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首页> 外文期刊>Journal of nanotechnology >Biosynthesis of Multicomponent Nanoparticles with Extract of Mortino (Vaccinium floribundutn Kunth) Berry: Application on Heavy Metals Removal from Water and Immobilization in Soils
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Biosynthesis of Multicomponent Nanoparticles with Extract of Mortino (Vaccinium floribundutn Kunth) Berry: Application on Heavy Metals Removal from Water and Immobilization in Soils

机译:Mortino(Vaccinium floribundutn Kunth)浆果提取物生物合成多组分纳米颗粒:在水中重金属去除和土壤固定化中的应用

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摘要

Through preparation of multicomponent nanoparticles (MCNPs) using ferric chloride (FeCl_3), sodium sulfate (Na_2SO_4), and the extract of mortino fruit (Vaccinium floribundutn Kunth), we dramatically improved the removal/immobilization of heavy metals from water and in soils. As-prepared nanoparticles were spherical measuring approximately 12 nm in diameter and contained iron oxides and iron sulfides in the crystal structure. Removal of copper and zinc from water using MCNPs showed high efficiencies (>99%) at pH above 6 and a ratio of 0.5 mL of the extract:10 mL 0.5 M FeCl_3·6H_2O:10 mL 0.035 M Na_2SO_4. The physisorption process followed by chemisorption was regarded as the removal mechanism of Cu and Zn from water. While, when MCNPs were used to treat soils contaminated with heavy metals, more than 95% of immobilization was accomplished for all metals. Nevertheless, the distribution of the metallic elements changed in the soil fractions after treatment. Results indicate that immobilization of metals after the injection of nanoparticles into soils was effective. Metals did not leach out when soils were drained with rain, drinking, and deionized water but fairly leached out under acidic water drainage.
机译:通过使用氯化铁(FeCl_3),硫酸钠(Na_2SO_4)和藜芦果实提取物(Vaccinium floribundutn Kunth)制备多组分纳米颗粒(MCNP),我们显着提高了从水中和土壤中重金属的去除/固定化。所制备的纳米颗粒为球形,直径约为12 nm,并在晶体结构中包含氧化铁和硫化铁。在pH高于6的条件下,使用MCNP从水中去除铜和锌显示出高效率(> 99%),萃取液的比例为0.5 mL:10 mL 0.5 M FeCl_3·6H_2O:10 mL 0.035 M Na_2SO_4。化学吸附之后的物理吸附过程被认为是从水中去除Cu和Zn的机理。同时,当MCNP用于处理被重金属污染的土壤时,所有金属的固定化率均超过95%。然而,处理后土壤部分中金属元素的分布发生了变化。结果表明,将纳米颗粒注入土壤后金属的固定是有效的。当土壤被雨水,饮用水和去离子水排干时,金属并不会浸出,而是在酸性水排泄下被浸出。

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  • 来源
    《Journal of nanotechnology》 |2018年第2018期|9504807.1-9504807.10|共10页
  • 作者单位

    Departamento de Ciencias de la Vida, Universidad de las Fuerzas Armadas ESPE, Av. Gral. Ruminahui s,P.O. Box 171-5-231B, Sangolqui, Ecuador;

    Centro de Nanociencia y Nanotecnologia, Universidad de las Fuerzas Armadas ESPE, Av. Gral. Ruminahui s,P.O. Box 171-5-231B, Sangolqui, Ecuador;

    Departamento de Ciencias de la Vida, Universidad de las Fuerzas Armadas ESPE, Av. Gral. Ruminahui s,P.O. Box 171-5-231B, Sangolqui, Ecuador,Centro de Nanociencia y Nanotecnologia, Universidad de las Fuerzas Armadas ESPE, Av. Gral. Ruminahui s,P.O. Box 171-5-231B, Sangolqui, Ecuador;

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