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使用β-环糊精功能化生物源零价铁纳米吸附剂从水中去除结晶紫,该吸附剂通过 Ferula persica 的水生根提取物合成。

Removal of crystal violet from water using β-cyclodextrin functionalized biogenic zero-valent iron nanoadsorbents synthesized via aqueous root extracts of Ferula persica.

机构信息

Department of Agronomy and Plant Breeding, Agricultural and Natural Resources College, University of Tehran, Karaj, Iran.

Department of Nanotechnology, Agricultural Biotechnology Research Institute of Iran (ABRII), Agricultural Research, Education and Extension Organization (AREEO), Karaj, Iran.

出版信息

J Hazard Mater. 2019 Apr 5;367:325-338. doi: 10.1016/j.jhazmat.2018.12.079. Epub 2018 Dec 21.

DOI:10.1016/j.jhazmat.2018.12.079
PMID:30599405
Abstract

Three brands of zero-valent iron nanoparticles (Fe° NPs) were biologically/chemically fabricated, and sorption capacities thereof in crystal violet (CV) water remediation were compared and contrasted. Meanwhile, the β-Cyclodextrin (βCD) amounts effects on the size and structure of Fe° NPs were evaluated via field emission scanning electron microscopy, elemental mapping, X-ray diffraction, transmission electron microscopy, Brunauer-Emmett-Teller, and zeta potential analyses. Separated spherical ultra-small Fe° NPs (6.1 nm) with a narrower size distribution could be produced at higher dosages of βCD. The green synthesized Fe° NPs showed better performance than those produced chemically in CV removal (39.5% vs. 14.7%, respectively) because of their higher surface area (46.68 m/g vs. 34.38 m/g, respectively). βCD functionalized Fe° NPs could double nanoadsorbent proficiency in CV removal (99.8%), possibly because of simultaneous decrement in the nanoparticles sizes and increment in the active sorption sites of nanoadsorbent. The effects of nanoadsorbent amount, pH, contact time, temperature, and initial concentration on the sorption were all scrutinized. The adsorption kinetics were found to be finely fitted with the pseudo-second-order model. Adsorption capacity calculated by Langmuir model was 454.5 mg/g (20 °C, at pH 9.0). The current green, reusable, and low-cost nanoadsorbent could be utilized proficiently for practical water remediation.

摘要

三种零价铁纳米颗粒(Fe° NPs)被生物/化学合成,并比较和对比了它们在结晶紫(CV)水修复中的吸附能力。同时,通过场发射扫描电子显微镜、元素映射、X 射线衍射、透射电子显微镜、Brunauer-Emmett-Teller 和动电电位分析评估了β-环糊精(βCD)对 Fe° NPs 尺寸和结构的影响。在更高剂量的βCD 下,可以产生具有更小尺寸分布的分离的球形超小 Fe° NPs(6.1nm)。由于具有更高的表面积(分别为 46.68m/g 和 34.38m/g),绿色合成的 Fe° NPs 在 CV 去除方面的性能优于化学合成的 Fe° NPs(分别为 39.5%和 14.7%)。βCD 功能化的 Fe° NPs 可以使纳米吸附剂在 CV 去除方面的效率提高一倍(99.8%),可能是因为纳米颗粒尺寸同时减小,纳米吸附剂的活性吸附位点增加。还研究了纳米吸附剂用量、pH、接触时间、温度和初始浓度对吸附的影响。吸附动力学很好地符合准二级模型。Langmuir 模型计算的吸附容量为 454.5mg/g(20°C,pH 9.0)。当前的绿色、可重复使用和低成本纳米吸附剂可用于高效实际的水修复。

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