活性炭纳米颗粒吸附剂去除水中镉离子的热力学研究

Suraa Reaad, R. M. Dadoosh, B. Jasim, N. Aboud, Abduljabar Sabah Hussain
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引用次数: 1

摘要

矿物燃料燃烧、汽车尾气、采矿、农业、固体和液体废物的焚烧等人类活动都造成了重金属对水体的污染,因此这种水中毒对生物构成了威胁。为了尽量减少对天然水体的污染,作为溶液中金属的吸附过程,确定有效的去除这些毒素的策略至关重要。本研究涉及天然来源(大麦)的新型活性炭纳米颗粒(AC)的表征和合成,并应用于吸附去除镉金属的研究。(AC)通过XRD、SEM进行表征,尺寸为纳米级,形状为颗粒状,吸附比表面积为(718.01),平均孔径为(16.851(Å)),从吸附实验数据来看,Freundlich等温线模型最能描述吸附结果,放热过程的吸附去除率为76.86%。
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Activated Carbon Nanoparticles as Adsorbent to Remove the Cadmium Ion from Aqueous Solution: Thermodynamic Study
Human activities such as fossil fuel burning, car exhaust, mining, agriculture, and the incineration of solid and liquid wastes all contribute to water pollution by heavy metals, therefore this water poisoning poses a threat to living beings. To minimize the pollution of the natural waters, As the adsorption process of metal in solutions, it is critical to identify effective strategies for getting rid of these toxins. This study involves the characterization and synthesis of novel activated carbon nanoparticles (AC) from natural sources (barley) and is applied in an adsorption study to remove cadmium metal. (AC) characterization using XRD, SEM and it was nanoscale in size and particle-like in shape also BET for specific surface area nitrogen adsorption isotherm nitrogen) 718.01 ) and Average pore diameter as (16.851(Å)), from the adsorption experimental data, the results are best described by the Freundlich isotherm model, which has an adsorption removal 76.86% with exothermic process.
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