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Biomimic hybrid polymer networks based on casein and poly(methacrylic acid). Case study: Ni2+ removal

机译:基于酪蛋白和聚(甲基丙烯酸)的仿生杂化聚合物网络。案例研究:去除Ni2 +

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摘要

Mimicking the extraordinary performances of natural materials presents an attractive, but challenging approach in the synthesis of advanced functional materials. In the field of separation techniques, the design of a low-cost, regenerative, environmentally friendly sorbent and the utilization of most of its active centers to remove the targeted pollutant are everyday challenges. The combination of casein and poly(sodium methacrylate) (PMANa) in the form of a soft polymer network is proposed as a promising sorbent for the removal of Ni2+ from wastewater. Such a combination and an applied synthetic route form hybrid materials with better sorption properties than both their components alone. SEM and TEM show that caseinate micelles are dissociated and the more exposed protein structure is stabilized by the PMANa network and able to form various stable complexes. The achieved sorption capacity (224 mg g(-1)) is among the highest reported in the literature. The very high removal efficiency in the wide range of the initial Ni2+ concentrations (0.05-200 ppm) and easy and complete regeneration without decrease in sorption capacities make these low-cost materials highly sensitive sorbents attractive for use under real conditions where it is necessary to avoid environmental risks and provide the recovery and reuse of the metal.
机译:模仿天然材料的非凡性能,在合成高级功能材料时提出了一种有吸引力但极富挑战性的方法。在分离技术领域,低成本,可再生,环境友好型吸附剂的设计以及其大部分活性中心的使用均是去除目标污染物的日常挑战。酪蛋白和聚(甲基丙烯酸钠)(PMANa)以软聚合物网络形式的组合被提出作为一种有前途的吸附剂,用于从废水中去除Ni2 +。这种组合和所应用的合成路线形成了比单独的两种组分都具有更好的吸附性能的杂化材料。 SEM和TEM显示酪蛋白酸盐胶束被解离,并且通过PMANa网络稳定了更多暴露的蛋白质结构,并且能够形成各种稳定的复合物。达到的吸附容量(224 mg g(-1))是文献中报道的最高吸附量。在广泛的初始Ni2 +浓度(0.05-200 ppm)范围内非常高的去除效率以及容易且完全的再生而不会降低吸附能力,这些低成本的高灵敏度吸附剂对于在有必要进行实际操作的实际条件下具有吸引力。避免环境风险,并提供金属的回收和再利用。

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