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Adsorption of Phenol from Aqueous Solution by Hydroxyapatite Nanopowders. Part I: Synthesis and Factors Affecting the Adsorption Characteristic Studies

机译:羟基磷灰石纳米粉粉碳磷酸盐水溶液吸附苯酚。第一部分:影响吸附特性研究的合成和因素

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In this study, the nano-hydroxyapatite (n-HAp) powders prepared by chemical precipitation method were used as the adsorbent, and the potential of n-HAp powders for the removal of phenol from aqueous solution was studied. The effect of contact time, initial phenol concentration, pH, adsorbent dosage, solution temperature and adsorbent calcining temperature on the phenol adsorption was investigated. The results showed that the n-HAp powders possessed good adsorption ability to phenol. The adsorption process was fast, and it reached equilibrium in 2h of contact. The initial phenol concentration, pH and the adsorbent calcining temperature played obvious effects on the phenol adsorption capacity onto n-HAp powders. Increase of the initial phenol concentration could effectively increase the phenol adsorption capacity. At the same time, increase of the pH to high-acidity or to high-alkalinity also resulted in the increase of the phenol adsorption capacity. Increase of the n-HAp dosage could effectively increase the phenol sorption percent. However, the higher calcining temperature of n-HAp powders could obviously decrease the adsorption capacity. The maximum phenol sorption capacity was obtained as 10.33mg/g for 400mg/L initial phenol concentrations at pH 6.4 and 60°C.
机译:在该研究中,使用化学沉淀法制备的纳米羟基磷灰石(N-HAP)粉末作为吸附剂,研究了N-HAP粉末从水溶液中除去苯酚的电位。研究了接触时间,初始酚浓度,pH,吸附剂剂量,溶液温度和吸附剂煅烧温度对苯酚吸附的影响。结果表明,N-HAP粉末具有良好的苯酚吸附能力。吸附过程快速,它在2小时内达到平衡。初始酚浓度,pH和吸附剂煅烧温度对N-Hap粉末的酚吸附能力发挥了明显的影响。初始酚浓度的增加可以有效地增加酚吸附能力。同时,将pH的pH增加到高酸度或高碱度也导致酚吸附能力的增加。 N-HAP剂量的增加可以有效地增加苯酚吸附百分比。然而,N-HAP粉末的较高煅烧温度明显降低吸附容量。在pH6.4和60℃下获得最大酚吸附能量为10.33mg / g初始酚浓度为10.33mg / g。

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