Suppr超能文献

利用黄蜀葵籽粉快速高效吸附去除水环境中的有害吖啶橙:单因素和多因素优化研究。

Rapid and high-performance adsorptive removal of hazardous acridine orange from aqueous environment using Abelmoschus esculentus seed powder: Single- and multi-parameter optimization studies.

机构信息

Civil Engineering Department, Indian Institute of Technology Kharagpur, West Bengal, 721302, India.

Civil Engineering Department, Indian Institute of Technology Kharagpur, West Bengal, 721302, India.

出版信息

J Environ Manage. 2018 Jul 1;217:573-591. doi: 10.1016/j.jenvman.2018.03.137. Epub 2018 Apr 9.

Abstract

In this research, the performance of naturally abundant lignocellulosic by-product, Abelmoschus esculentus, and its processed seed powder referred as AESP, as a potential biosorbent for the removal of acridine orange (AO) from the aqueous environment was examined. The AESP biosorbent was characterized by field emission scanning electron microscopy (FESEM), X-ray diffraction (XRD) analysis, diffuse reflectance spectroscopy (DRS), Fourier transform infrared (FTIR) and pH analyses. The average size of the biosorbent according to particle size distribution analysis was found to be ∼132 μm. The batch adsorption experiments were conducted by altering the parameters such as contact time, solution pH, biosorbent dosage, initial dye concentration, stirring speed and temperature. Sorption of cationic AO dye onto AESP was found to be rapid, and the equilibrium condition reached within 30 min. The isotherms (Langmuir, Freundlich, Redlich-Peterson and Sips), kinetic models (pseudo-first order, pseudo-second order, Elovich, intra-particle diffusion, Bangham and modified-Freundlich models) and thermodynamic parameters were also evaluated. High values of determination coefficients (R) and minimal values of non-linear error functions (i.e. HYBRD, RMSE, MPSD, ARE, APE and χ) indicated that experimental data were best fitted with Sips isotherm and pseudo-second order kinetic model. Accordingly, the maximum loading capacity of AESP was found to be 259.4, 284.3 and 346.5 mg/g for the temperatures of 15, 30 and 45 °C, respectively. The thermodynamic parameters showed that the adsorption of AO onto the AESP surface was an endothermic and spontaneous process. Besides these, the central composite experimental design (CCD) superimposed with response surface methodology (RSM) modeling was also employed to investigate the effect of four significant parameters (solution pH, contact time, initial AO concentration and AESP dosage) and their interaction-term effects on the adsorption capacity of AESP and to formulate the mathematical model for the experimental data using multi-variate statistical analysis. Maximum dye uptake capacity under the optimum conditions of variables (pH 8.96, contact time 32.06 min, initial dye concentration 867.71 mg/L and AESP dosage 1.89 g/L) was 312.1 mg/g at temperature 30 °C, and it was found to be very close to the experimentally determined values (313.4 ± 0.057 mg/g). The promising reusability potential of AESP using 0.1 M HCl, implied that, the lignocellulosic biosorbent AESP might be helpful for the appropriate designing of the environmental-friendly purification systems.

摘要

在这项研究中,考察了天然丰富的木质纤维素副产品——蕹菜及其加工后的种子粉(简称 AESP)作为潜在的生物吸附剂,从水溶液中去除吖啶橙(AO)的性能。通过场发射扫描电子显微镜(FESEM)、X 射线衍射(XRD)分析、漫反射光谱(DRS)、傅里叶变换红外(FTIR)和 pH 分析对 AESP 生物吸附剂进行了表征。根据颗粒尺寸分布分析,发现生物吸附剂的平均尺寸约为 132 μm。通过改变接触时间、溶液 pH 值、生物吸附剂用量、初始染料浓度、搅拌速度和温度等参数进行了分批吸附实验。发现阳离子 AO 染料在 AESP 上的吸附非常迅速,在 30 min 内达到平衡条件。还评估了等温线(朗缪尔、弗伦德利希、Redlich-Peterson 和 Sips)、动力学模型(伪一级、伪二级、Elovich、内扩散、Bangham 和修正弗伦德利希模型)和热力学参数。高决定系数(R)和非线性误差函数(即 HYBRD、RMSE、MPSD、ARE、APE 和 χ)的最小值表明,实验数据与 Sips 等温线和伪二级动力学模型拟合最好。因此,AESP 的最大负载能力分别为 15、30 和 45°C 时为 259.4、284.3 和 346.5mg/g。热力学参数表明,AO 在 AESP 表面的吸附是一个吸热和自发的过程。除此之外,还采用中心复合实验设计(CCD)与响应面法(RSM)建模相结合的方法,研究了四个显著参数(溶液 pH 值、接触时间、初始 AO 浓度和 AESP 用量)及其相互作用项对 AESP 吸附能力的影响,并使用多元统计分析为实验数据制定了数学模型。在变量的最佳条件下(pH 值 8.96、接触时间 32.06 min、初始染料浓度 867.71 mg/L 和 AESP 用量 1.89 g/L),最大染料吸附容量为 312.1mg/g,温度为 30°C,这与实验测定值(313.4±0.057mg/g)非常接近。使用 0.1 M HCl 对 AESP 进行了有前途的可重复使用性研究,这意味着木质纤维素生物吸附剂 AESP 可能有助于设计环保的净化系统。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验