• Journal of Inorganic Materials
  • Vol. 36, Issue 11, 1163 (2021)
Yu GUO, Xiaoqing JIANG, Hongmei WU, Yu XIAO, Dafu WU, and Xin LIU
Author Affiliations
  • School of Chemical and Environmental Engineering, Institute of Interdisciplinary Research, Liaoning University of Technology, Jinzhou 121001, China
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    DOI: 10.15541/jim20210109 Cite this Article
    Yu GUO, Xiaoqing JIANG, Hongmei WU, Yu XIAO, Dafu WU, Xin LIU. Preparation of 2-hydroxy-1-naphthalene Functionalized SBA-15 Adsorbent for the Adsorption of Chromium(III) Ions from Aqueous Solution[J]. Journal of Inorganic Materials, 2021, 36(11): 1163 Copy Citation Text show less

    Abstract

    SBA-15 mesoporous material functionalized with 2-hydroxy-1-naphthaldehyde denoted as Q-SBA-15 was synthesized by using Schiff’s base reaction to remove Cr(III) ions from aqueous solution. A series of characterizations were performed to analyze the morphology, pore structure, element distribution and chemical properties of Q-SBA-15. The results showed that BET surface area and pore size of SBA-15 decreased after modified with 2-hydroxy- 1-naphthaldehyde, but the surface morphology and crystal structure of SBA-15 did not change significantly. To investigate the adsorption properties of Q-SBA-15 toward Cr(III) ions, effects of solution pH and ionic strength were studied. Moreover, adsorption kinetics, adsorption isotherm models, adsorption thermodynamics, and regeneration performance of Q-SBA-15 were analyzed. Adsorption process toward Cr(III) ions onto Q-SBA-15 was well followed by pseudo-second order kinetic model and Langmuir isotherm model. The maximum adsorption capacity of Q-SBA-15 was 102.3 mg/g toward Cr(III) ions under the conditions of 40 ℃ and pH 6. The Cr(III) adsorption onto Q-SBA-15 was found to be spontaneous and endothermic process. The adsorption process mainly based on the coordination chelation of Cr(III) ions with the functionalized groups on Q-SBA-15. Furthermore, Q-SBA-15 exhibited good reusability. Therefore, Q-SBA-15 can be used as a promising adsorbent for removal of Cr(III) ions from aqueous solution.
    $Q=\frac{\left( {{C}_{0}}-{{C}_{t}} \right)\times V}{m}$

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    $R=\frac{{{C}_{0}}-{{C}_{t}}}{{{C}_{0}}}\times 100%$

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    $\ln {{q}_{\text{e}}}=\frac{1}{n}\ln {{C}_{\text{e}}}+\ln {{K}_{\text{F}}}$

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    $\frac{{{C}_{\text{e}}}}{{{q}_{\text{e}}}}=\frac{{{C}_{\text{e}}}}{{{q}_{\max }}}+\frac{1}{{{q}_{\max }}{{K}_{\text{L}}}}$

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    $\ln \left( {{q}_{\text{e}}}-{{q}_{t}} \right)=\ln {{q}_{\text{e}}}-{{K}_{1}}t$

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    $\frac{t}{{{q}_{\text{t}}}}=\frac{1}{{{K}_{2}}q_{\text{e}}^{2}}+\frac{t}{{{q}_{\text{e}}}}$

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    $\text{ }\!\!\Delta\!\!\text{ }G=-RT\ln {{K}_{\text{c}}}$

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    $\text{ }\!\!\Delta\!\!\text{ }G=\text{ }\!\!\Delta\!\!\text{ }H-T\text{ }\!\!\Delta\!\!\text{ }S$

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    $\ln {{K}_{\text{c}}}=-\frac{\text{ }\!\!\Delta\!\!\text{ }H}{RT}+\frac{\text{ }\!\!\Delta\!\!\text{ }S}{R}$

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    ${{K}_{\text{c}}}=\frac{{{q}_{\text{e}}}}{{{C}_{\text{e}}}}$

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    Yu GUO, Xiaoqing JIANG, Hongmei WU, Yu XIAO, Dafu WU, Xin LIU. Preparation of 2-hydroxy-1-naphthalene Functionalized SBA-15 Adsorbent for the Adsorption of Chromium(III) Ions from Aqueous Solution[J]. Journal of Inorganic Materials, 2021, 36(11): 1163
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