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Improvement of metal adsorption onto chitosan/Sargassum sp. composite sorbent by an innovative ion-imprint technology

机译:改善金属对壳聚糖/ Sargassum sp。的吸附。创新性离子压印技术的复合吸附剂

摘要

Technology for immobilization of biomass has attracted a great interest due to the high sorption capacity of biomass for sequestration of toxic metals from industrial effluents. However, the currently practiced immobilization methods normally reduce the metal sorption capacities. In this study, an innovative ion-imprint technology was developed to overcome the drawback. Copper ion was first imprinted onto the functional groups of chitosan that formed a pellet-typed sorbent through the granulation with Sargassum sp.; the imprinted copper ion was chemically detached from the sorbent, leading to the formation of a novel copper ion-imprinted chitosan/Sargassum sp. (CICS) composite adsorbent. The copper sorption on CICS was found to be highly pH-dependent and the maximum uptake capacity was achieved at pH 4.7-5.5. The adsorption isotherm study showed the maximum sorption capacity of CICS of 1.08 mmol/g, much higher than the non-imprinted chitosan/Sargassum sp. sorbent (NICS) (0.49 mmol/g). The used sorbent was reusable after being regenerated through desorption. The FTIR and XPS studies revealed that the greater sorption of heavy metal was attributed to the large number of primary amine groups available on the surfaces of the ion-imprinted chitosan and the abundant carboxyl groups on Sargassum sp.. Finally, an intraparticle surface diffusion controlled model well described the sorption history of the sorbents. (c) 2010 Elsevier Ltd. All rights reserved.
机译:由于生物质具有高的吸附能力,可将生物质固定化技术从工业废水中隔离有毒金属。然而,目前实践的固定方法通常会降低金属的吸附能力。在这项研究中,开发了一种创新的离子压印技术来克服这一缺点。首先将铜离子压印在壳聚糖的官能团上,这些壳聚糖通过Sargassum sp。的制粒形成颗粒型吸附剂。印迹的铜离子从吸附剂上化学分离,导致形成新型的铜离子印迹的壳聚糖/ Sargassum sp.。 (CICS)复合吸附剂。发现铜在CICS上的吸附高度依赖于pH值,并且在pH 4.7-5.5时达到最大吸收能力。吸附等温线研究表明,CICS的最大吸附容量为1.08 mmol / g,远高于未印迹的壳聚糖/ Sargassum sp。吸附剂(NICS)(0.49 mmol / g)。用过的吸附剂经解吸再生后可重复使用。 FTIR和XPS研究表明,重金属的更大吸附归因于离子印迹壳聚糖表面上可用的大量伯胺基团和Sargassum sp。上的大量羧基。最后,颗粒内表面扩散得到控制该模型很好地描述了吸附剂的吸附历史。 (c)2010 Elsevier Ltd.保留所有权利。

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