首页> 外文期刊>International journal of environmental analytical chemistry >Flow injection determination of cyromazine in natural water samples using diperiodatoargentate(III)-H2SO4-chemiluminescence system
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Flow injection determination of cyromazine in natural water samples using diperiodatoargentate(III)-H2SO4-chemiluminescence system

机译:二硬脂酸(III)-H2SO4-化学发光系统流动注射测定自然水样中的环丙嗪

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摘要

A simple and sensitive chemiluminescence (CL) procedure is proposed for the determination of cyromazine (CYR) using flow injection technique. CYR has strong enhancing effect on the CL reaction of diperiodatoargentate-(III) complex (DPA) in H2SO4 medium. The CL intensity with solid phase extraction (SPE) technique and with and without using online ion exchange resin column (IERC; OH-form) was proportional to the concentration of CYR over the range 0.1-200, 10-1000 and 2-2500 mu g L-1 (R-2 = 0.9974, 0.9980 and 0.9990, n = 7 each), respectively. Under the conditions, the limits of detection (S/N = 3) 0.029, 2.5 and 0.5 mu g L-1, relative standard deviations (n = 3) 1.9-3.6%, 1.4-2.7% and 1.0-3.0% and sample throughputs were 120, 80 and 120 h(-1). The effect of reagents concentration, flow rate, sample loop volume, photomultiplier voltage and IERC length was optimised. The mean results for natural water samples analysed by the proposed method were not significantly different at 95% confidence limit with the previously reported HPLC method. Interference from chloride ions could be eliminated by using SPE procedure or incorporating an in-line IERC. The CL mechanism of DPA-H2SO4-CYR system was also discussed briefly.
机译:提出了一种简单而灵敏的化学发光(CL)方法,用于使用流动注射技术测定环丙嗪(CYR)的方法。 CYR对H2SO4培养基中的硬脂酸双(III)络合物(DPA)的CL反应具有很强的增强作用。使用和不使用在线离子交换树脂柱(IERC; OH-形式)的固相萃取(SPE)技术的CL强度与CYR浓度成正比,范围为0.1-200、10-1000和2-2500μ g L-1(R-2 = 0.9974、0.9980和0.9990,n = 7)。在这种条件下,检出限(S / N = 3)为0.029、2.5和0.5μg L-1,相对标准偏差(n = 3)为1.9-3.6%,1.4-2.7%和1.0-3.0%和样品吞吐量分别为120、80和120 h(-1)。优化了试剂浓度,流速,样品定量环体积,光电倍增管电压和IERC长度的影响。通过提议的方法分析的天然水样品的平均结果与先前报道的HPLC方法在95%置信限下没有显着差异。氯离子的干扰可以通过使用SPE程序或并入在线IERC消除。还简要讨论了DPA-H2SO4-CYR系统的CL机理。

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