Majedi Seyed Mohammad, Kelly Barry C, Lee Hian Kee
Department of Chemistry, National University of Singapore, 3 Science Drive 3, Singapore, 117543, Singapore.
Environ Sci Pollut Res Int. 2014 Oct;21(20):11811-22. doi: 10.1007/s11356-013-2381-7. Epub 2013 Nov 29.
Cloud point extraction (CPE) factors, namely Triton X-114 (TX-114) concentration, pH, ionic strength, incubation time, and temperature, were optimized for the separation of nano-sized copper(II) oxide (nCuO) in aqueous matrices. The kinetics of phase transfer was studied using UV-visible spectroscopy. From the highest separation rate, the most favorable conditions were observed with 0.2 % w/v of TX-114, pH = 9.0, ionic strength of 10 mM NaCl, and incubation at 40 °C for 60 min, yielding an extraction efficiency of 89.2 ± 3.9 % and a preconcentration factor of 86. The aggregate size distribution confirmed the formation of very large nCuO-micelle assemblies (11.9 μm) under these conditions. The surface charge of nCuO was also diminished effectively. An extraction efficiency of 91 % was achieved with a mixture of TX-100 and TX-114 containing 30 wt.% of TX-100. Natural organic and particulate matters, represented by humic acid (30 mg/L) and micron-sized silica particles (50 mg/L), respectively, did not significantly reduce the CPE efficiency (<10 %). The recovery of copper(II) ions (20 mg/L) in the presence of humic acid was low (3-10 %). The spiked natural water samples were analyzed either directly or after CPE by inductively coupled plasma mass spectrometry following acid digestion/microwave irradiation. The results indicated the influence of matrix effects and their reduction by CPE. A delay between spiking nCuO and CPE may also influence the recovery of nCuO due to aggregation and dissolution. A detection limit of 0.04 μg Cu/L was achieved for nCuO.
对浊点萃取(CPE)因素,即曲拉通X-114(TX-114)浓度、pH值、离子强度、孵育时间和温度进行了优化,以分离水相基质中的纳米级氧化铜(nCuO)。使用紫外-可见光谱研究了相转移动力学。从最高分离率来看,在TX-114为0.2% w/v、pH = 9.0、离子强度为10 mM NaCl且在40℃孵育60分钟的条件下观察到最有利的情况,萃取效率为89.2±3.9%,预富集因子为86。聚集体尺寸分布证实了在这些条件下形成了非常大的nCuO-胶束聚集体(11.9μm)。nCuO的表面电荷也得到了有效降低。含30 wt.% TX-100的TX-100和TX-114混合物实现了91%的萃取效率。分别以腐殖酸(30 mg/L)和微米级二氧化硅颗粒(50 mg/L)为代表的天然有机物和颗粒物并未显著降低CPE效率(<10%)。在腐殖酸存在下,铜(II)离子(20 mg/L)的回收率较低(3-10%)。对加标天然水样直接或在CPE后通过酸消解/微波辐照后的电感耦合等离子体质谱进行分析。结果表明了基质效应的影响以及CPE对其的降低作用。在加入nCuO和进行CPE之间的延迟也可能由于聚集和溶解而影响nCuO的回收率。nCuO的检测限为0.04 μg Cu/L。