首页> 美国卫生研究院文献>Materials >Investigation on the Adsorption-Interaction Mechanism of Pb(II) at Surface of Silk Fibroin Protein-Derived Hybrid Nanoflower Adsorbent
【2h】

Investigation on the Adsorption-Interaction Mechanism of Pb(II) at Surface of Silk Fibroin Protein-Derived Hybrid Nanoflower Adsorbent

机译:丝素蛋白蛋白杂化纳米花吸附剂表面Pb(II)的吸附相互作用机理研究

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

For further the understanding of the adsorption mechanism of heavy metal ions on the surface of protein-inorganic hybrid nanoflowers, a novel protein-derived hybrid nanoflower was prepared to investigate the adsorption behavior and reveal the function of organic and inorganic parts on the surface of nanoflowers in the adsorption process in this study. Silk fibroin (SF)-derived and copper-based protein-inorganic hybrid nanoflowers of SF@Cu-NFs were prepared through self-assembly. The product was characterized and applied to adsorption of heavy metal ion of Pb(II). With Chinese peony flower-like morphology, the prepared SF@Cu-NFs showed ordered three-dimensional structure and exhibited excellent efficiency for Pb(II) removal. On one hand, the adsorption performance of SF@Cu-HNFs for Pb(II) removal was evaluated through systematical thermodynamic and adsorption kinetics investigation. The good fittings of Langmuir and pseudo-second-order models indicated the monolayer adsorption and high capacity of about 2000 mg g of Pb(II) on SF@Cu-NFs. Meanwhile, the negative values of and proved the spontaneous and exothermic process of Pb(II) adsorption. On the other hand, the adsorption mechanism of SF@Cu-HNFs for Pb(II) removal was revealed with respect to its individual organic and inorganic component. Organic SF protein was designated as responsible ‘stamen’ adsorption site for fast adsorption of Pb(II), which was originated from multiple coordinative interaction by numerous amide groups; inorganic Cu (PO ) crystal was designated as responsible ‘petal’ adsorption site for slow adsorption of Pb(II), which was restricted from weak coordinative interaction by strong ion bond of Cu(II). With only about 10% weight content, SF protein was proven to play a key factor for SF@Cu-HNFs formation and have a significant effect on Pb(II) treatment. By fabricating SF@Cu-HNFs hybrid nanoflowers derived from SF protein, this work not only successfully provides insights on its adsorption performance and interaction mechanism for Pb(II) removal, but also provides a new idea for the preparation of adsorption materials for heavy metal ions in environmental sewage in the future.
机译:为了进一步了解蛋白质-无机杂化纳米花表面上重金属离子的吸附机理,制备了一种新型的蛋白质衍生杂化纳米花,以研究其吸附行为并揭示有机和无机部分在纳米花表面上的功能。在这项研究中的吸附过程。通过自组装制备了SF @ Cu-NFs的丝素蛋白(SF)衍生和铜基蛋白-无机杂化纳米花。对该产物进行表征,并将其用于吸附Pb(II)的重金属离子。以中国牡丹花状形态,制备的SF @ Cu-NFs表现出有序的三维结构,并且具有优异的Pb(II)去除效率。一方面,通过系统的热力学和吸附动力学研究,评估了SF @ Cu-HNFs去除Pb(II)的吸附性能。 Langmuir模型和拟二级模型的良好拟合表明,单层吸附和约2,000 mg g的Pb(II)在SF @ Cu-NFs上具有高容量。同时,的负值和证明了Pb(II)吸附的自发和放热过程。另一方面,揭示了SF @ Cu-HNFs去除Pb(II)的吸附机理,涉及其有机和无机成分。有机SF蛋白被指定为负责快速吸附Pb(II)的“雄蕊”吸附位点,其起源于众多酰胺基团的多重配位相互作用。无机Cu(PO)晶体被指定为缓慢吸附Pb(II)的“花瓣”吸附点,而Cu(II)的强离子键限制了其弱的配位作用。 SF蛋白仅约10%的重量含量,被证明是SF @ Cu-HNFs形成的关键因素,并且对Pb(II)的处理具有重要作用。通过制备源自SF蛋白的SF @ Cu-HNFs杂化纳米花,这项工作不仅成功地提供了其吸附性能和去除Pb(II)的相互作用机理的见解,而且为制备重金属吸附材料提供了新思路。未来环境污水中的离子。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号