Kheirandish Shadi, Ghaedi Mehrorang, Dashtian Kheibar, Pourebrahim Faezeh
Department of Chemistry, Yasouj University, Yasouj 75918-74831, Iran.
Department of Chemistry, Yasouj University, Yasouj 75918-74831, Iran.
Ultrason Sonochem. 2017 Nov;39:798-809. doi: 10.1016/j.ultsonch.2017.06.006. Epub 2017 Jun 10.
In this work, we focused on development of a new techniques by coupling of ultrasound irradiation, cloud point method and magnetite solid phase microextraction for the extraction and preconcentration of Cr(III) ions from aqueous solutions. In order to reduce cost and improve practicability of proposed process a new efficient and regenerable magnetite sorbent (functionalized chitosan grafted-amino graphene oxide (GO) decorated by zinc ferrite nanoparticles (CS-GO-Zn: FeO)) was synthesized through hydrothermal method and then characterized by FT-IR, FE-SEM, EDS and XRD analysis. Effect of initial sample volume and type, volume and concentration of eluent on the ER% were investigated and optimized using one at a time method. Correlation between the main and interaction effects of other operational parameters such as Cr(III) ion concentration, CS-GO-Zn: FeO mass, sonication time, pH and solution temperature on the ER% were investigated and optimized by central composite design coupled with desirability function approach. The results revealed that there were significant effects for most investigated terms on the ER% and maximum ER% of 88.09% was obtained in desirability value of 1.0. This maximum efficiency was obtained at 0.035µg/mL Cr(III) ion concentration, 40.16°C temperature, 0.016g of CS-GO-Zn: FeO, pH 6.36 and 9.20min sonication time. In addition, under the optimal conditions the linear range, limit of detection, enrichment factor and relative standard deviation were found to be 0.02-4.4µg/mL, 0.002µg/mL, 23.23 and 1.68% respectively. Finally, the method was successfully applied to the separation and preconcentration of Cr(III) ion from tap, river and mineral waters.
在本研究中,我们致力于开发一种新技术,该技术通过超声辐照、浊点法和磁铁矿固相微萃取相结合,用于从水溶液中萃取和预富集Cr(III)离子。为了降低成本并提高所提方法的实用性,通过水热法合成了一种新型高效且可再生的磁铁矿吸附剂(由锌铁氧体纳米颗粒修饰的功能化壳聚糖接枝氨基氧化石墨烯(CS-GO-Zn:FeO)),然后通过傅里叶变换红外光谱(FT-IR)、场发射扫描电子显微镜(FE-SEM)、能谱分析(EDS)和X射线衍射(XRD)分析对其进行表征。采用一次只改变一个变量的方法研究并优化了初始样品体积、洗脱剂类型、体积和浓度对萃取率(ER%)的影响。通过中心复合设计结合期望函数法研究并优化了其他操作参数(如Cr(III)离子浓度、CS-GO-Zn:FeO质量、超声时间、pH值和溶液温度)的主要效应和交互效应与ER%之间的相关性。结果表明,大多数研究因素对ER%都有显著影响,在期望度值为1.0时获得了88.09%的最大ER%。该最大效率是在Cr(III)离子浓度为0.035µg/mL、温度为40.16°C、CS-GO-Zn:FeO质量为0.016g、pH值为6.36和超声时间为9.20min的条件下获得的。此外,在最佳条件下,线性范围、检测限、富集因子和相对标准偏差分别为0.02 - 4.4µg/mL、0.002µg/mL、23.23和1.68%。最后该方法成功应用于从自来水、河水和矿泉水中分离和预富集Cr(III)离子。