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本文在有效地控制和消除基体干扰的基础上 ,探讨了Ag ,As,Au ,Bi,Cd ,Co ,Cr,Cu ,Fe ,Ga,Hg ,Mn ,Mo ,Ni,Sb ,Pb和V元素的理论原子化效率与原子化温度的关系。研究表明 :元素的理论原子化效率是原子化温度的函数 ,在一定的原子化温度范围内 ,理论原子化效率与原子化温度呈线性递增关系 ,对研究的十八个元素其线性的相关系数在 0 994 0~ 0 9993之间 ,且斜率大部分在 0 0 6~ 0 0 7之间 ,说明在一定的原子化温度范围内 ,理论原子化效率随原子化温度变化的斜率是相近的。
In this paper, based on the effective control and elimination of matrix interference, the effects of Ag, As, Au, Bi, Cd, Co, Cr, Cu, Fe, Ga, Hg, Mn, Mo, Ni, Sb, Pb and V Relationship Between Theoretical Atomization Efficiency and Atomization Temperature. The results show that the theoretical atomization efficiency of elements is a function of the atomization temperature. At a certain atomization temperature, the theoretical atomization efficiency increases linearly with the atomization temperature. The linear correlation coefficients of the 18 elements studied Between 0 994 0 and 0 9993, and the slope is mostly between 0 0 6 ~ 0 0 7, indicating that the slope of the theoretical atomization efficiency with the atomization temperature is similar within a certain atomic temperature range.