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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Application of electrodialysis pretreatment to enhance boron removal and reduce fouling during desalination by nanofiltration/reverse osmosis
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Application of electrodialysis pretreatment to enhance boron removal and reduce fouling during desalination by nanofiltration/reverse osmosis

机译:电渗析预处理在纳米过滤/反渗透期间加强硼去除和减少果泥的应用

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Membranes have emerged as promising technologies for treatment of non-traditional waters, but fouling and poor rejection of small, neutral solutes (e.g., boric acid) impede their further implementation for water purification. Boron rejection is increased by raising the pH to convert boric acid to borate ion, but this change often leads to calcite supersaturation. This study investigated the use of a hybrid electrodialysis-nanofiltration/reverse osmosis (ED-NF/RO) system to reduce fouling from calcite precipitation and calcium-polysaccharide sorption to NF/RO membranes. Also, the study examined the potential of the hybrid process to increase permeate flux and boron rejection during NF/RO of synthetic saline water. ED pretreatment reduced calcite oversaturation and reduced flux decline during NF/RO. Low alginate concentrations (25 mg/L) limited NF/RO fouling, but high concentrations (100 mg/L) appeared to promote calcite scaling. ED pretreatment reduced the osmotic pressure of the NF/RO feed water, enabling lower operating pressures or greater permeate water fluxes. Boron rejection during NF/RO increased with ED pretreatment, probably due to stronger electrostatic repulsion and an increase in the fraction of total boron present as B(OH)(4)- following ED. This hybrid ED-NF/RO system shows promise as a novel approach to enhancing the performance of current membrane systems for treating complex feed waters.
机译:膜已经出现为治疗非传统水域的有前途的技术,但污垢和抑制少,中性溶质(例如,硼酸)抵抗其进一步实施水净化。通过升高pH以将硼酸转化为硼酸根离子来增加硼排斥,但这种变化通常导致方解石过饱和。本研究研究了杂交电渗析 - 纳米过滤/反渗透(ED-NF / RO)系统的使用,以减少从方解石沉淀和钙多糖吸附到NF / RO膜的污垢。此外,该研究检测了杂化过程的潜力,以增加合成盐水NF / RO期间的渗透物助焊剂和硼排斥。 ED预处理降低了方解石过饱和度,并且在NF / RO期间减少了助焊剂。低海藻酸盐浓度(25mg / L)有限的NF / RO污垢,但高浓度(100mg / L)似乎促进方解石缩放。 ED预处理降低了NF / RO进料水的渗透压,使得能够降低操作压力或更高的渗透水通量。 NF / RO期间的硼排斥反应随着ED预处理而增加,可能是由于静电排斥力较强,并且作为B(OH)(4)的总硼的分数增加 - 之后 - ed。该杂交ED-NF / RO系统显示了承诺作为提高当前膜系统治疗复杂饲料水域性能的新方法。

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