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首页> 外文期刊>Ultrasonics sonochemistry >Ultrasonic-assisted manufacturing of new hydrogel nanocomposite biosorbent containing calcium carbonate nanoparticles and tragacanth gum for removal of heavy metal
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Ultrasonic-assisted manufacturing of new hydrogel nanocomposite biosorbent containing calcium carbonate nanoparticles and tragacanth gum for removal of heavy metal

机译:超声波辅助制造含有碳酸钙纳米粒子和TragaCanth Gum的新型水凝胶纳米复合物生物吸附剂,用于去除重金属

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摘要

This article reports the first incorporation of calcium carbonate nanoparticles (CC NPs) into tragacanth gum (TG) to prepare a new hydrogel nanocomposite (HNC) system using a green, safe, and eco-friendly method, ultrasound irradiation as an efficient biosorbent of heavy metal ions from wastewater. Morphological studies revealed that the surface of obtained HNCs is rough, homogeneous, and porous-like due to the embedding of CC NPs as well as sonication in comparison to the neat TG which has a smooth surface. The particle size reduction was observed for CC NPs in the matrix (from 57 to 10 nm), which is owing to the extraordinary effect of sonication on this process. Thermal stability of HNCs has been increased after using CC NPs from 8.5 wt% for TG to about 22 wt% for HNCs. The optical band gap of TG/CC HNC 5 wt% calculated to be 4.46 eV which is less than that of CC NPs (5.58 eV) and even TG (6.28 eV) and this result indicated that TG/CC HNC 5 wt% is relatively more conductive than CC NPs and TG. The nitrogen adsorption-desorption disclosed an isotherm type III of Brunauer classification for TG/CC HNC 5 wt% and the surface area has been increased from 0.7 m(2).g(-1) for TG to 2.3 m(2).g(-1) for TG/CC HNC 5 wt%. Also, the BET surface area for TG/CC HNC 5 wt% calculated to be 7.8 nm which is classified into mesoporous materials. The Pb2+ ions were significantly removed from water using TG/CC HNC 5 wt% and the removal efficiency was determined as 83% at optimized conditions (pH = 5, adsorbent dosage = 0.015 g, time = 3 h, and Pb2+ concentration = 70 mg.L-1).
机译:本文将碳酸钙纳米粒子(CC NPS)掺入TragaCanth Gum(Tg)中的首次掺入使用绿色,安全和生态友好的方法,以制备新的水凝胶纳米复合材料(HNC)系统,超声辐照为重的高效生物吸附剂来自废水的金属离子。形态学研究表明,由于嵌入CC NPS以及与具有光滑表面的整洁TG的纯净TG相比,所获得的HNC的表面是粗糙的,均匀的和多孔的样品。在基质中的CC NPS(57至10nm)观察到粒度减少,这是由于超声处理对该过程的非凡效应。使用CC NPS从8.5wt%的Tg达到HNC的Tg至约22wt%后,HNC的热稳定性已增加。 Tg / cc Hnc 5wt%的光带隙计算为4.46eV,低于CC NPS(5.58eV)甚至TG(6.28eV),并且该结果表明TG / CC HNC 5 WT%相对比cc nps和tg更多导电。氮吸附 - 解吸除草于Tg / Cc HNC 5wt%的Brunauer分类的等温型III,表面积从0.7μm(2).g(-1)增加到2.3 m(2).g (-1)Tg / cc HNC 5wt%。此外,Tg / Cc HNC 5wt%的BET表面积计算为7.8nm,其分为介孔材料。使用Tg / cc HNC 5wt%从水中显着除去Pb2 +离子,并在优化条件下测定去除效率为83%(pH = 5,吸附剂剂量= 0.015g,时间= 3小时,Pb2 +浓度= 70mg .l-1)。

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