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Simultaneous removal of ammonia and phosphate using green synthesized iron oxide nanoparticles dispersed onto zeolite

机译:使用绿色合成的氧化铁纳米粒子分散在沸石上的绿色合成氧化铁纳米粒子同时除去氨和磷酸盐

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摘要

Since elevated levels of common nutrients, such as ammonia and phosphate, in natural water bodies (lakes and rivers) can lead to significant deterioration of pristine water ecosystems due to eutrophication, new and cost-effectiveness remediation strategies are urgently required. This work investigated the feasibility of using green synthesized iron oxide nanoparticles dispersed onto zeolite by eucalyptus leaf extracts (EL-MNP@zeolite), to simultaneously remove ammonia and phosphate from aqueous solutions. SEM and XRD both showed that EL-MNP@zeolite had better stability and dispersity than unsupported zeolite. At an initial concentration of 10 mg L~(-1) each for the two co-existing ions the synthesized material removed 43.3% of NH_4~+ and 99.8% of PO_4~(3-). Removal of co-existing NH_4~+-PO_4~(3-) was impacted by the ratio of zeolite to EL-MNP, temperature, initial ion concentration and solution pH. Under optimium conditions the maximum adsorption capacity of EL-MNP@zeolite for NH_4~+ and PO_4~(3-) was 3.47 and 38.91 mgg~(-1), respectively. For both ions' adsorption followed a pseudo-second-order kinetic reaction, confirming that the removal of ammonia and phosphate by EL-MNP@zeolite was via chemisorptions, where interaction between NH_4~+-PO_4~(3-) and EL-MNP@zeolite may be through either electrostatic adsorption or ligand exchange. Overall these results indicated that EL-MNP@zeolite had significant potential as a nano-remediation strategy to simultaneously remove cationic ammonium and anionic phosphate from wastewaters.
机译:由于在天然水体(湖泊和河流)中常见的常用营养素(例如氨和磷酸盐)的升高,因此由于富营养化,迫切需要新的和成本效益的修复策略,原始水生态系统的显着恶化。该工作研究了使用桉树叶提取物(EL-MNP @沸石)分散在沸石上的绿色合成氧化铁纳米粒子的可行性,以同时除去水溶液中的氨和磷酸盐。 SEM和XRD均显示EL-MNP @沸石具有比不支持的沸石更好的稳定性和分散性。在10mg L〜(-1)的初始浓度下,每个用于两个共存离子的合成材料除去43.3%的NH_4〜+和99.8%的PO_4〜(3-)。除去共存的NH_4〜+ -PO_4〜(3-)受沸石与EL-MNP,温度,初始离子浓度和溶液pH的比率影响。在Permicium条件下,NH_4〜+和PO_4〜(3-)的EL-MNP @沸石的最大吸附容量分别为3.47和38.91mg〜(-1)。对于两个离子的吸附术后伪二阶动力学反应,证实通过化学血散去除氨和磷酸盐,通过化学样品,其中NH_4〜+ -PO_4〜(3-)和EL-MNP之间的相互作用@Ezeolite可以通过静电吸附或配体交换。总体而言,这些结果表明EL-MNP @沸石作为纳米修复策略具有显着的潜力,以同时除去废水中的阳离子铵和阴离子磷酸盐。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第1期|135002.1-135002.8|共8页
  • 作者单位

    School of Environmental Science and Engineering Fujian Normal University Fuzhou 350007 Fujian Province China;

    School of Environmental Science and Engineering Fujian Normal University Fuzhou 350007 Fujian Province China;

    School of Environmental Science and Engineering Fujian Normal University Fuzhou 350007 Fujian Province China;

    School of Environmental Science and Engineering Fujian Normal University Fuzhou 350007 Fujian Province China;

    Environmental Contaminants Group Future Industries Institute University of South Australian Mawson Lakes SA 5095 Australia;

    School of Environmental Science and Engineering Fujian Normal University Fuzhou 350007 Fujian Province China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ammonium; Iron oxide nanoparticles; Phosphate; Zeolite;

    机译:铵;氧化铁纳米粒子;磷酸盐;沸石;

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