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Protection of Thiol Groups on the Surface of Magnetic Adsorbents and Their Application for Wastewater Treatment

机译:磁性吸附剂表面巯基的保护及其在废水处理中的应用

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摘要

The magnetite nanoparticles were functionalized with silica shells bearing mercaptopropyl (monofunctional) and mercaptopropyl-and-alkyl groups (bifunctional) by single-step sol-gel technique. The influence of synthetic conditions leading to increased amounts of active functional groups on the surface and improved capacity in the uptake of Ag(I), Cd(II), Hg(II), and Pb(II) cations was revealed. The physicochemical properties of obtained magnetic nanocomposites were investigated by FTIR, Raman, XRD, TEM, SEM, low-temperature nitrogen ad-/desorption measurements, TGA, and chemical microanalysis highlighting the efficiency of functionalization and mechanisms of the preparation procedures. The removal of the main group of heavy metal cations was studied in dependence from the pH, contact time and equilibrium concentration to analyze the complexes composition for the large scale production of improved adsorbents. It was demonstrated that introduction of the alkyl groups into the surface layer prevents the formation of the disulfide bonds between adjacent thiol groups. The obtained adsorbents were employed to treat real wastewater from Ruskov, Slovakia with concentration of Fe 319 ng/cm3, Cu 23.7 ng/cm3, Zn 36 ng/cm3, Mn 503 ng/cm3, Al 21 ng/cm3, As 34 ng/cm3, Pb 5.8 ng/cm3, Ni 35 ng/cm3, Co 4.2 ng/cm3, Cr 9.4 ng/cm3, Sb 6 ng/cm3, Cd 5 ng/cm3. These materials proved to be highly effective in the removal of 50% of all metal ions, espeсially Zn, Cd, and Pb ions from it and turned recyclable, opening for their sustainable use in water purification.
机译:磁铁矿纳米颗粒通过一步法溶胶凝胶技术用带有巯基丙基(单官能团)和巯基丙基和烷基(双官能团)的二氧化硅壳官能化。揭示了合成条件的影响,导致表面上活性官能团的数量增加,提高了吸收Ag(I),Cd(II),Hg(II)和Pb(II)阳离子的能力。通过FTIR,拉曼,XRD,TEM,SEM,低温氮吸附/脱附测量,TGA和化学微分析研究了所得磁性纳米复合材料的理化性质,突出了功能化的效率和制备程序的机理。根据pH,接触时间和平衡浓度研究了去除主要组份重金属阳离子的方法,以分析用于大规模生产改良吸附剂的配合物组成。已经证明,将烷基引入表面层可防止相邻硫醇基之间形成二硫键。所获得的吸附剂用于处理斯洛伐克Ruskov的真实废水,其浓度为Fe 319 ng / cm 3 ,Cu 23.7 ng / cm 3 ,Zn 36 ng / cm < sup> 3 ,Mn 503 ng / cm 3 ,Al 21 ng / cm 3 ,As 34 ng / cm 3 ,铅5.8 ng / cm 3 ,镍35 ng / cm 3 ,钴4.2 ng / cm 3 ,铬9.4 ng / cm 3 ,Sb 6 ng / cm 3 ,Cd 5 ng / cm 3 。这些材料被证明对去除其中的所有金属离子(尤其是Zn,Cd和Pb离子)中的50%非常有效,并且可以回收利用,为它们在水净化中的可持续使用打开了大门。

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