壳聚糖-膨润土复合吸附水溶液中除草剂草甘膦

IF 3 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Lama Rissouli, Mohamed Chabbi, Mohamed Berradi, Abdesselam Eddaoukhi, Ikram Chaer, Fatima Znagui, Ahmed El Yacoubi, Abderrahim El Bachiri, Tarik Chafik, Said Zantar, Mohamed Benicha
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引用次数: 0

摘要

这项研究强调了壳聚糖-膨润土复合材料作为传统吸附剂的环保和经济替代品的使用,传统吸附剂通常昂贵且不易获得。采用壳聚糖-膨润土复合材料(CBC)制备了壳聚糖/膨润土复合材料(2/1、2/2、2/4、2/8和2/10),以去除受污染的水溶液中的草甘膦。利用x射线衍射(XRD)、傅里叶变换红外光谱(FTIR)和扫描电子显微镜(SEM)等互补技术对CBC样品进行了表征。傅里叶红外光谱显示,OH +在3630厘米(⁻1)和- nh2 +和- nh3 +在1517厘米(⁻1)处发生振动,表明壳聚糖和膨润土之间存在静电作用。在CBC 2/8和CBC 2/10中,由于壳聚糖含量低,1514 cm的NH₂带不存在。XRD分析表明,壳聚糖与膨润土的相互作用显著改变了膨润土的结晶特性,降低了膨润土的结晶度,使反射峰移位,表明壳聚糖的插层作用是有效的。SEM图像显示壳聚糖为无孔片层结构,复合材料孔隙率降低,表明复合材料在相互作用后发生剥落。吸附研究表明,质量比对草甘膦的吸附能力有影响,CBC 2/8的吸附性能最好。吸附参数分析表明,壳聚糖与膨润土的比例为2/8,平衡吸附量为1.18 mg/g,对草甘膦的去除效果最好。最佳吸附条件为:pH为3.76,CBC吸附剂用量为50 mg,草甘膦初始浓度为10 mg/L,接触时间为8 h。CBC /8复合材料的吸附随着浓度的增加而增加,达到2.8 mg/g的平衡吸附(Ce = 10.98 mg/L)。s型等温线表明草甘膦是单功能的,分子间相互作用适中。Langmuir模型表明,最大吸附量(qm)为133 mg/g,具有中等亲和力(KL = 0.0018 L/mg)。Freundlich模型吸附强度系数(n)为0.912,吸附效果较好,χ2(0.450)和SSE(0.330)值较低,拟合效果稍好。与昂贵的合成材料相比,CBC复合材料为废水净化提供了一种经济无毒的选择,在去除草甘膦方面提供了适度但有希望的结果。这项研究强调了壳聚糖基复合材料为农业污染物管理提供可行和可持续解决方案的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Chitosan-Bentonite composite adsorption of herbicide glyphosate from water solution

Chitosan-Bentonite composite adsorption of herbicide glyphosate from water solution

This study highlights the use of Chitosan-Bentonite composites as an eco-friendly and cost-effective alternative to traditional adsorbents, which are often expensive and less accessible. Chitosan-Bentonite composite (CBC) samples with various chitosan/bentonite ratios (2/1, 2/2, 2/4, 2/8, and 2/10) were developed to remove glyphosate, one of the most widely used herbicides globally, from contaminated aqueous solutions. The CBC samples were characterized using complementary techniques such as X-ray diffraction (XRD), Fourier-transform infrared spectroscopy (FTIR) and scanning electron microscopy (SEM) analyses were performed. FTIR revealed OH vibrations at 3630 cm⁻1 and -NH₂ and -NH₃⁺ at 1517 cm⁻1, indicating electrostatic interactions between chitosan and bentonite. The NH₂ band at 1514 cm⁻1 was absent in CBC 2/8 and CBC 2/10 due to low chitosan content. XRD analysis showed that the interaction between chitosan and bentonite significantly altered crystalline characteristics, reducing bentonite crystallinity and shifting reflection peaks, indicating effective chitosan intercalation. SEM images showed a non-porous lamellar structure for chitosan and reduced porosity in the composites, indicating exfoliation after interaction. The adsorption study revealed that the mass ratio influenced glyphosate adsorption capacity, with CBC 2/8 showing the best performance. Adsorption parameter analysis showed that the 2/8 Chitosan-Bentonite ratio, with an equilibrium adsorption capacity of 1.18 mg/g, was the most effective for glyphosate removal. Optimal conditions were found at pH 3.76, using 50 mg of CBC adsorbent, an initial glyphosate concentration of 10 mg/L, and a contact time of 8 h. Adsorption on the CBC 2/8 composite increased with concentration, reaching 2.8 mg/g at equilibrium (Ce = 10.98 mg/L). The S-type isotherm suggested that glyphosate is monofunctional with moderate intermolecular interactions. The Langmuir model indicated a maximum adsorption capacity (qm) of 133 mg/g with moderate affinity (KL = 0.0018 L/mg). The Freundlich model, with an adsorption intensity coefficient (n) of 0.912, showed favorable adsorption, while low χ2 (0.450) and SSE (0.330) values indicated a slightly better fit to the data. Compared to costly synthetic materials, the CBC composite provides an economical and non-toxic option for wastewater decontamination, offering moderate but promising results for glyphosate removal. This study highlights the potential of chitosan-based composites to provide viable and sustainable solutions for managing agricultural pollutants.

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来源期刊
Environmental Monitoring and Assessment
Environmental Monitoring and Assessment 环境科学-环境科学
CiteScore
4.70
自引率
6.70%
发文量
1000
审稿时长
7.3 months
期刊介绍: Environmental Monitoring and Assessment emphasizes technical developments and data arising from environmental monitoring and assessment, the use of scientific principles in the design of monitoring systems at the local, regional and global scales, and the use of monitoring data in assessing the consequences of natural resource management actions and pollution risks to man and the environment.
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