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首页> 外文期刊>Journal of the Iranian Chemical Society >SBA-15 mesoporous materials decorated with organic ligands: use as adsorbents for heavy metal ions
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SBA-15 mesoporous materials decorated with organic ligands: use as adsorbents for heavy metal ions

机译:SBA-15用有机配体修饰的介孔材料:用作重金属离子的吸附剂

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When considering the importance of mesoporous materials as adsorbent for heavy metal ions, this study concerns on the preparation, characterization and application of a SBA-15 mesoporous silica material functionalized with a Schiff base ligand N-propylsalicylaldimine (SBA/SA). The properties of this adsorbent were compared with two SBA-15 mesoporous silica materials modified with aminopropyl (SBA/NH2) and ethylenediaminopropyl (SBA/En) groups. These materials were characterized by XRD, SEM, TEM, TGA techniques and FTIR spectroscopy. The potential of the prepared modified mesoporous materials, as metal ion adsorbents, was evaluated by their application for removal of Pb(II), Cd(II) and Ag(I) ions from aqueous solutions. The assessments were conducted by investigating the effect of sample aqueous pH, contact time, adsorbent dose and initial concentration of the metal ions in batch systems. Flame atomic absorption spectroscopy (FAAS) was used for metal ions measurements. It is found that after 4 h of mechanical agitation of the adsorbents and solution, under optimum conditions, lead ions can be quantitatively removed from 10 mg L-1 Pb(II) solution using 0.03 g of SBA/NH2, 0.005 g of SBA/En or 0.005 g of SBA/SA. Under same conditions, silver ions can be quantitatively removed from 10 mg L-1 Ag(I) solution using 0.04 g of SBA/SA. In addition, all the studied ions can be eliminated from solution (initial concentration 10 mg L-1) using 0.06 g of SBA/En adsorbent. Based on the calculated values from the Langmuir isotherm, the maximum adsorption capacities of the adsorbents SBA/NH2,SBA/En and SBA/SA for Pb(II), Cd(II) and Ag(I) were found to be 29.4, 111.1 and 100.0 mg g(-1), 8.0, 14.0 and 5.6 mg g(-1), and 7.3, 31.2 and 28.5 mg g(-1), respectively. The equilibrium data were analyzed using the Langmuir and Freundlich isotherms. The proposed method was applied for removing Pb(II), Cd(II) and Ag(I) ions from real samples under selected experimental conditions.
机译:考虑到介孔材料作为重金属离子吸附剂的重要性时,本研究涉及用席夫碱配体N-丙基水杨醛亚胺(SBA / SA)功能化的SBA-15介孔二氧化硅材料的制备,表征和应用。将该吸附剂的性能与两种经氨基丙基(SBA / NH2)和乙二氨基丙基(SBA / En)改性的SBA-15中孔二氧化硅材料进行了比较。这些材料通过XRD,SEM,TEM,TGA技术和FTIR光谱进行了表征。制备的改性介孔材料作为金属离子吸附剂的潜力通过其从水溶液中去除Pb(II),Cd(II)和Ag(I)离子的应用来评估。通过研究分批系统中样品水溶液的pH,接触时间,吸附剂剂量和金属离子的初始浓度的影响来进行评估。火焰原子吸收光谱法(FAAS)用于金属离子的测量。发现吸附剂和溶液进行机械搅拌4小时后,在最佳条件下,可使用0.03 g SBA / NH2、0.005 g SBA / N从10 mg L-1 Pb(II)溶液中定量去除铅离子。 En或0.005 g SBA / SA。在相同条件下,可以使用0.04 g SBA / SA从10 mg L-1 Ag(I)溶液中定量去除银离子。此外,使用0.06 g SBA / En吸附剂可以从溶液(初始浓度10 mg L-1)中消除所有研究的离子。根据Langmuir等温线的计算值,发现吸附剂SBA / NH2,SBA / En和SBA / SA对Pb(II),Cd(II)和Ag(I)的最大吸附容量为29.4、111.1和100.0 mg g(-1),8.0、14.0和5.6 mg g(-1),以及7.3、31.2和28.5 mg g(-1)。使用Langmuir和Freundlich等温线分析平衡数据。该方法用于在选定的实验条件下从真实样品中去除Pb(II),Cd(II)和Ag(I)离子。

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