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首页> 外文期刊>RSC Advances >Characterization of nZVI nanoparticles functionalized by EDTA and dipicolinic acid: a comparative study of metal ion removal from aqueous solutions
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Characterization of nZVI nanoparticles functionalized by EDTA and dipicolinic acid: a comparative study of metal ion removal from aqueous solutions

机译:EDTA和二聚溶胶官能化NZVI纳米粒子的表征:水溶液中金属离子去除的比较研究

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The simultaneous adsorption of metal ions on bare and functionalized zero-valent iron nanoparticles (nZVI) from aqueous solution was tested using inductively coupled plasma optical emission spectrometry (ICP-OES). The nanomaterials were synthetized using borohydride reduction of iron salt followed by addition of EDTA and pyridine-2,6-dicarboxylic acid (dipicolinic acid, PDCA) in different molar ratios. Functionalized materials were characterized by FT-IR, XRD and SEM-EDS methods. The ligand attachment on the particles was confirmed by FT-IR spectroscopy. The formation of a magnetite and feroxyhyte shell on the core of functionalized nanoparticles was confirmed by the XRD study. Transformation of chain-like structures into clusters of nanospheres with smaller diameter size was observed from SEM study of EDTA-nVZI particles. The average diameter of bare nZVI particles comprised 115 nm, while EDTA functionalization resulted in an average diameter of 22 and 35 nm. The PDCA-nZVI particles obtained with the molar ratio of Fe : PDCA = 1 : 1 retain the chain-like structure with enlargement of the average particle diameter to 267 nm. SEM study of PDCA-nZVI particles that were produced using the ratio Fe : PDCA = 2 : 1 have demonstrated the unique property of elongation into ellipsoidal forms of reduced dimensions (a = 61 nm; b = 28 nm). The simultaneous metal ion removal from aqueous solution was the most efficient in the case of bare nZVI particles (91-97%). EDTA functionalization was found to be highly selective for Cu and Cr removal (95%), while PDCA functionalization shows selective adsorption of Cu, Cr and V in an aqueous medium (93%). Iron nanoparticles functionalized with PDCA in both of the used ratios showed more efficient metal ion adsorption in the case when smaller ellipsoidal particles were formed.
机译:使用电感耦合等离子体光发射光谱法(ICP-OES)测试从水溶液中裸露和官能化零价铁纳米粒子(NZVI)上的金属离子的同时吸附。使用铁盐的硼氢化物还原合成纳米材料,然后在不同摩尔比中加入EDTA和吡啶-2,6-二羧酸(二辛溶胶,PDCA)。通过FT-IR,XRD和SEM-EDS方法表征官能化材料。通过FT-IR光谱证实颗粒上的配体附着。通过XRD研究证实了在官能化纳米颗粒的核心上形成磁铁矿和Feroxythte壳。从EDTA-NVZI颗粒的SEM研究观察到链状结构转化为具有较小直径尺寸的纳米球簇。裸NZVI颗粒的平均直径包含115nm,而EDTA官能化导致平均直径为22和35nm。用Fe:PDCA = 1:1的摩尔比获得的PDCA-NZVI颗粒保持链状结构,其增大平均粒径至267nm。使用比率Fe:PDCA = 2:1产生的PDCA-NZVI颗粒的SEM研究已经证明了伸长率的独特性,其椭圆形式的尺寸减小(A = 61nm; b = 28nm)。在裸NZVI颗粒(91-97%)的情况下,从水溶液中去除的同时金属离子是最有效的(91-97%)。发现EDTA官能化对于Cu和Cr去除(95%)是高度选择性的,而PDCA官能化显示Cu,Cr和V在水性介质中的选择性吸附(93%)。在两种使用的比例中用PDCA官能化的铁纳米颗粒在形成较小的椭圆形颗粒时,在壳体中显示出更有效的金属离子吸附。

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    《RSC Advances》 |2019年第53期|共9页
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  • 正文语种 eng
  • 中图分类 化学;
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