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化学改性树皮中 Pb(II) 离子的去除潜力。

Pb(II) Ion Removal Potential in Chemically Modified Barks.

机构信息

Environmental and Sanitary Engineering Course, Federal Institute of Education, Science and Technology-Campus Juazeiro do Norte, Juazeiro do Norte 63048-080, Brazil.

Department of Biological Chemistry, Regional University of Cariri, Crato 63105-010, Brazil.

出版信息

Int J Environ Res Public Health. 2022 Dec 5;19(23):16283. doi: 10.3390/ijerph192316283.

Abstract

In this study, five types of modified Ziziphus joazeiro barks were investigated for the removal of Pb(II) ions from aqueous solutions. The samples tested were natural barks, natural powder, washed with water, ethanol at 80% (EE) and 0.5 N NaOH. Batch kinetics experiments were performed under the conditions: 24−25 °C, pH 5.5−5.8, 102 mg·L−1 Pb(NO3)2, 100 rpm and 0.1 g of adsorbent, and analyses of pHpzc and Fourier transform infrared spectroscopy. All adsorbents tested showed potential to remove Pb(II) ions, but the adsorbent washed by 0.5 N NaOH obtained the highest experimental performance (25.5 mg·g−1 at 30 min), while the EE had the least performance (20.4 mg·g−1 at 60 min), and maximum removals of 99.9%. The kinetic models pointed to a probable chemisorption due to the best fit of pseudo-second order and Elovich, and Boyd’s model, suggesting that intraparticle diffusion limits the adsorption until the initial minutes of contact. The Langmuir isotherm fitted better to the experimental data for the NaOH adsorbent, with maximum adsorption capacity equal to 62.5 mg·g−1, although the Temkin model partially fitted, both suggesting the occurrence of chemisorption. The adsorption process is reversible (>81% at 20 min) and hence the adsorbents can be recycled and the Pb(II) ions recovered.

摘要

在这项研究中,五种改性酸枣树皮被用于从水溶液中去除 Pb(II)离子。测试的样品有天然树皮、天然粉末、用水、80%乙醇和 0.5 N NaOH 洗涤过的树皮。在以下条件下进行批处理动力学实验:24-25℃,pH 5.5-5.8,102 mg·L-1 Pb(NO3)2,100 rpm 和 0.1 g 吸附剂,以及 pHpzc 和傅里叶变换红外光谱分析。所有测试的吸附剂都显示出去除 Pb(II)离子的潜力,但用 0.5 N NaOH 洗涤过的吸附剂表现出最高的实验性能(30 分钟时为 25.5 mg·g-1),而 EE 的性能最低(60 分钟时为 20.4 mg·g-1),最大去除率为 99.9%。动力学模型表明可能发生了化学吸附,因为伪二级和 Elovich 以及 Boyd 模型的拟合度最好,表明内扩散限制了吸附,直到接触的最初几分钟。NaOH 吸附剂的 Langmuir 等温线更适合实验数据,最大吸附容量等于 62.5 mg·g-1,尽管 Temkin 模型部分拟合,这两种模型都表明发生了化学吸附。吸附过程是可逆的(20 分钟时大于 81%),因此吸附剂可以回收并回收 Pb(II)离子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/235b/9736088/b1c9a92ac3a7/ijerph-19-16283-g001.jpg

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