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Eco-Friendly β-cyclodextrin and Linecaps Polymers for the Removal of Heavy Metals

机译:环保的β-环糊精和线帽聚合物用于去除重金属

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摘要

Environment-friendly nanosponges, having a high content of carboxyl groups, were synthesized by crosslinking β-cyclodextrin and linecaps, a highly soluble pea starch derivative, with citric acid in water. Additionally, pyromellitic nanosponges were prepared by reacting β-cyclodextrin and linecaps with pyromellitic dianhydride in dimethyl sulfoxide and used in comparison with the citric nanosponges. After ion-exchange of the carboxyl groups H with sodium ions, the ability of the nanosponges to sequester heavy metal cations was investigated. At a metal concentration of 500 ppm, the pyromellitate nanosponges exhibited a higher retention capacity than the citrate nanosponges. At lower metal concentrations (≤50 ppm) both the citrate and the pyromellitate nanosponges showed high retention capacities (up to 94% of the total amount of metal), while, in the presence of interfering sea water salts, the citrate nanosponges were able to selectively adsorb a significantly higher amount of heavy metals than the pyromellitate nanosponges, almost double in the case of Cu .
机译:通过将β-环糊精和线帽(一种高度可溶性的豌豆淀粉衍生物)与柠檬酸在水中交联,合成了具有高羧基含量的环保纳米海绵。另外,通过使β-环糊精和线帽与均苯四酸二酐在二甲亚砜中反应制备均苯四甲酸纳米海绵,并与柠檬酸纳米海绵进行比较。在用钠离子对羧基H进行离子交换后,研究了纳米海绵螯合重金属阳离子的能力。在金属含量为500 ppm时,均苯四酸纳米海绵比柠檬酸纳米海绵具有更高的保留能力。在较低的金属浓度(≤50ppm)下,柠檬酸盐和均苯四酸酯纳米海绵都显示出高的保留能力(高达金属总量的94%),而在存在干扰的海水盐的情况下,柠檬酸盐纳米海绵能够选择性吸附比均苯四酸纳米海绵高得多的重金属,在Cu的情况下几乎是两倍。

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