首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Solid-solid crosslinking of carboxymethyl cellulose nanolayer on titanium oxide nanoparticles as a novel biocomposite for efficient removal of toxic heavy metals from water
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Solid-solid crosslinking of carboxymethyl cellulose nanolayer on titanium oxide nanoparticles as a novel biocomposite for efficient removal of toxic heavy metals from water

机译:羧甲基纤维素纳米钛氧化钛纳米粒子的固体交联作为一种新型生物复合材料,用于高效除去水中有毒重金属

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摘要

Nano titanium oxide (Nano-TiO2) was used in this work as a solid support to solid-solid immobilize carboxymethyl cellulose via glutaraldehyde as an efficient cross linking reagent to produce a novel nanosized biocomposite (Nano-TiO2-glu-CMC). The synthesized materials were characterized by FT-IR to confirm crosslinking reaction between the two species as well as by HR-TEM, SEM, TGA and surface area analysis. The particle size was found to correspond to 22.2-44.4 nm for Nano-TiO2-glu-CMC. The designed nano sized biocomposite was used and compared with Nano-TiO2 for separation and extraction of heavy metal ions such as Cd(II), Pb(II) and Hg(II) from aqueous solution by using batch experiment and microcolumn technique. The maximum metal sorption capacity values of Cd(II), Pb(II) and Hg(II) were established as 2440 mu mol g(-1) (pH 7), 2880 mu mol g(-1) (pH 6) and 1160 mu mol g(-1) (pH 3), respectively. Optimization of the extraction experiments confirmed the maximum adsorption upon using 0.025 g biocomposite dosage and 30 min contact time. (C) 2017 Elsevier B.V. All rights reserved.
机译:将纳米氧化钛(Nano-TiO 2)用于本作工作中,作为固体固体固定羧甲基纤维素通过戊二醛作为高效交叉连接试剂,以产生新型纳米化生物复合材料(Nano-TiO2-Glu-CMC)。通过FT-IR表征合成材料,以确认两种物种之间的交联反应以及HR-TEM,SEM,TGA和表面积分析。发现粒径对应于纳米TiO2-Glu-CMC的22.2-44.4nm。使用设计的纳米尺寸的生物复合材料,并与纳米TiO2进行比较,用于通过使用批量实验和微柱技术将重金属离子等重金属离子(如CD(II),Pb(II)和Hg(II))分离和提取。 CD(II),Pb(II)和Hg(II)的最大金属吸附容量值建立为2440μmolg(-1)(pH7),2880μmmg(-1)(pH6)和分别1160μmMmolg(-1)(pH 3)。优化提取实验证实了使用0.025g生物复合剂量和30分钟接触时间的最大吸附。 (c)2017年Elsevier B.V.保留所有权利。

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