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Surface water treatment for production of potable water by coagulation/filtration/nanofiltration membranes hybrid system

机译:用凝血/过滤/纳滤膜混合系统生产饮用水的地表水处理

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Providing potable water will be a challenge for humanity over the next years. In this research, water samples from the Gamasiab River (Iran) were purified to achieve drinking water by applying coagulation, conventional filtration in combination with the nanofiltration process. By using poly aluminum chloride as a coagulant, the turbidity decreased by 96.4%. The turbidity and COD decreased by 98.82% and 32.7%, respectively, via passing the effluent through the activated carbon. Membranes were made of polyethersulfone (PES). Cesium hydrogen phosphotungstic acid (Cs0.5H2.5PW12O40 as CsPW) nanoparticles were incorporated into the polymer matrix to improve the hydrophilicity. The morphology of membranes was studied using the FE-SEM and AFM. The pure water flux and contact angle for the sulfonated PES with 1.5 wt.% CsPW were 51.9 kg/m(2 )h and 55.49 degrees, respectively. The percentage of the turbidity, conductivity, TDS, and COD removal was found to be 99.9, 89.3, 89.3, and 86.6%, respectively, after the hybrid process. The removal of calcium, magnesium, nitrate, chloride, sodium, sulfate, and bicarbonate ions was 90.5, 83.4, 87.9, 60.7, 49, 86, and 80.5%, respectively. Based on these results, the river water meets the standards for drinking water after being purified by applying the aforementioned coagulation/filtration and nanofiltration processes.Practitioner PointsThe treatment of the Gamasiab River (Iran) was selected for this study to produce potable water.A hybrid systematic coagulation/filtration/nanofiltration (NF) was considered.Water quality parameters were measured and compared with the standard values.The cesium hydrogen phosphotungstic acid was incorporated into the NF to increase the hydrophilicity and water flux.Polyethersulfone was sulfonated to add the sulfonyl group to the polymer.
机译:提供饮用水将在未来几年内为人类挑战。在该研究中,通过施用凝血,常规过滤结合纳滤过程来纯化来自Gamasiab River(伊朗)的水样以实现饮用水以实现饮用水。通过使用聚氯化铝作为凝结剂,浊度降低了96.4%。通过使流出物通过活性炭,浊度和鳕鱼分别降低了98.82%和32.7%。膜由聚醚砜(PES)制成。将苯磷钨酸铯(CS0.5H2.5PW12O40作为CSPW)纳米颗粒掺入聚合物基质中以改善亲水性。使用Fe-SEM和AFM研究膜的形态。磺化PE的纯净水通量和接触角,磺化PE为1.5重量%。%CSPW分别为51.9 kg / m(2)小时和55.49度。在杂交过程之后,发现浊度,电导率,TDS和COD去除的百分比分别为99.9,89.3,89.3和86.6%。除去钙,镁,硝酸盐,氯化钠,硫酸钠和碳酸氢盐离子分别为90.5,83.4,87.9,60.7,49,86和80.5%。基于这些结果,通过施加上述凝血/过滤和纳米过滤方法纯化河水之后河水符合饮用水标准。选择对该研究的植物疾病(伊朗)的治疗方法来生产饮用水。杂种考虑系统凝血/过滤/纳米滤灰(NF)。测量水质质量参数并与标准值进行比较。将磷磷钨酸铯掺入NF中以增加亲水性和水通量。聚四甲砜被磺化加入磺酰基到聚合物。

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