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以绿藻为原料制备的活性炭作为一种经济高效的吸附剂用于强化去除铜(II)的特性:在工业废水处理中的应用

Characterization of activated carbon produced from the green algae used as a cost-effective adsorbent for enhanced removal of copper(ii): application in industrial wastewater treatment.

作者信息

Djezzar Zohra, Aidi Amel, Rehali Hanane, Ziad Sbarina, Othmane Tarik

机构信息

Laboratory of LARGHYDE, University of Biskra P.O. Box 145 Biskra 07000 Algeria

Department of Industrial Chemistry, University of Biskra P.O. Box 145 Biskra 07000 Algeria.

出版信息

RSC Adv. 2024 Feb 9;14(8):5276-5289. doi: 10.1039/d3ra08678j. eCollection 2024 Feb 7.

Abstract

In this study, we prepared porous carbon (SPAC) derived from the green algae (SP), which was activated using natural lemon through pyrolysis at 600 °C for 3 h, and investigated its adsorption ability and performance towards copper ions in an aqueous solution. The physicochemical characteristics of SPAC were evaluated using FTIR, BET, SEM/EDS, XRD and pHPZC analyses and the results were compared with those of the raw algae (SP). The results indicated the presence of rich surface functional groups and that SPAC possessed a highly porous structure that increased the specific surface area by about 1.8 times compared to the SP surface ( = 71.087 m g and = 12.019 cm g). XRD indicated that the main phase of the samples was CaCO. The pH value of activated carbon was 9.25. After optimizing the effects of operational parameters, the maximum adsorption efficiency of Cu rapidly reached 95.09% after about 20 min of stirring time with an amount of 0.1 g adsorbent and an initial copper concentration of 200 mg L at an optimum pH of around 5.28 and ambient temperature of 25 °C. The pseudo-first-order (PFO) nonlinear model provided a good description of the adsorption kinetics of SPAC. The experimental equilibrium data fit the Sips and Liu models slightly better than other isotherm models. The calculated thermodynamic parameters Δ°, Δ°, and Δ° revealed that the adsorption process of Cu was spontaneous and exothermic. Physisorption was the dominant mechanism for Cu adsorption onto SPAC; SPAC was also evaluated for the adsorption of copper ions present in wastewater from the cable industry. Overall, the findings suggest that the prepared activated carbon can be employed as a cost-effective and promising adsorbent for the removal of toxic Cu from wastewater.

摘要

在本研究中,我们制备了源自绿藻(SP)的多孔碳(SPAC),通过在600℃下热解3小时使用天然柠檬对其进行活化,并研究了其对水溶液中铜离子的吸附能力和性能。使用傅里叶变换红外光谱(FTIR)、比表面积分析仪(BET)、扫描电子显微镜/能谱仪(SEM/EDS)、X射线衍射仪(XRD)和零电荷点(pHPZC)分析对SPAC的物理化学特性进行了评估,并将结果与原始藻类(SP)的结果进行了比较。结果表明存在丰富的表面官能团,并且SPAC具有高度多孔的结构,与SP表面相比,比表面积增加了约1.8倍(分别为71.087 m²/g和12.019 cm³/g)。XRD表明样品的主要相为碳酸钙。活性炭的pH值为9.25。在优化操作参数的影响后,在0.1 g吸附剂用量、初始铜浓度为200 mg/L、最佳pH约为5.28和环境温度为25℃的条件下,搅拌约20分钟后,铜的最大吸附效率迅速达到95.09%。伪一级(PFO)非线性模型很好地描述了SPAC的吸附动力学。实验平衡数据与Sips模型和Liu模型的拟合略优于其他等温线模型。计算得到的热力学参数ΔG°、ΔH°和ΔS°表明,铜的吸附过程是自发的且放热的。物理吸附是铜吸附到SPAC上的主要机制;还对SPAC吸附电缆行业废水中存在的铜离子进行了评估。总体而言,研究结果表明,制备的活性炭可作为一种经济高效且有前景的吸附剂,用于从废水中去除有毒的铜。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f91/10853850/dd745c309877/d3ra08678j-f1.jpg

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