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Zirconium cross-linked chitosan composite: Preparation, characterization and application in adsorption of Cr(VI)

机译:锆交联壳聚糖复合材料的制备,表征及在六价铬吸附中的应用

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In the present paper, a zirconium-chitosan (Zr-CTS) composite is reported for adsorption of Cr(Vi). The Zr-CTS composite was synthesized through the coordination reaction between zirconium oxychloride and chitosan biopolymeric matrix. Then the prepared composite was characterized by FT-IR, XRD, SEM and EDS. The adsorption properties of the resulting composite toward Cr(VI) were systematically investigated. Various factors possibly affecting the adsorption behavior were also studied. The results demonstrated that the equilibrium adsorption behavior of Cr(VI) on the prepared Zr-CTS composite had a good agreement with the Langmuir isotherm model (R~2 = 0.9993), and the maximum adsorption capacity was calculated as 175 mg g~(-1) for Cr(VI) with pH 5.0 at 30 °C. The thermodynamic results revealed that chromium adsorption was a spontaneous and endothermic process. Furthermore, co-existing ions including nitrate, chloride and sulfate had effects on the uptake of Cr(VI) on the Zr-CTS composite. The Cr(VI) adsorbed Zr-CTS composite was regenerated with an efficiency of greater than 91% using 0.05 mol L~(-1) sodium hydroxide.
机译:在本文中,报道了锆-壳聚糖(Zr-CTS)复合材料对Cr(Vi)的吸附。通过氧氯化锆与壳聚糖生物聚合物基体的配位反应合成了Zr-CTS复合材料。然后通过FT-IR,XRD,SEM和EDS对制备的复合材料进行表征。系统研究了所得复合材料对Cr(VI)的吸附性能。还研究了可能影响吸附行为的各种因素。结果表明,Cr(VI)在制备的Zr-CTS复合材料上的平衡吸附行为与Langmuir等温线模型(R〜2 = 0.9993)有很好的一致性,最大吸附容量为175 mg g〜( -1)在30°C下的pH为5.0的Cr(VI)。热力学结果表明铬吸附是一个自发的吸热过程。此外,包括硝酸根,氯离子和硫酸根在内的共存离子对Zr-CTS复合材料上Cr(VI)的吸收有影响。使用0.05 mol L〜(-1)氢氧化钠以高于91%的效率再生Cr(VI)吸附的Zr-CTS复合材料。

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