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Defluoridation of ground water using aluminum-coated bauxite: Optimization of synthesis process conditions and equilibrium study

机译:铝包覆铝土矿对地下水的脱氟:合成工艺条件的优化和平衡研究

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摘要

There is no known effective treatment for fluoride-related health disorders, hence prevention through water defluoridation is necessary. This study explored the possibility of modifying the physico-chemical properties of bauxite, a locally available material in many countries including Ghana, by thermal treatment and an aluminum coating, for water defluoridation. The study mainly focused on investigating the effects of varying synthesis process conditions on the defluoridation efficiency of Granular Aluminum Coated Bauxite (GACB). GACB performed better than raw bauxite (RB) and was able to reduce fluoride concentration in groundwater from 5 ± 0.2 mg/L to ≤ 1.5 mg/L, World Health Organization (WHO) guideline. Based on nonlinear Chi-square (χ~2) analysis, the best-fitting isotherm model for the fluoride-GACB system was in the order: Freundlich > Redlich-Perterson ≈ Langmuir > Temkin. The fluoride adsorption capacity of GACB (q_(max) = 12.29 mg/g) based on the Langmuir model was found to be either comparable or higher than the capacities of some reported fluoride adsorbents. Aluminum (Al) coating procedures optimized in this study could therefore be a useful approach for synthesizing an effective fluoride adsorbent using bauxite, a locally available material. Kinetic and isotherm analysis, thermody-namic calculations, as well as FTIR and Raman analysis suggested the mechanism of fluoride adsorption onto GACB was complex and involved both physical adsorption and chemisorption processes.
机译:尚无针对氟化物相关健康疾病的有效治疗方法,因此必须通过水脱氟预防。这项研究探索了通过热处理和铝涂层对水进行脱氟处理来改变铝土矿的理化特性的可能性,铝土矿是包括加纳在内的许多国家的本地可用材料。该研究主要集中于研究不同合成工艺条件对粒状铝包覆铝土矿(GACB)脱氟效率的影响。 GACB的性能优于未加工的铝土矿(RB),并且能够将地下水中的氟化物浓度从5±0.2 mg / L降低至≤1.5 mg / L(世界卫生组织(WHO)指南)。基于非线性卡方(χ〜2)分析,氟化物-GACB系统的最佳拟合等温模型的顺序为:Freundlich> Redlich-Perterson≈Langmuir> Temkin。发现基于Langmuir模型的GACB的氟化物吸附容量(q_(max)= 12.29 mg / g)与某些已报道的氟化物吸附剂相当或更高。因此,本研究中优化的铝(Al)涂层工艺可能是使用铝土矿(一种本地可得的材料)合成有效的氟化物吸附剂的有用方法。动力学和等温线分析,热力学计算以及FTIR和拉曼分析表明,氟化物在GACB上的吸附机理很复杂,涉及物理吸附和化学吸附过程。

著录项

  • 来源
    《Journal of Environmental Management》 |2016年第1期|108-117|共10页
  • 作者单位

    UNESCO-IHE, P. O Box 3015, 2601 DA, Delft, The Netherlands,Community Water and Sanitation Agency, P.O. Box 810, Tamale, Ghana,Delft University of Technology, Delft, The Netherlands;

    UNESCO-IHE, P. O Box 3015, 2601 DA, Delft, The Netherlands;

    UNESCO-IHE, P. O Box 3015, 2601 DA, Delft, The Netherlands;

    UNESCO-IHE, P. O Box 3015, 2601 DA, Delft, The Netherlands;

    Patel College of Global Sustainability, University of South Florida, Tampa, USA;

    Kwame Nkrumah University of Science and Technology, Kumasi, Ghana;

    King Abdulla University of Science and Technology, Saudi Arabia;

    UNESCO-IHE, P. O Box 3015, 2601 DA, Delft, The Netherlands,King Abdulla University of Science and Technology, Saudi Arabia;

    UNESCO-IHE, P. O Box 3015, 2601 DA, Delft, The Netherlands,Delft University of Technology, Delft, The Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fluoride; Groundwater defluoridation; Bauxite; Surface modification; Aluminum; Adsorption;

    机译:氟化物;地下水除氟;铝土矿;表面改性;铝;吸附性;

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