Preparation and characterization of CS/PAT/ MWCNT@MgAl-LDHs nanocomposite for Cd2+ removal and 4-nitrophenol reduction

IF 3 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL Journal of Environmental Health Science and Engineering Pub Date : 2024-01-18 DOI:10.1007/s40201-023-00885-8
Mohammad Saeid Rostami, Mohammad Mehdi Khodaei
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Abstract

The present study evaluated the performance of multiwalled carbon nanotube (MWCNT)@MgAl-layered double hydroxide (LDH) nanoparticles loaded on poly-2 aminothiazole (PAT)/chitosan (CS) matrix (CPML) to remove Cd2+ ions from aqueous solution. The removal efficiency of modified CS/PAT with MWCNT@MgAl-LDHs was increased significantly compared to pure CS/PAT. The influence of heavy metal ion concentration, pH, temperature, adsorbent dosage, and contact time on the adsorption was examined. The optimum conditions for the adsorption of Cd2+ ions were 25 0C with the adsorbent dosage of 0.06 g and initial concentration for adsorption of the Cd2+ 100 mg/L at pH = 8. The maximum adsorption capacity was measured to be 1106.19 mg/g. The values of thermodynamic parameters namely Gibbs free energy (ΔG°), entropy change (ΔS°), and enthalpy change (ΔH°) indicated the feasibility, spontaneity and the endothermic nature of the adsorption process, respectively. The pseudo-second-order kinetics and the Langmuir model were selected as the best models for the adsorption process. Also, CPML nanocomposite (NC) was successfully tested for p-nitrophenol (p-NP) reduction in the presence of NaBH4. The reaction was nearly completed in 6 min. The fabricated CPML-NC could be reused for three consecutive cycles.

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用于去除镉2+和还原 4-硝基苯酚的 CS/PAT/ MWCNT@MgAl-LDHs 纳米复合材料的制备与表征
本研究评估了负载在聚 2 氨基噻唑(PAT)/壳聚糖(CS)基质(CPML)上的多壁碳纳米管(MWCNT)@MgAl-层状双氢氧化物(LDH)纳米粒子去除水溶液中 Cd2+ 离子的性能。与纯 CS/PAT 相比,添加了 MWCNT@MgAl-LDHs 的改性 CS/PAT 的去除率显著提高。考察了重金属离子浓度、pH 值、温度、吸附剂用量和接触时间对吸附的影响。Cd2+ 离子的最佳吸附条件为 25 0C,吸附剂用量为 0.06 g,吸附 Cd2+ 的初始浓度为 100 mg/L,pH = 8。测得最大吸附容量为 1106.19 毫克/克。热力学参数值,即吉布斯自由能(ΔG°)、熵变(ΔS°)和焓变(ΔH°)分别表明了吸附过程的可行性、自发性和内热性。假二阶动力学和 Langmuir 模型被选为吸附过程的最佳模型。此外,还成功地测试了 CPML 纳米复合材料(NC)在 NaBH4 存在下的对硝基苯酚(p-NP)还原反应。反应几乎在 6 分钟内完成。制备的 CPML-NC 可连续重复使用三次。
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来源期刊
Journal of Environmental Health Science and Engineering
Journal of Environmental Health Science and Engineering ENGINEERING, ENVIRONMENTAL-ENVIRONMENTAL SCIENCES
CiteScore
7.50
自引率
2.90%
发文量
81
期刊介绍: Journal of Environmental Health Science & Engineering is a peer-reviewed journal presenting timely research on all aspects of environmental health science, engineering and management. A broad outline of the journal''s scope includes: -Water pollution and treatment -Wastewater treatment and reuse -Air control -Soil remediation -Noise and radiation control -Environmental biotechnology and nanotechnology -Food safety and hygiene
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