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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Using integrated electrodialysis and RO hybrid system to remediate and reclaim perchlorate-contaminated groundwater
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Using integrated electrodialysis and RO hybrid system to remediate and reclaim perchlorate-contaminated groundwater

机译:使用集成电渗析和RO杂种系统来修复和回收高氯酸盐污染的地下水

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Perchlorate (ClO4-) is a highly oxidizing and water soluble chemical. In this study, a hybrid electrodialysis reversal and reverse osmosis process (EDR + RO) was designed to remediate and reclaim perchlorate-contaminated groundwater. The EDR tests were conducted using a laboratory-scale equipment with seven pairs of ion-selective membranes and a total membrane area of 352 cm(2). Up to 95% of perchlorate could be removed in 2.5 h of operation with a voltage of 40 V. The effluent perchlorate concentration dropped to below 0.02 mg/L after the two-stage treatment (EDR followed by RO). Bimetallic nanoparticles Fe-0/Al-0 (nZVI-coated nZV aluminum) were applied to reduce perchlorate via chemical reduction. Approximately 30.8% of perchlorate could be removed by Fe-0/Al-0 reduction. Strong acidic functional group (SO3H) on the EDR cation exchange membrane was electrolyzed, which resulted in the accumulation of sulfur content on the ion-exchange membrane. Results from the 3-D excitation-emission fluorescence matrix (EEFM) analyses show that the most proportion of organic matters in groundwater were type H and type IV that are aromatic protein (AP) and soluble microbial byproduct-like (SMP) chemicals. The system could electrolyze perchlorate and generate hydrochloric acid (MCI), which could inhibit the hydroxide production and minimize the fouling on the RO membrane.
机译:高氯酸(ClO4-)是高度氧化和水溶性化学品。在这项研究中,混合动力反向电渗析和反渗透过程(EDR + RO)被设计用于修复和回收高氯酸盐污染的地下水。在EDR测试使用实验室规模的设备具有7双离子选择性膜和352厘米(2)总的膜面积进行。 (EDR接着RO)高氯酸盐高达95%的可在操作的2.5小时与40 V的流出物浓度高氯酸下降到低于0.02毫克/升的两阶段处理后的电压被去除。双金属纳米粒子的Fe-0 /的Al-0(的nZVI涂覆NZV铝)施加通过化学还原,以减少高氯酸盐。约高氯酸盐的30.8%可以用Fe-0 /的Al-0还原除去。在EDR阳离子交换膜的强酸性官能团(SO3H)进行电解,这导致的硫含量对离子交换膜的积累。从3-d激发 - 发射矩阵荧光结果(EEFM)的分析表明,在地下水有机物的最比例分别为H型和IV型是芳族蛋白(AP)和可溶性微生物副产物样(SMP)的化学品。该系统可以电解高氯酸盐和产生盐酸(MCI),这可能会抑制氢的生产和减少对RO膜结垢。

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