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首页> 外文期刊>Journal of Hazardous Materials >Facile method to synthesize efficient adsorbent from alumina by nitric acid activation: Batch scale defluoridation, kinetics, isotherm studies and implementation on industrial wastewater treatment
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Facile method to synthesize efficient adsorbent from alumina by nitric acid activation: Batch scale defluoridation, kinetics, isotherm studies and implementation on industrial wastewater treatment

机译:一种通过硝酸活化从氧化铝中合成高效吸附剂的简便方法:批量除氟,动力学,等温线研究及工业废水处理的实施

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摘要

The excess amount of fluoride contamination in the groundwater or industrial effluents fosters various health problems. Considering the advantages of adsorption, the current research reports the synthesis of a novel adsorbent (HNAA) by simple and convenient process of nitric acid activation of alumina. The physiochemical characterization (SEM, EDX, XRF, FTIR, BET, and pH(ZPC)) results exhibited successful activation of alumina and adsorption of fluoride ions. The effect of process parameters (contact time, initial pH, adsorbent dose, initial fluoride concentration and presence of coexisting ions) on adsorption of fluoride ions on HNAA were investigated in batch scale. The adsorption of fluoride ion on HNAA followed the Freundlich isotherm and pseudo second order kinetic model. The Q(max) of HNAA adsorbent was 45.75 mg/g at 45 degrees C. The fluoride ion adsorption was revealed to be endothermic and spontaneous. The experimentation of the HNAA adsorbent on industrial wastewater, with fluoride concentration of 17.5 mg/L, inferred the significant defluoridation potential at the optimized adsorbent dose and pH. The nitric acid activation of alumina resulted in improvement of defluoridation efficiency from 74.18% to 97.43%. The HNAA also exhibited the better regeneration and reusability features which distinguish it as a promising adsorbent to be applied for real field wastewater.
机译:地下水或工业废水中过量的氟化物污染会引发各种健康问题。考虑到吸附的优点,目前的研究报道了通过简单,方便的硝酸活化氧化铝工艺合成新型吸附剂(HNAA)。理化特性(SEM,EDX,XRF,FTIR,BET和pH(ZPC))结果显示出氧化铝的成功活化和氟离子的吸附。分批研究了工艺参数(接触时间,初始pH,吸附剂剂量,初始氟化物浓度和共存离子的存在)对氟化物在HNAA上的吸附的影响。氟离子在HNAA上的吸附遵循Freundlich等温线和伪二级动力学模型。 HNAA吸附剂的Q(max)在45摄氏度下为45.75 mg / g。氟化物离子吸附显示为吸热和自发的。在氟化物浓度为17.5 mg / L的工业废水上对HNAA吸附剂进行的实验推断出,在最佳吸附剂剂量和pH值下,显着的脱氟潜力。氧化铝的硝酸活化导致脱氟效率从74.18%提高到97.43%。 HNAA还表现出更好的再生和可重复使用性,这使其成为用于实际废水的有前途的吸附剂。

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