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首页> 外文期刊>Chemical engineering journal >Malic acid-enhanced chitosan hydrogel beads (mCHBs) for the removal of Cr(VI) and Cu(II) from aqueous solution
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Malic acid-enhanced chitosan hydrogel beads (mCHBs) for the removal of Cr(VI) and Cu(II) from aqueous solution

机译:苹果酸 - 增强的壳聚糖水凝胶珠(MCHBS)从水溶液中除去Cr(VI)和Cu(II)

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摘要

Chitosan hydrogel beads (CHBs) have displayed prominent advantages as adsorbents, including easy separation after adsorption. To further increase their adsorption capacity, CHBs were modified with malic acid and further freeze-dried. The structural characteristics of malic acid modified CHBs (mCHBs) were explored along with the factors primarily influencing their effectiveness. The mechanisms of Cr(VI) and Cu(II) ion removal were re-evaluated in detail. The results show that (1) porous mCHBs were clearly observed by scanning electron microscopy, accompanying with the observation of particles of elemental Cu or Cr about 300 nm in diameter within the pores of the mCHBs; (2) the maximum equilibrium adsorption capacity of mCHBs for Cr(VI) was 383.2 mg g(-1), reached within 2 h, and the removal of Cr(VI) was an efficient adsorption-reduction process. For comparison, the chemisorption of Cu(II) onto mCHBs formed a monolayer with a maximum equilibrium adsorption capacity of 183.8 mg g(-1), reached within 24 h, and the adsorption of Cu(II) ions was spontaneous and endothermic. Moreover, CHBs modified with a series of carboxylic acids also showed enhanced removal of heavy metals. In addition, the presence of Cu(II) ions in the matrix of mCHBs could function as an effective adsorbent for removal of phosphate ions.
机译:壳聚糖水凝胶珠(CHBS)表现为吸附剂的突出优点,包括吸附后容易的分离。为了进一步提高吸附能力,用苹果酸改性CHB并进一步冷冻干燥。探索了苹果酸改性CHBS(MCHB)的结构特征以及主要影响其有效性的因素。详细评估Cr(VI)和Cu(II)离子去除的机制。结果表明,通过扫描电子显微镜清楚地观察(1)多孔MCHB,随着在MCHBS的孔内的基本型Cu或Cr约300nm的颗粒的观察中,伴随着颗粒; (2)Cr(vi)的MCHBS的最大平衡吸附容量为383.2mg g(-1),达到2小时内,并去除Cr(VI)是有效的吸附还原过程。为了比较,Cu(II)在24小时内形成183.8mg G(-1)的最大平衡吸附容量的单层的单层,并且Cu(ii)离子的吸附是自发的和吸热的。此外,用一系列羧酸修饰的CHBS也显示出增强的重金属去除。另外,MCHBS基质中的Cu(II)离子的存在可以用作用于除去磷酸根离子的有效吸附剂。

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