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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Dual nanofibrillar-based bio-sorbent films composed of nanocellulose and lysozyme nanofibrils for mercury removal from spring waters
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Dual nanofibrillar-based bio-sorbent films composed of nanocellulose and lysozyme nanofibrils for mercury removal from spring waters

机译:基于双纳米纤维的生物吸附剂,由纳米纤维素和溶菌酶纳米纤维组成,用于汞的汞氨基纤维

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The present study explores the preparation of dual nanofibrillar-based bio-sorbent films composed of cellulose nanofibrils (CNFs) and lysozyme nanofibrils (LNFs) for application in the removal of Hg(II) from aqueous solutions. The free-standing films were fabricated via simple vacuum filtration of water suspensions of CNFs and LNFs and disclose good mechanical and thermal properties. The Hg(II) removal efficiency was evaluated by atomic fluorescence spectroscopy in ultra-pure and natural spring waters contaminated with environmental realistic levels of mercury (50 mu g L-1). The removal efficiency is pH-dependent reaching a maximum of 99 % after 24 h at a pH value close to the isoelectric point of the protein. Under the experimental conditions, the sorption kinetics are well described by the pseudo-second-order and Elovich models, suggesting a chemisorption mechanism. These results demonstrate the ability of the dual nanofibrillar-based films to remove Hg(II) from water samples reaching a residual concentration lower than the guideline value for water intended for human consumption (1 mu g L-1). Therefore, the CNFs/LNFs bio-sorbents might be a solution to treat low-concentrated mercury-contaminated waters.
机译:本研究探讨了由纤维素纳米纤维(CNFS)和溶菌酶纳米纤维(LNFS)组成的双纳米纤维的生物吸附膜的制备,用于从水溶液中除去Hg(II)。通过简单的CNF和LNF的水悬浮液真空过滤制造自卸薄膜,并公开了良好的机械和热性能。用环境现实水平的汞(50μgL-1)污染的超纯和天然泉水中的原子荧光光谱法评价HG(II)的去除效率。去除效率是pH-依赖于24小时后达到最多99%,靠近蛋白质的等电点的pH值。在实验条件下,吸附动力学通过伪二阶和ELOVICH模型很好地描述,表明了化学吸附机制。这些结果证明了双纳米铁纤维的薄膜从水样中除去Hg(II)的能力,该样品达到低于用于人消耗的水的准则值(1μgl-1)的剩余浓度。因此,CNFS / LNFS生物吸附剂可能是治疗低浓缩的汞污染水域的溶液。

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