首页> 外文期刊>Journal of inorganic and organometallic polymers and materials >Application of Geopolymers Modified with Chitosan as Novel Composites for Efficient Removal of Hg(Ⅱ), Cd(Ⅱ), and Pb(Ⅱ) Ions from Aqueous Media
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Application of Geopolymers Modified with Chitosan as Novel Composites for Efficient Removal of Hg(Ⅱ), Cd(Ⅱ), and Pb(Ⅱ) Ions from Aqueous Media

机译:用壳聚糖改性的地质聚合物在新型复合材料中用于高效除去HG(Ⅱ),CD(Ⅱ)和含水培养基的PB(Ⅱ)离子的新型复合材料

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摘要

Abstract In the present paper, two amorphous aluminum silicates (i.e. geopolymers) were synthesized via the interaction of 23.57 mmol of sodium metasilicate pentahydrate with 5.18 or 10.35 mmol of aluminum chloride hexahydrate. The synthesized geopolymers using 5.18 and 10.35 mmol of aluminum chloride hexahydrate were abbreviated as G1.25 and G2.50, respectively. Also, the synthesized geopolymers were modified with chitosan as novel composites. The synthesized composites using G1.25 and G2.50 were abbreviated as G1.25/Ch and G2.50/Ch, respectively. Besides, the synthesized geopolymers and their chitosan composites were characterized using different tools such as XRD, FT-IR, SEM, and EDX. Moreover, the synthesized geopolymers and their chitosan composites were utilized as efficient adsorbents for the removal of Hg(II), Cd(II), and Pb(II) ions from aqueous media. The Langmuir isotherm and pseudo-first-order kinetic model were more consistent with the removal of metal ions from aqueous media. Furthermore, the adsorption processes were spontaneous, exothermic, and chemisorption. In the case of Hg(II), the maximum adsorption capacity of G1.25, G2.50, G1.25/Ch, and G2.50/Ch were 131.93, 140.85, 166.67, and 173.91 mg/g, respectively. In the case of Cd(II), the maximum adsorption capacity of G1.25, G2.50, G1.25/Ch, and G2.50/Ch were 118.34, 134.95, 159.49, and 166.11 mg/g, respectively. In the case of Pb(II), the maximum adsorption capacity of G1.25, G2.50, G1.25/Ch, and G2.50/Ch were 102.15, 118.91, 128.21, and 156.01 mg/g, respectively.
机译:摘要在本文中,通过与5.18或10.35mmol氯化铝六水合物的氯化铝氯化铝的相互作用合成了两种非晶铝硅酸盐(即Geo聚合物)。使用5.18和10.35mmol氯化铝六水合物的合成地质分别缩写为G1.25和G2.50。此外,用壳聚糖作为新型复合材料改性合成的地质聚合物。使用G1.25和G2.50的合成复合物分别缩小为G1.25 / CH和G2.50 / CH。此外,使用XRD,FT-IR,SEM和EDX等不同的工具表征了合成的地质聚合物及其壳聚糖复合材料。此外,合成的地质聚合物及其壳聚糖复合材料用作从水性介质中除去Hg(II),Cd(II)和Pb(II)离子的有效吸附剂。 Langmuir等温线和伪第一阶动力学模型与从水性介质中除去金属离子更符合。此外,吸附过程是自发的,放热和化学吸附。在HG(II)的情况下,G1.25,G2.50,G1.25 / CH和G2.50 / CH的最大吸附容量分别为131.93,140.85,166.67和173.91mg / g。在CD(II)的情况下,G1.25,G2.50,G1.25 / CH和G2.50 / CH的最大吸附容量分别为118.34,134.95,159.49和166.11 mg / g。在PB(II)的情况下,G1.25,G2.50,G1.25 / CH和G2.50 / CH的最大吸附容量分别为102.15,118.91,128.21和156.01 mg / g。

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