 170×10 细胞/mL)形成对比,传统处理在其分配网络中发生了再生长。HFNF-BACF 对 OMP 的平均去除率(包括全氟烷基物质(PFAS))为 54%,高于传统处理(37%)。这种改进主要归因于 HFNF 膜步骤的排斥作用,表明 HFNF 预处理后的 DOC 浓度还不够低,无法消除 BACF 中的竞争吸附和/或预加载(通过实验室实验证实)。该高级处理工艺在浊度、颗粒物和大多数痕量金属方面也表现出色。重要的是,HFNF 的硬度保留只是中等水平,无需再矿化。总体而言,本研究表明,与传统处理相比,先进的 HFNF-BACF 处理在水质方面具有卓越的性能。