首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Development and validation of a methodology for quantifying parts-per-billion levels of arsine and phosphine in nitrogen, hydrogen and liquefied petroleum gas using a variable pressure sampler coupled to gas chromatography-mass spectrometry
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Development and validation of a methodology for quantifying parts-per-billion levels of arsine and phosphine in nitrogen, hydrogen and liquefied petroleum gas using a variable pressure sampler coupled to gas chromatography-mass spectrometry

机译:使用可变压力采样器耦合到气相色谱 - 质谱法测量氮气,氢气和液化石油气中氮,液化石油气中胂和磷酸的方法的制导和验证

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摘要

The reliable determination of arsine (AsH3) and phosphine (PH3) in hydrogen (H-2), nitrogen (N-2) and liquefied petroleum gas (LPG) is of great importance because of its drastic effects on the efficiency of catalysts, as well as the strict regulations associated with health, safety and environmental issues. It is challenging for an analyst to determine the parts per billion of AsH3 and PH3 in H-2, N-2, and LPG at low and high pressures without collection procedures using adsorption, desorption, and dissolution techniques. To overcome this analytical need an analytical methodology was developed, employing a variable pressure sampler (VPS) coupled to a gas chromatograph (GC) with mass spectrometry (MS) for the identification and quantification of traces of AsH3 and PH3. The instrumentation, tubing and accessories of the VPS were made of passivated steel to avoid losses from absorption of AsH3 and PH3 in the steel which would generate significant analytical problems. The VPS had a homogeneous heating block that prevented analyte losses from condensation. With the VPS, 24 AsH3 and PH3 standards were prepared between 0.005 and 0.1 mg kg(-1) in balance of H-2, N-2 and LPG. The separation and quantification of the analytes was achieved with an improved GC with 4 valves and 5 columns in series that guaranteed the elimination of impurities. The proposed method was optimized in VPS and GC-MS and then validated showing highly accaptable linearity (r(2) > 0.9999), detection limits (<0.0009 mg kg(-1)), limits of quantification (<0.003 mg kg(-1)), intra-day and inter-day precision and accuracy (<1.14% and <= 3.0% respectively), recovery for the standard addition (86-109%), P values> 0.05 for the test Student's t paired who evaluated the effect of the matrix on pressure and concentration. The speed of analysis was high (<5.2 min). The method was applied to real samples, showing values between 0.005 and 0.1 mg kg(-1) and an effect on the efficiency of the Ziegler Natta catalyst between 5 and 56%. (C) 2020 Elsevier B.V. All rights reserved.
机译:氢(H-2)、氮(N-2)和液化石油气(LPG)中的砷化氢(AsH3)和磷化氢(PH3)的可靠测定非常重要,因为它对催化剂的效率有着巨大的影响,以及与健康、安全和环境问题相关的严格规定。对于分析员来说,在不使用吸附、解吸和溶解技术的收集程序的情况下,在低压和高压下测定H-2、N-2和LPG中十亿分之一的AsH3和PH3是一项挑战。为了克服这种分析需求,开发了一种分析方法,使用可变压力取样器(VPS)与气相色谱仪(GC)和质谱仪(MS)耦合,以识别和定量痕量AsH3和PH3。VPS的仪器、管道和附件由钝化钢制成,以避免吸收钢中的AsH3和PH3造成的损失,这将产生重大的分析问题。VPS有一个均匀的加热块,防止分析物因冷凝而损失。使用VPS,在H-2、N-2和LPG的平衡下,在0.005和0.1 mg kg(-1)之间制备了24种AsH3和PH3标准。分析物的分离和定量是通过改进的GC实现的,该GC具有4个阀门和5个串联柱,保证了杂质的消除。提出的方法在VPS和GC-MS中进行了优化,然后进行了验证,显示出高度可接受的线性(r(2)>0.9999)、检测限(<0.0009 mg kg(-1))、定量限(<0.003 mg kg(-1))、日间和日间精密度和准确度(<1.14%和<=3.0%),标准添加回收率(86-109%),对于评估基质对压力和浓度影响的测试学生的t对,P值>0.05。分析速度很快(<5.2分钟)。该方法应用于实际样品,显示值在0.005到0.1 mg kg(-1)之间,对齐格勒-纳塔催化剂效率的影响在5到56%之间。(C) 2020爱思唯尔B.V.版权所有。

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