首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Improvement of direct determination of Cu and Mn in seawater by GFAAS and total elimination of the saline matrix with the use of hydrofluoric acid
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Improvement of direct determination of Cu and Mn in seawater by GFAAS and total elimination of the saline matrix with the use of hydrofluoric acid

机译:改进的石墨炉原子吸收光谱法直接测定海水中的铜和锰,并使用氢氟酸完全消除盐分基质

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摘要

Hydrofluoric acid,added to seawater,can assist in the removal of chloride in the drying step by precipitating fluoride salts,thus suppressing the chloride interference effects induced on the atomization signals of Cu and Mn.By adding HF to seawater before the analysis,MgF_2 and CaF_2 are precipitated at the bottom of the sampling flask,without precipitating Cu and Mn,and are consequently not introduced into the graphite furnace.Because sodium salts are eliminated at the pretreatment step,the whole seawater matrix is eliminated before the atomization of Cu or Mn.Therefore,the analyzed volume of seawater can be increased by using the multi-injection procedure without degradation of the limit of detection and risks of spectral interferences.The limit of detection obtained for Cu and Mn are 0.05 and 0.01 mug L~(-1),respectively,for a 50 muL analyzed seawater volume.
机译:添加到海水中的氢氟酸可以通过沉淀氟化物盐帮助干燥步骤中的氯化物去除,从而抑制了对铜和锰雾化信号引起的氯化物干扰作用。通过在分析前向水中添加HF,MgF_2和CaF_2沉淀在采样瓶的底部,没有铜和锰的沉淀,因此没有引入石墨炉中。由于在预处理步骤中除去了钠盐,整个海水基质在雾化铜或锰之前被去除了因此,通过多次注入程序可以增加分析的海水量,而不会降低检出限和光谱干扰的风险.Cu和Mn的检出限分别为0.05和0.01马克杯L〜(-1 )分别分析50毫升的海水量。

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