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Functionalized Wool as an Efficient and Sustainable Adsorbent for Removal of Zn(II) from an Aqueous Solution

机译:作为一种高效和可持续的吸附剂用于从水溶液中去除Zn(II)的有效和可持续的吸附剂

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摘要

In this paper, the aim of the research was to obtain a highly efficient wool-based sorbent for the removal of zinc Zn(II) from wastewater. To increase the functional groups for metal binding, the wool was functionalized with chitosan. Chitosan has amino groups through which metals can be complexed easily to chelates. The physical and chemical modification of chitosan on wool was performed to analyze the influence of the coating bond on the final ability of the wool to remove metals. The presence of functional chitosan groups onto wool after adsorption was verified by attenuated total reflectance-Fourier transform infrared spectroscopy (ATR-FT-IR) spectra. The effective binding of chitosan to wool was also determined by potentiometric and polyelectrolyte titration methods. The latter titration was used to analyze the chitosan desorption. The main part of the study was the sorption of Zn(II) on natural and functionalized wool. The influence was investigated as a function of contact time, pH, metal ion concentration and temperature on the sorption process. The absorbent with the highest concentration of protonated amino groups (607.7 mmol/kg) and responding sorption capacity of 1.52 mg/g was obtained with wool physically modified by a macromolecular chitosan solution (1%) at pH = 7. Adsorption of Zn(II) onto pristine and modified wool corresponded to pseudo-second order kinetics ( > 0.9884). The Langmuir model was found to be more suitable ( > 0.9866) in comparison to the Freundlich model. The Zn(II) sorption process was spontaneous (∆ < 0) and exothermic (∆ < 0). The results found in this study are significant for escalating the possible use of wool modified with polysaccharide coatings as a sustainable source to improve or increase the metal sorption activity of wool.
机译:在本文中,研究的目的是获得高效的羊毛的吸附剂,用于从废水中除去锌锌(II)。为了增加金属结合的官能团,用壳聚糖官能化羊毛。壳聚糖具有氨基,金属可以容易地复合到螯合物中。进行壳聚糖对羊毛上的物理和化学改性,分析涂料键对羊毛除去金属的最终能力的影响。通过减毒的总反射率 - 傅里叶变换红外光谱(ATR-FT-IR)光谱,验证在吸附后旋转官能壳聚糖基团的存在。壳聚糖对羊毛的有效结合也通过电位和聚电解质滴定方法测定。后者滴定用于分析壳聚糖解吸。该研究的主要部分是Zn(II)对天然和官能化羊毛的吸附。研究了对吸附过程的接触时间,pH,金属离子浓度和温度的函数。通过在pH = 7处的大分子壳聚糖溶液(1%)物理改性的羊毛,获得具有最高浓度的质子化氨基浓度(607.7mmol / kg)和响应吸附能力的吸收剂。Zn吸附(II )在原始和修饰的羊毛上,对应于伪二阶动力学(> 0.9884)。与Freundlich模型相比,发现Langmuir模型更合适(> 0.9866)。 Zn(II)吸附过程是自发的(Δ<0)和放热(δ<0)。本研究中发现的结果对于升级使用多糖涂层改性的可能使用羊毛作为可持续源来升级,以改善或增加羊毛的金属吸附活性。

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