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Determination of boron in high-temperature alloy steel using non-linear inter-element correction and microwave plasma-atomic emission spectrometry

机译:非线性元素校正和微波等离子体原子发射光谱法测定高温合金钢中的硼

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摘要

The determination of B in high-temperature alloy steel using microwave plasma-atomic emission spectrometry (MP-AES) is presented. This instrumental emission technique was developed recently using 2.45 GHz microwaves to generate atmospheric pressure N_2-plasma, self-sustained inside a modified inductively coupled plasma (ICP) torch. The sample introduction to the MP is pneumatic using a conventional concentric nebulizer and a cyclonic spray chamber system. The emission line detection is sequential using a Czerny-Turner monochromator and charge-coupled device (CCD) system. Boron in steel, generally considered an analytically difficult element in a highly impacted matrix, was determined using HNO_3-HCI digested steel solutions and 249.773 nm B emission line. Iron spectral interference on this B emission line was corrected using a non-linear inter-element correction (NL-IEC) method. Steel matrix effects on B recovery were attenuated using the method of standard addition. The amount of B in NBS 348a steel is found to be 58 ± 1 mg kg~(-1) and the certified amount of B is 55 ± 4 mg kg~(-1).
机译:提出了使用微波等离子体原子发射光谱法(MP-AES)测定高温合金钢中的B的方法。最近使用2.45 GHz微波开发了这种仪器发射技术,以产生大气压N_2-等离子体,该等离子体可自我维持在改良的电感耦合等离子体(ICP)炬中。使用常规的同心雾化器和旋风喷雾室系统,将样品以气动方式引入MP。发射线检测使用Czerny-Turner单色仪和电荷耦合器件(CCD)系统进行。使用HNO_3-HCl消化的钢溶液和249.773 nm B发射线测定了钢中的硼(通常被认为是高影响基质中的分析困难元素)。使用非线性元素间校正(NL-IEC)方法校正了此B发射线上的铁光谱干扰。钢基体对硼回收的影响使用标准添加方法减弱。发现NBS 348a钢中的B含量为58±1 mg kg〜(-1),标准的B含量为55±4 mg kg〜(-1)。

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