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Defluoridation performance and mechanism of nano-scale aluminum oxide hydroxide in aqueous solution

机译:纳米级氢氧化铝水溶液的脱氟性能及机理

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摘要

BACKGROUND: The present study has concentrated on investigating the fluoride removal potential of nano-scale aluminumoxide hydroxide (nano-AIOOH). A series of batch adsorption experiments were carried out to assess parameters that influencethe adsorption process. The different parameters investigated include the effect of contact time, initial fluoride concentration,adsorbent dose, pH of the solution and co-existing anions. RESULTS: Most of the adsorption took place during the first 30 min and kinetic and equilibrium adsorption data show that theprocess obeys a pseudo-second-order kinetic equation and the Langmuir adsorption model. The fluoride removal efficiency isgreater than 90% between pH 6 and 8 and decreases as pH values increase to 11. The presence of SO_4~(2-)or PO_4~(3-) in aqueoussolution was found to reduce the fluoride uptake. Desorption studies showed that the fluoride can easily be desorbed at pH 13. CONCLUSION: Nano-AIOOH possesses a maximum fluoride capacity of 3259 mg F~-kg~(-1), which is comparable with that ofactivated alumina. Maximum adsorption occurred at around pH 7, which makes nano-AIOOH a potential adsorbent for drinkingwater treatment.
机译:背景:本研究主要研究纳米级氢氧化铝(nano-AIOOH)的除氟潜力。进行了一系列分批吸附实验,以评估影响吸附过程的参数。研究的不同参数包括接触时间,初始氟化物浓度,吸附剂剂量,溶液的pH值和共存阴离子的影响。结果:大多数吸附发生在前30分钟内,动力学和平衡吸附数据表明该过程遵循拟二级动力学方程和Langmuir吸附模型。 pH值在6和8之间时,除氟效率大于90%,并且随着pH值增加到11而降低。在水溶液中存在SO_4〜(2-)或PO_4〜(3-)会减少氟的吸收。解吸研究表明,氟化物在pH 13时很容易解吸。结论:纳米AIOOH的最大氟化物容量为3259 mg F〜-kg〜(-1),与活性氧化铝相当。最大吸附发生在pH 7左右,这使纳米AIOOH成为饮用水处理的潜在吸附剂。

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