Water Science and Technology 2012-01-01

Ultrasonic-assisted cloud point extraction for determination of nickel in water samples by flame atomic absorption spectrometry.

Jun Song, Wei Zhen, Zonghao Li, Yuanpei Lian, Yaling Yang

Index: Water Sci. Technol. 66 , 792, (2012)

Full Text: HTML

Abstract

A novel method for the determination of nickel was established by ultrasonic-assisted cloud point extraction (UA-CPE) prior to flame atomic absorption spectrometry (FAAS) analysis. The nickel reacted with N,N'-bis(salicylidene)-1,2-ethanediamine (BSE) to form hydrophobic chelates, which were extracted into the micelles of alpha-[3,5-dimethyl-1-(2-methylpropyl)hexyl]-omega- poly(oxy-2-ethanediyl) (Tergitol TMN-6). Tergitol TMN-6 was used as green nonionic surfactant. BSE was synthesized and checked by nuclear magnetic resonance (NMR) spectra. The phase diagrams of the binary system, water-surfactant (Tergitol TMN-6), and the ternary systems, water-surfactant-salt, were determined. The effects of experimental conditions including pH of sample solution, concentration of chelating agent and surfactant, ultrasonic power, equilibration temperature and incubation time were evaluated in order to enhance sensitivity of the method. Under the optimal conditions, the calibration graph was linear in the range of 10-500 μg L(-1). The values obtained for the limit of detection and enrichment factor were 1.0 μg L(-1) and 30, respectively. The method was successfully applied to the analysis of nickel in water samples.


Related Compounds

Related Articles:

Uniaxial repetitive mechanical overloading induces influx of extracellular calcium and cytoskeleton disruption in human tenocytes.

2015-02-01

[Cell Tissue Res. 359(2) , 577-87, (2015)]

Microtubule plus-end tracking by CLIP-170 requires EB1.

2009-01-13

[Proc. Natl. Acad. Sci. U. S. A. 106 , 492-7, (2009)]

Zinc oxide nanoparticles as selective killers of proliferating cells.

2011-01-01

[Int. J. Nanomedicine 6 , 1129-40, (2011)]

3D Bioprinting Using a Templated Porous Bioink.

2016-07-01

[Adv. Healthc. Mater. , doi:10.1002/adhm.201600022, (2016)]

Intestinal scavenger receptor class B type I as a novel regulator of chylomicron production in healthy and diet-induced obese states.

2015-09-01

[Am. J. Physiol. Gastrointest. Liver Physiol. 309 , G350-9, (2015)]

More Articles...