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Kinetic approach for cadmium sorption using microwave synthesized nano-hydroxyapatite

机译:微波合成纳米羟基磷灰石吸附镉的动力学方法

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摘要

Nano-crystalline hydroxyapatite adsorbent that was prepared by microwave processing was utilized for cadmium removal from aqueous solutions using the batch technique. Cadmium sorption on the prepared adsorbent was studied as a function of initial cadmium concentration in the aqueous solution, adsorbent dosage, agitation speed, hydrogen ion concentration of the aqueous solution (pH), and the solution temperature. The highest Cd~(2+) sorption was achieved at agitation rate of 500 rpm. The sorption process was relatively fast and equilibrium was achieved after about 240 min of contact. The optimum sorption of cadmium occurred at pH range 4-7. The kinetic process of Cd ~(2+) sorption onto the synthesized nano-hydroxyapatite was tested by applying the pseudo-first order, the pseudo-second order, the simple Elovich and intraparticle diffusion rate models. The sorption process follows a pseudo second-order kinetics with a contribution of intraparticle diffusion. Thermodynamic parameters ΔH, ΔS and ΔG have been calculated. Positive value of ΔH and negative value of ΔG show endothermic and spontaneous nature of sorption respectively. The relatively small value of the activation energy that equal to 8.61 kJ/mol confirms that cadmium sorption process is diffusion controlled. The main mechanism for cadmium ions removal using the synthesized nano-hydroxyapatite was suggested to be ion-exchange and diffusion controlled.
机译:通过分批技术,通过微波处理制备的纳米晶体羟基磷灰石吸附剂用于从水溶液中去除镉。研究了在制备的吸附剂上镉的吸附量与水溶液中初始镉浓度,吸附剂用量,搅拌速度,水溶液中氢离子浓度(pH)和溶液温度之间的关系。在500 rpm的搅拌速率下实现了最高的Cd〜(2+)吸附。吸附过程相对较快,接触约240分钟后即可达到平衡。镉的最佳吸附发生在4-7的pH范围内。通过应用拟一阶,拟二阶,简单的Elovich和粒子内扩散速率模型,测试了Cd〜(2+)吸附到合成的纳米羟基磷灰石上的动力学过程。吸附过程遵循伪二级动力学,具有颗粒内扩散的作用。已经计算出热力学参数ΔH,ΔS和ΔG。 ΔH的正值和ΔG的负值分别表示吸热和自发吸附性质。活化能的相对较小的值等于8.61 kJ / mol,这表明镉的吸附过程是受扩散控制的。有人建议使用合成的纳米羟基磷灰石去除镉离子的主要机理是离子交换和扩散控制。

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