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首页> 外文期刊>RSC Advances >Kinetics, equilibrium, statistical surface modeling and cost analysis of paraquat removal from aqueous solution using carbonated jujube seed
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Kinetics, equilibrium, statistical surface modeling and cost analysis of paraquat removal from aqueous solution using carbonated jujube seed

机译:碳酸枣薯种子中水溶液中母溶液中除去的动力学,均衡,统计表面建模及成本分析

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摘要

This paper reports the removal of paraquat from an aqueous solution using prepared carbonated jujube seed (JS/HSO-700). JS/HSO-700 was characterized by XPS, TGA, FTIR, N-2 physisorption, SEM, and Raman techniques. FTIR revealed the presence of active species on the JS/HSO-700 surface. The removal rate of paraquat was investigated as a function of multiple operational factors such as contact time, adsorbent dose and solution pH. Adsorption mechanism was fully investigated based on FTIR, Raman, and BET analyses before and after adsorption. Response surface methodology modeling using central composite design was performed to statistically optimize the adsorption conditions. The experimental paraquat removal efficiency was found to be 96.7 +/- 2.02%, whereas the predicted value of the model was 94.31 +/- 4.43%, showing that the predicted model values are in good agreement with the experimental value. Finally, cost analysis was performed to confirm the cost of the adsorbent based on energy consumption and reagent costs.
机译:本文报道了使用制备的碳酸毒液种子(JS / HSO-700)从水溶液中除去百草枯。 JS / HSO-700的特点是XPS,TGA,FTIR,N-2物理化,SEM和拉曼技术。 FTIR揭示了在JS / HSO-700表面上存在活性物质。作为多种操作因子的函数研究了百草枯的去除率,例如接触时间,吸附剂剂量和溶液pH。基于FTIR,拉曼和吸附前后的BET分析,全面研究了吸附机制。使用中央复合设计进行响应面方法建模,以统计上优化吸附条件。发现实验拟去除效率为96.7 +/- 2.02%,而该模型的预测值为94.31 +/- 4.43%,表明预测的模型值与实验值吻合良好。最后,进行成本分析以确认基于能量消耗和试剂成本的吸附剂的成本。

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  • 来源
    《RSC Advances》 |2019年第2期|共11页
  • 作者单位

    Chouaib Doukkali Univ Fac Sci El Jadida Lab Catalysis &

    Corros Mat BP 20 El Jadida 24000 Morocco;

    Ibn Zohr Univ Fac Sci Mat &

    Environm Lab Agadir Morocco;

    Ibn Zohr Univ Fac Sci Mat &

    Environm Lab Agadir Morocco;

    Chouib Doukkali Univ Fac Sci El Jadida Chem Dept Team Energy Mat &

    Environm BP 20 El Jadida 24000 Morocco;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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