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基于新型农业废弃物(香蕉皮和土豆皮)的生物炭/TiO纳米复合材料的制备及其对Cr(VI)的吸附:通过响应面法进行统计优化

Fabrication of Novel Agrowaste (Banana and Potato Peels)-Based Biochar/TiO Nanocomposite for Adsorption of Cr(VI), Statistical Optimization via RSM Approach.

作者信息

Ashfaq Aamna, Nadeem Raziya, Gong Hongyu, Rashid Umer, Noreen Saima, Rehman Shafique Ur, Ahmed Zubair, Adil Muhammad, Akhtar Nayab, Ashfaq Muhammad Zeeshan, Alharthi Fahad A, Kazerooni Elham Ahmed

机构信息

Key Laboratory for Liquid-Solid Structural Evolution & Processing of Materials, Ministry of Education, School of Materials Science and Engineering, Shandong University, Jinan 250061, China.

Department of Chemistry, University of Agriculture, Faisalabad 38040, Pakistan.

出版信息

Polymers (Basel). 2022 Jun 29;14(13):2644. doi: 10.3390/polym14132644.

Abstract

In this research work, a simple, efficient, and eco-friendly procedure for the biosorption of Cr(VI) ions was studied. A detailed comparative study was performed to check the adsorption efficiency of agrowaste (banana and potato peels)-based adsorbents. Firstly, mixed biosorbent was washed, dried and ground into powder, secondly, biosorbent was pyrolyzed into biochar and thirdly TiO nanocomposite (TiO NC) biosorbent was made by sonicating using prepared biochar and TiO NPs. Titanium dioxide nanoparticles (TiO NPs) were synthesized by a green method using leaf extract. The synthesized adsorbents were characterized by SEM, EDX FT-IR, XRD and UV-visible analysis. The effect of four different factors, i.e., pH of the synthetic metallic solution, time, concentration and adsorbent dosage was studied. The optimum conditions were time (120 min), pH (3), concentration (10 ppm) and adsorbent dosage (1.0 g). The kinetic modeling showed that the adsorption of Cr(VI) ion follows a pseudo second-order mechanism and the Langmuir isotherm model was found to fit better for this study. Response surface methodology (RSM)-based optimized parameters provided optimal parameter sets that better represent the adsorption rate models. The uptake capacity of Cr(VI) from aqueous solution was found to be biomass (76.49 mg/L) ˂ biochar (86.51 mg/L) ˂ TiO NC (92.89 mg/L). It can be suggested that the produced TiO NC could possibly be an efficient biosorbent for the removal of Cr(IV).

摘要

在这项研究工作中,研究了一种用于生物吸附六价铬离子的简单、高效且环保的方法。进行了详细的对比研究,以检验基于农业废弃物(香蕉皮和土豆皮)的吸附剂的吸附效率。首先,将混合生物吸附剂洗涤、干燥并研磨成粉末,其次,将生物吸附剂热解为生物炭,第三,使用制备的生物炭和二氧化钛纳米颗粒通过超声处理制备二氧化钛纳米复合材料(TiO NC)生物吸附剂。采用绿色方法利用树叶提取物合成了二氧化钛纳米颗粒(TiO NPs)。通过扫描电子显微镜(SEM)、能量散射X射线光谱(EDX)、傅里叶变换红外光谱(FT-IR)、X射线衍射(XRD)和紫外可见光谱分析对合成的吸附剂进行了表征。研究了四个不同因素,即合成金属溶液的pH值、时间、浓度和吸附剂用量的影响。最佳条件为时间(120分钟)、pH值(3)、浓度(10 ppm)和吸附剂用量(1.0克)。动力学模型表明,六价铬离子的吸附遵循准二级动力学机制,并且发现朗缪尔等温线模型更适合本研究。基于响应面法(RSM)优化的参数提供了能更好地代表吸附速率模型的最佳参数集。发现从水溶液中吸附六价铬的能力为生物质(76.49毫克/升)<生物炭(86.51毫克/升)<TiO NC(92.89毫克/升)。可以认为,所制备的TiO NC可能是一种用于去除四价铬的高效生物吸附剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d85d/9269232/b6da38f45e92/polymers-14-02644-g001.jpg

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