Fabrication of a Biomass-Based Hydrous Zirconium Oxide Nanocomposite for Preferable Phosphate Removal and Recovery

磷酸盐 吸附 材料科学 纳米复合材料 傅里叶变换红外光谱 离子交换 核化学 化学工程 无机化学 磷酸锆 氧化物 离子 化学 有机化学 纳米技术 冶金 工程类
作者
Hui Qiu,Liang Chen,Xiaolin Zhang,Mindong Chen,Yunxia Zhao,Tao Tao,Zhaoyi Xu,Gang Liu
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:7 (37): 20835-20844 被引量:125
标识
DOI:10.1021/acsami.5b06098
摘要

Advanced removal of phosphate by low-cost adsorbents from municipal wastewater or industrial effluents is an effective and economic way to prevent the occurrence of eutrophication. Here, we proposed a novel method to immobilize hydrous zirconium oxide nanoparticle within quaternary-aminated wheat straw, and obtained an inexpensive, eco-friendly nanocomposite Ws-N-Zr. The biomass-based Ws-N-Zr exhibited higher preference toward phosphate than commercial anion exchanger IRA-900 when competing sulfate ions coexisted at relatively high levels. Such excellent performance of Ws-N-Zr resulted from its specific hybrid structure, the quaternary ammonium groups bonded on the host favor the preconcentration of phosphate ions inside the wheat straw based on Donnan effect, and the encapsulated HZO nanoparticle exhibits preferable sequestration of phosphate ions through specific interaction, as further demonstrated by FTIR and X-ray photoelectron spectroscopy. Cycle adsorption and regeneration experiments demonstrated that Ws-N-Zr could be employed for repeated use without significant capacity loss, when the binary NaOH-NaCl solution was employed as the regenerant. The influence of solution pH and contact time was also examined. The results suggested that Ws-N-Zr has a great potential in efficient removal of phosphate in contaminated waters.
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