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Environmentally benign modified biodegradable chitosan for cation removal

机译:环保型改性生物可降解壳聚糖,用于去除阳离子

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The biodegradable biopolymer chitosan had its linear structure chemically modified in a two-step reaction, first by exploring the amino reactivity with glycidylmethacrylate, whose intermediate product, containing an aldehyde group, was then reacted with 1,2-ethanedithiol. Chitosan and the synthesized biopolymers were characterized by elemental analyses, infrared spectroscopy, nuclear magnetic resonance of the carbon nucleus in the solid state, X-ray diffractometry, thermogravimetry and scanning electron microscopy, to give a degree of immobilization of 3.00 mmol g(-1). The available basic nitrogen, sulfur and oxygen Lewis centers attached to the enlarged pendant chains enriched the ability of the biopolymer for copper, lead and cadmium sorption from aqueous solution, to give maximum capacities of 2.05 +/- A 0.01; 2.53 +/- A 0.02 and 1.88 +/- A 0.01 mmol g(-1), when compared to chitosan with 1.54 +/- A 0.33; 1.22 +/- A 0.04 and 1.12 +/- A 0.08 mmol g(-1), respectively, using the Langmuir sorption isotherms. Based on the present results, the highest amount of these cation sorptions, especially with lead that is associated with sulfur-cation soft interactions, is dependent directly on not only the presence of long pendant chain attached, but also the availability of favorable Lewis base centers. The experimental data adjusted to the Langmuir, the Freundlich and the Temkin sorption isotherms using linear and non-linear regression methods and are in agreement with the best fit for Langmuir model type I.
机译:可生物降解的生物聚合物壳聚糖具有线性结构,可通过两步反应进行化学修饰,首先通过探索与甲基丙烯酸缩水甘油酯的氨基反应性,甲基丙烯酸缩水甘油酯的中间产物含有醛基,然后使其与1,2-乙二硫醇反应。通过元素分析,红外光谱,固态碳核的核磁共振,X射线衍射,热重分析和扫描电子显微镜对壳聚糖和合成的生物聚合物进行表征,得出固定化度为3.00 mmol g(-1) )。附着在扩大的侧链上的可用的碱性氮,硫和氧路易斯中心丰富了生物聚合物从水溶液中吸附铜,铅和镉的能力,最大容量为2.05 +/- A 0.01。与具有1.54 +/- A 0.33的壳聚糖相比,为2.53 +/- A 0.02和1.88 +/- A 0.01 mmol g(-1);使用Langmuir吸附等温线分别为1.22 +/- A 0.04和1.12 +/- A 0.08 mmol g(-1)。根据目前的结果,这些阳离子的吸附量最高,尤其是与硫阳离子软相互作用相关的铅吸附量,不仅直接取决于所连接的长侧链的存在,而且还取决于良好的路易斯碱中心的可用性。 。使用线性和非线性回归方法将实验数据调整到Langmuir,Freundlich和Temkin吸附等温线,与最适合I型Langmuir模型的实验数据一致。

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