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Employment of factorial design for optimization of pirolisys and atomization temperatures for Al, Cd, Mo and Pb determination by ETAAS

机译:采用因子设计优化Pirolisys和雾化温度,以通过ETAAS测定Al,Cd,Mo和Pb

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摘要

This work describes a factorial design for the optimization of pyrolysis and atomization temperatures in ETAAS. As examples, Cd and Pb were determined using lower pyrolysis and atomization temperatures and Al and Mo with higher pyrolysis and atomization temperatures. Good results were obtained for Cd employing Rh (m o = 1.4 pg) as a permanent modifier with pyrolysis and atomization temperatures of 640 and 1500 °C, respectively. For Zr, W or Zr+W, the Cd pyrolysis and atomization temperatures were 500 and 1500 °C, respectively, with m o = 1.4 pg using Zr or W and 1.5 pg using Zr+W. The best results for Pb were those using Rh, Zr, W and Zr+Rh, obtaining characteristic masses of 42, 37, 34 and 36 pg, respectively. Pyrolysis and atomization temperatures of 910 and 1850 °C, respectively, were achieved for this metal. For Al, the best results were obtained when Zr or Zr+W were used. Mo was also tested as a possible permanent modifier for Al, but the results were not satisfactory. The results obtained for Mo without modifier were similar to those with conventional modifiers (Mg or Pd+Mg) and the results obtained using permanent chemical modifiers were not satisfactory. In all situations, the experiments were performed faster than those using the univariate procedure.
机译:这项工作描述了用于优化ETAAS中热解和雾化温度的析因设计。例如,使用较低的热解和雾化温度确定Cd和Pb,使用较高的热解和雾化温度确定Al和Mo。使用Rh(m o = 1.4 pg)作为永久改性剂的Cd,在热解和雾化温度分别为640和1500°C时获得了良好的结果。对于Zr,W或Zr + W,Cd的热解温度和雾化温度分别为500和1500°C,使用Zr或W的m o = 1.4 pg,使用Zr + W的m pg = 1.5 pg。铅的最佳结果是使用Rh,Zr,W和Zr + Rh的结果,特征质量分别为42、37、34和36 pg。该金属的热解和雾化温度分别达到910和1850°C。对于Al,使用Zr或Zr + W可获得最佳结果。还测试了Mo作为Al可能的永久改性剂,但结果并不令人满意。没有改性剂的Mo的结果与常规改性剂(Mg或Pd + Mg)的结果相似,使用永久性化学改性剂的结果也不令人满意。在所有情况下,实验均比使用单变量程序进行的速度更快。

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