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首页> 外文期刊>Reactive & Functional Polymers >Polymeric anion exchanger supported hydrated Zr(IV) oxide nanoparticles: A reusable hybrid sorbent for selective trace arsenic removal
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Polymeric anion exchanger supported hydrated Zr(IV) oxide nanoparticles: A reusable hybrid sorbent for selective trace arsenic removal

机译:聚合阴离子交换剂负载的水合Zr(IV)氧化物纳米粒子:一种用于选择性去除痕量砷的可重复使用的混合吸附剂

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Natural groundwater contamination by arsenic puts over 100 million people at-risk throughout the world. If arsenic is the primary concem, the most ideal treatment solution would be a regenerable fixed-bed adsorbent: minimal energy requirement, simple operation and low cost. Such an adsorbent should have high arsenic capacity, high physical/chemical durability and high regenerability for several cycles of reuse. Hybrid anion exchange resins impregnated with hydrous zirconium oxide nanoparticles (HAIX-Zr) combine the physical durability and high anion diffusivity of anion exchanger resins with the high arsenic capacity and high chemical durability of zirconium oxides. HAIX-Zr was synthesized using non-hazardous and easy-to-transport pre-calcined zirconium oxide and was tested to be an effective As(V) and As(III) adsorbent over several cycles of exhaustion-regeneration in the presence of high concentrations of competing anions; at high concentrations, phosphate and silica show competition with arsenic. The high regenerability of HAIX-Zr (>90%) makes it more sustainable to regenerate and reuse the HAIX-Zr for numerous cycles to reduce the volume of arsenic-laden waste. Unlike other iron- or aluminum-based adsorbents, HAIX-Zr is chemically stable at landfill conditions where it could be safely disposed without leaching arsenic. (C) 2015 Elsevier B.V. All rights reserved.
机译:砷对天然地下水的污染使全世界超过1亿人处于危险之中。如果以砷为主要概念,则最理想的处理解决方案将是可再生的固定床吸附剂:能耗最低,操作简单且成本低廉。对于多次重复使用,这种吸附剂应具有高砷容量,高物理/化学耐久性和高可再生性。含水氧化锆纳米粒子(HAIX-Zr)浸渍的混合阴离子交换树脂将阴离子交换树脂的物理耐久性和高阴离子扩散性与氧化锆的高砷容量和高化学耐久性相结合。 HAIX-Zr是使用无害且易于运输的预煅烧氧化锆合成的,并且在高浓度存在下经过数次耗尽-再生循环后,被测试为有效的As(V)和As(III)吸附剂竞争阴离子在高浓度下,磷酸盐和二氧化硅显示出与砷的竞争。 HAIX-Zr的高可再生性(> 90%)使HAIX-Zr再生和再利用多次循环更具可持续性,从而减少了含砷废物的数量。与其他铁或铝基吸附剂不同,HAIX-Zr在垃圾填埋场的化学稳定性很强,可以安全地处置它而不会浸出砷。 (C)2015 Elsevier B.V.保留所有权利。

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