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碳水化合物基材料负载水合氧化锆纳米粒子去除氟化物。

Removal of fluoride by carbohydrate-based material embedded with hydrous zirconium oxide nanoparticles.

机构信息

Shandong Key Laboratory of Water Pollution Control and Resource Reuse, School of Environmental Science and Engineering, Shandong University, Jinan, 250100, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2018 Oct;25(28):27982-27991. doi: 10.1007/s11356-018-2851-z. Epub 2018 Jul 31.

Abstract

Herein, we fabricated a novel carbohydrate-based adsorbent by using the pomelo peel (PP) as the biocarrier. The virgin PP was embedded with hydrous zirconium oxide (HZO) nanoparticle, forming the HZO-PP composites for highly efficient fluoride adsorption. Characteristics of HZO-PP were determined by TEM, SEM, XPS, XRD, BET surface area, and FTIR. The result showed that HZO nanoparticles have been successfully anchored onto the inner pore of PPs, which play a significant role in defluorination. It is favorable for fluoride uptake with more acidic solution, which greatly enhanced the interfacial reaction between the fluoride ions and protonated HZO through electrostatic interaction or electro-dipole interaction. No significant Zr leaching and organic dissolution were observed within pH 3.0-11.0; this indicated the strong interfacial reaction between the biocarrier and HZO, which illustrated the high stability of the HZO-PP for use. Competing tests indicated that fluoride uptake by HZO-PP still retained about 76-88% as the concentrations of coexisting NO or SO was 25 times higher than that of F. The HZO-PP in column after six adsorption-regeneration cycles still retained 94% of adsorption capacity (15.4 mg/g). All these results implied that biomaterials anchored with multivalent metal oxides represented the potential nanocomposites for fluoride removal.

摘要

在此,我们使用柚子皮 (PP) 作为生物载体,制造了一种新型的基于碳水化合物的吸附剂。原始的 PP 嵌入了水合氧化锆 (HZO) 纳米颗粒,形成了 HZO-PP 复合材料,用于高效除氟。通过 TEM、SEM、XPS、XRD、BET 表面积和 FTIR 确定了 HZO-PP 的特性。结果表明,HZO 纳米颗粒已成功锚定在 PPs 的内孔中,这对脱氟起着重要作用。它有利于在更酸性的溶液中吸收氟,这通过静电相互作用或电偶极相互作用极大地增强了氟离子与质子化 HZO 之间的界面反应。在 pH 3.0-11.0 范围内没有观察到明显的 Zr 浸出和有机溶解,这表明生物载体和 HZO 之间存在强烈的界面反应,说明 HZO-PP 具有很高的稳定性。竞争试验表明,当共存的 NO 或 SO 的浓度是 F 的 25 倍时,HZO-PP 对氟的去除仍保留约 76-88%的去除率。在六个吸附-再生循环后,HZO-PP 在柱中的吸附容量仍保留 94%(15.4mg/g)。所有这些结果表明,多价金属氧化物锚定的生物材料代表了用于去除氟的潜在纳米复合材料。

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