提高商用高岭土对水溶液中铅离子的吸附能力

Samer S. Abu-Alrub, Bandar A. Alyami, Alhassan R. Alqarih, Bader A. Dunquwah, Elias A. Alhmari
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引用次数: 0

摘要

研究了商用高岭土(KC)对铅离子(Pb+2)的吸附性能。考察了投加量、不同pH介质、不同浓度、温度等因素对吸附过程的影响。采用Langmuir模型拟合Pb+2在KC上的吸附模型,Langmuir模型参数qm、KL和R2分别为31.2、0.0014和0.9908 mg。努力解决。KC上Pb+2的qmax为31.2 mg。g-1, pH 5.7, 500 mg KC, 25℃。通过计算自由能(?G)、焓(?H)和熵(?S)来了解吸附过程的性质。负G、负H和正S分别表示吸附过程是非自发的、放热的和随机的。吸附过程采用伪二阶(PSO)模型。在刺激矿泉水和自来水样品中发现的提取率(%ER)范围为102.5% - 90.8%。该研究为开发高效和可持续的水处理和环境修复方法提供了有价值的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing The Adsorption Capacity of Commercial Kaolin for Efficient Removal of Lead Ions from Aqueous Solutions
The sorption of lead ions (Pb+2) from aqueous solutions using commercial kaolin (KC) was investigated. The effects of various factors such as dosage, different pH media, different concentration, and temperature on the adsorption process were investigated. The Langmuir model was determined to fit the Pb+2sorption model on KC. Langmuir model parameters qm, KL, and R2, were found to be 31.2, 0.0014, and 0.9908 mg.g-1 respectively. The qmax of the Pb+2 on KC was 31.2 mg.g-1 at pH 5.7, 500 mg of KC, and 25?C. Free energy (?G), enthalpy (?H), and entropy (?S) were calculated to understand the nature of the sorption process. Negative ?G, negative ?H, and positive ?S were found to indicate the adsorption process is non-spontaneous, exothermic, and random, respectively. A pseudo-second-order (PSO) model was followed for the adsorption process. The percentage extractions (%ER) found ranged from 102.5- 90.8 % for stimulation mineral water and tap water samples. This research provides valuable insights for the development of efficient and sustainable methods for water treatment and environmental remediation.
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