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基于稻壳的多孔SiO@C吸附剂的绿色简便合成:制备、表征及其在去除水溶液中活性红120的应用

Green and Facile Synthesis of Porous SiO@C Adsorbents from Rice Husk: Preparation, Characterization, and Their Application in Removal of Reactive Red 120 in Aqueous Solution.

作者信息

Toan Tran Quoc, Ngan Tran Kim, Huong Do Tra, Le Phuoc-Anh, Thuy Nguyen Thi, Huy Nguyen Nhat, Thanh Dang Van, Khai Nguyen Manh, Thi Mai Nguyen

机构信息

Faculty of Chemistry, Thai Nguyen University of Education, 20 Luong Ngoc Quyen, Thái Nguyên 25000, Vietnam.

Institute of Sustainability Science, VNU Vietnam Japan University, Vietnam National University, Hanoi 10000, Vietnam.

出版信息

ACS Omega. 2023 Mar 7;8(11):9904-9918. doi: 10.1021/acsomega.2c07034. eCollection 2023 Mar 21.

Abstract

In this work, a green, novel, fast, and facile approach for synthesizing a SiO/C nanocomposite series from rice husk (RH) through quenching and grinding techniques has been reported along with its application for the adsorptive removal of Reactive Red 120 (RR120) dye from an aqueous solution. The effect of carbonization temperature on the textural and interfacial features of RH was confirmed by scanning electron microscopy (SEM), while the structure and elemental composition of the as-synthesized RH were investigated via XRD, Brunauer-Emmett-Teller (BET), FT-IR, Raman, and X-ray photoelectron spectroscopy (XPS). The RH had a high surface area (521.35 m g), large micropores, mesopores, and total pore volumes of 0.5059, 3.9931, and 5.2196 cm g, while SiO and C were the two major components. In the batch adsorption test, the effects of pH, contact time, adsorbent mass, temperature, and initial RR120 concentration were investigated. The maximum adsorption capacity was fitted by Langmuir, Freundlich, Temkin, Dubinin-Radushkevich (D-R), Hasley, Harkins-Jura, and BET isotherm models, and Langmuir was the best-fitted model. In addition, the pseudo-first-order, pseudo-second-order, intraparticle diffusion, and Elovich chemisorption models were used to explain the adsorption kinetics. Additionally, the values of Gibbs free energy, enthalpy, and entropy thermodynamics suggested that the RR120 adsorption phenomenon by RH8-3 was endothermic and spontaneous. The adsorption process was controlled by a physical mechanism, and the maximum adsorption capacity was found to be 151.52 mg g at pH 2, with a contact time of 90 min, adsorbent amount of 0.03 g, and temperature of 313 K. The adopted technique may open up a new alternative route for the mass utilization of RH for the removal of dyes in water and wastewater and also for various practical applications.

摘要

在这项工作中,报告了一种通过淬火和研磨技术从稻壳(RH)合成SiO/C纳米复合材料系列的绿色、新颖、快速且简便的方法,以及其用于从水溶液中吸附去除活性红120(RR120)染料的应用。通过扫描电子显微镜(SEM)确认了碳化温度对RH的纹理和界面特征的影响,同时通过XRD、布鲁诺尔-埃米特-泰勒(BET)、傅里叶变换红外光谱(FT-IR)、拉曼光谱和X射线光电子能谱(XPS)研究了合成后的RH的结构和元素组成。RH具有高比表面积(521.35 m²/g)、大微孔、中孔,总孔体积分别为0.5059、3.9931和5.2196 cm³/g,而SiO和C是两个主要成分。在间歇吸附试验中,研究了pH值、接触时间、吸附剂质量、温度和初始RR120浓度的影响。通过朗缪尔、弗伦德里希、坦金、杜比宁-拉杜舍维奇(D-R)、哈斯利、哈金斯-朱拉和BET等温线模型拟合最大吸附容量,其中朗缪尔模型拟合效果最佳。此外,使用准一级、准二级、颗粒内扩散和埃洛维奇化学吸附模型来解释吸附动力学。此外,吉布斯自由能、焓和熵的热力学值表明,RH8-3对RR120的吸附现象是吸热且自发的。吸附过程由物理机制控制,在pH为2、接触时间为90分钟、吸附剂用量为0.03 g、温度为313 K时,最大吸附容量为151.52 mg/g。所采用的技术可能为大规模利用RH去除水和废水中的染料以及各种实际应用开辟一条新的替代途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af08/10034781/e5e01a9ea637/ao2c07034_0002.jpg

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