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Simultaneous adsorption of Cu(II) and SO4~(2-) ions by a novel silica gel functionalized with a ditopic zwitterionic Schiff base ligand

机译:新型硅胶经对位两性离子席夫碱配体官能化同时吸附Cu(II)和SO4〜(2-)离子

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摘要

A novel silica gel based absorbent SG-H2L~1, capable of simultaneous adsorption of cations and anions from aqueous solution, was prepared by immobilization of a ditopic zwitterionic Schiff base ligand H2L~1 onto a modified silica gel. The functionalized silica gels were characterized by Fourier transform infrared spectroscopy, elemental analysis, thermogravimetric analysis and porous structure analysis, the results showed a degree of functionalization of 0.32 mmol H2L~1 per gram of SG-H2L~1. The effect of pH, contact time and initial Cu(II) and SO4~(2-) concentration parameters on the simultaneous adsorption of Cu(II) and SO4~(2-) ions were investigated. The adsorption was fast and the effective pH range for simultaneous adsorption of Cu(II) and SO4~(2-) was neutral region. The adsorption study showed that SG-H2L~1 had good adsorption efficiency for Cu(II) and SO4~(2-), and the maximum adsorption capacity for Cu(II) and SO4~(2-), respectively, was the same of 0.65 mmol g~(-1) at 25 °C. Langmuir and Freundlich isotherm models were employed to analyze the experimental data, and the Langmuir model fitted better for both Cu(II) and SO4~(2-). Due to the zwitterionic feature, desorption and regeneration of the absorbent was readily realized by adjusting the pH of the regenerating media with diluted H2SO4 (0.5 mol L~(-1)) and ammonia solution (pH = 10), respectively. The new type absorbent SG-H2L~1 exhibited good recyclability and reusability for 5 cycles use without deterioration in its functionality. Therefore, the adsorbent can be used effectively for efficient and simultaneous adsorption of Cu(II) and SO4~(2-) from waste water. The mechanism for simultaneous adsorption of cation and anions on SG-H2L~1 was also discussed. This study provides a strategy for the development of new absorbents for simultaneous adsorption of hazardous metal ions and anions from waste water effluents.
机译:通过将双位两性离子席夫碱配体H2L-1固定在改性硅胶上,制备了一种新型的基于硅胶的吸收剂SG-H2L-1,它能够同时从水溶液中吸附阳离子和阴离子。通过傅里叶变换红外光谱,元素分析,热重分析和多孔结构分析对功能化硅胶进行了表征,结果表明每克SG-H2L〜1的功能化度为0.32 mmol H2L〜1。研究了pH,接触时间,初始Cu(II)和SO4〜(2-)浓度参数对Cu(II)和SO4〜(2-)离子同时吸附的影响。吸附速度快,同时吸附Cu(II)和SO4〜(2-)的有效pH范围为中性。吸附研究表明SG-H2L〜1对Cu(II)和SO4〜(2-)有很好的吸附效率,对Cu(II)和SO4〜(2-)的最大吸附量相同在25°C下为0.65 mmol g〜(-1)。用Langmuir和Freundlich等温线模型分析了实验数据,Langmuir模型对于Cu(II)和SO4〜(2-)都更合适。由于两性离子的特性,通过分别用稀释的H2SO4(0.5 mol L〜(-1))和氨溶液(pH = 10)调节再生介质的pH值,可以轻松实现吸收剂的解吸和再生。新型吸收剂SG-H2L〜1在5次循环使用中表现出良好的可回收性和可重复使用性,而不会降低其功能。因此,该吸附剂可以有效地同时有效地吸附废水中的Cu(II)和SO4〜(2-)。还讨论了在SG-H2L〜1上同时吸附阳离子和阴离子的机理。这项研究为开发新型吸附剂提供了一种策略,该吸附剂可以同时吸附废水中的有害金属离子和阴离子。

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