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Enhanced Phosphate Removal by Nanosized Hydrated La(Ⅲ) Oxide Confined in Cross-linked Polystyrene Networks

机译:限制在交联聚苯乙烯网络中的纳米化水合La(Ⅲ)氧化物增强的除磷效果

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摘要

A new nanocomposite adsorbent La-201 of extremely high capacity and specific affinity toward phosphate was fabricated and well characterized, where hydrated La(Ⅲ) oxide (HLO) nanoclusters were immobilized inside the networking pores of the polystyrene anion exchanger D-201. La-201 exhibited enhanced phosphate adsorption in the presence of competing anions (chloride, sulfate, nitrate, bicarbonate, and silicate) at greater levels (up to molar ratio of 20), with working capacity 2-4 times higher than a commercial Fe(Ⅲ) oxide-based nanocomposite HFO-201 in batch runs. Column adsorption runs by using La-201 could effectively treat ~6S00 bed volumes (BV) of a synthetic feeding solution before breakthrough occurred (from 2.5 mg P/L in influent to <0.5 mg P/L in effluent), approximately 11 times higher magnitude than that of HFO-201. The exhausted La-201 could be regenerated with NaOH-NaCl binary solution at 60 ℃ for repeated use without any significant capacity loss. The underlying mechanism for the specific sorption of phosphate by La-201 was revealed with the aid of STEM-EDS, XPS, XRD, and SSNMR analysis, and the formation of LaPO_4·xH_2O is verified to be the dominant pathway for selective phosphate adsorption by the immobilized nano-HLO. The results indicated that La-201 was very promising in highly efficient removal of phosphate from contaminated waters.
机译:制备并很好地表征了一种新型的极高容量和对磷酸盐具有特定亲和力的纳米复合吸附剂La-201,将水合La(Ⅲ)氧化物(HLO)纳米簇固定在聚苯乙烯阴离子交换剂D-201的网孔内。 La-201在竞争性阴离子(氯离子,硫酸根,硝酸根,碳酸氢根和硅酸根)的存在下,以更高的水平(高达20的摩尔比)显示出增强的磷酸盐吸附能力,工作容量是市售Fe的2-4倍Ⅲ)分批运行的氧化物基纳米复合材料HFO-201。使用La-201进行柱吸附可以有效处理合成进料溶液中的〜6S00床体积(BV),而不会发生突破(从进水2.5 mg P / L到出水<0.5 mg P / L),大约高出11倍幅度比HFO-201大。耗尽的La-201可以在60℃下用NaOH-NaCl二元溶液再生,可以重复使用,而不会造成明显的容量损失。借助STEM-EDS,XPS,XRD和SSNMR分析揭示了La-201特异性吸附磷酸盐的潜在机理,并证实LaPO_4·xH_2O的形成是选择性磷酸盐吸附磷的主要途径。固定化的纳米HLO。结果表明,La-201在高效去除污染水中的磷酸盐方面非常有前途。

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  • 来源
    《Environmental Science & Technology》 |2016年第3期|1447-1454|共8页
  • 作者单位

    State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing 210023, China;

    State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing 210023, China;

    State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing 210023, China;

    State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing 210023, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 13:58:41

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