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Trace Lead Removal in Drinking Water Using High Capacity Polymeric Supported Hydrated Iron Oxide Nanoparticles

机译:使用高容量聚合物支撑的水合氧化铁纳米粒子痕量铅去除饮用水中

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Ferric oxide nanoparticles are environmentally benign and can be selective toward lead, especially in neutral to mildly alkaline pH of groundwater. However, due to very fine particles and low mechanical strength, it prevents these materials to apply in point of use filter or large scale fixed-bed adsorption. In this study, polymeric gel cation exchanger, Purolite C100, supported ferric oxide nanoparticles, C100-Fe, was synthesized, characterized, and tested with challenging water according to NSF standards 53. From SEM-EDX studies, it can imply that high concentration of iron can be doped and distributed within the gel phase structure of the C100 approximately 22% by mass. The TEM micrographs confirm the size of hydrated ferric oxide fall into the nanometer range about 10-60 mm. The fixed-bed adsorption experiments demonstrated that C100-Fe can remove lead below the stringent standard of 0.05 mg/L up to 15,000 BVs, whereas the GAC, GAC-Fe, and C100 can treat the same test water only 1200, 1700, and 3500 BVs, respectively. The results confirm that C100-Fe can be efficiently substituted to the traditional GAC for lead removal in drinking water.
机译:氧化铁纳米颗粒是环境良性的,可以选择性朝向铅,特别是在中性到地下水的温和碱性pH值。然而,由于非常细的颗粒和低机械强度,它可以防止这些材料在使用的滤光片或大规模的固定床吸附点中涂抹。在这项研究中,聚合物凝胶的阳离子交换剂,漂莱特C100,所支持的氧化铁纳米颗粒,C100-铁,合成,其特征在于,用根据NSF标准53从SEM-EDX研究挑战水进行测试,它可以暗示的高浓度铁可以掺杂并分布在C100约22质量%的凝胶相结构内。 TEM显微照片确认水合氧化铁的尺寸落入约10-60mm的纳米范围内。固定床吸附实验表明,C100-Fe可以除去低于0.05mg / L的严格标准的铅,而GAC,GAC-FE和C100可以处理相同的测试水仅1200,1700和3500 BVS分别。结果证实,C100-Fe可以有效地取代传统GAC以进行饮用水中的铅去除。

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