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Parametric studies of emission from a plasma gun source for atomic spectroscopy

机译:用于原子光谱的等离子枪源发射的参数研究

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摘要

A detailed parametric study of the effects of electrical discharge parameters on the spatially and temporally resolved emission from the expelled plume of a plasma gun atomic emission source was performed Expulsion properties 'were found to depend onthe dI/dt of the discharge current Low-inductance discharges produced plasmas with propagation velocities (about 1 2 km s~(-1)) which were independent of discharge energy and probably controlled by the properties of the support gas in the discharge chamber Added-inductance discharges produced plumes with significantly lower propagation velocities and less efficient atomization and expulsion of analyte Continuum background emission was attributable to two processes, depending upon the spatial location inthe plasma: decaying background from the rapidly cooling expelled plasma (lower regions) and collision of the initially-expelled plasma with some of the continuously-expelled plasma gun vapor (upper regions). The line-to-background ratio is optimized when using the highest-energy, low-inductance discharges coupled with integration of emission only from the upper regions of the plume (>10 mm) after the first emission pulse (>75 μs).
机译:进行了详细的参数研究,研究了放电参数对等离子枪原子发射源排出的羽流在空间和时间上解析出的发射的影响。产生的等离子体的传播速度(大约1 2 km s〜(-1))与放电能量无关,并且可能受放电室中支撑气体的特性控制被分析物的有效雾化和排出连续体背景发射可归因于两个过程,具体取决于血浆中的空间位置:迅速冷却排出的血浆(下部区域)导致的背景衰减以及最初排出的血浆与某些连续排出的血浆发生碰撞等离子枪蒸气(上部区域)。当使用最高能量,低电感的放电,并且仅在第一个发射脉冲(> 75μs)之后仅从羽流的上部区域(> 10 mm)发射积分时,线与背景的比率得以优化。

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