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Composition Determination of Low-Pressure Gas-Phase Mixtures by H-1 NMR Spectroscopy

机译:通过H-1 NMR光谱法测定低压气相混合物

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H-1 NMR spectroscopy was used to analyze gas phase mixtures of methane and propane at pressures near 0.1 MPa. The mixtures were prepared gravimetrically and had low uncertainty in their composition. The primary mixture used for this work had a methane mole fraction of x(methane,grav) = (0.506875 +/- 0.00019) and a propane mole fraction of x(propane,grav) = (0.493125 +/- 0.00019). NMR samples were prepared in two types of commercially available sample tubes that seal with a PTFE piston. Sample pressures ranged from 0.02 to 0.5 MPa. An analysis of measurement uncertainty for the NMR method resulted in combined standard uncertainties that decreased from 0.0082x to 0.0010x, as the pressure increased from 0.02 to 0.5 MPa. The larger uncertainties at lower pressures were primarily caused by uncertainties associated with phasing and baseline correction. A key difficulty in working with gas-phase samples, especially at lower pressures, is that the spectral peaks are inherently broad. Consequently, peak overlap was problematic, and it was not always possible to integrate a high percentage of a peak's intensity. However, with corrections to the integrated areas, based on the assumption of ideal Lorentzian peak shapes, excellent agreement between the NMR analyses and the gravimetric composition was observed across the entire pressure range. These experiments demonstrate the potential of H-1 NMR for quantitative composition determinations of low-pressure gas-phase mixtures.
机译:H-1 NMR光谱用于分析甲烷的气相混合物,在0.1MPa附近的压力下分析甲烷和丙烷的气相混合物。重量分析混合物并在其组合物中具有低的不确定性。用于该工作的主要混合物具有X(甲烷,GROG)=(0.506875 +/- 0.00019)的甲烷摩尔分数和X的丙烷摩尔分数(丙烷,GROG)=(0.493125 +/- 0.00019)。用两种类型的市售样品管制备NMR样品,其用PTFE活塞密封。样品压力范围为0.02至0.5MPa。对NMR方法测量不确定性的分析导致组合的标准不确定性从0.0082倍降至0.0010倍,因为压力从0.02增加到0.5MPa。较低压力下的更大的不确定性主要由与阶段和基线校正相关的不确定性引起。使用气相样品的关键难度,特别是在较低压力下,是光谱峰本质上是宽的。因此,峰值重叠是有问题的,并且并不总是可以集成峰值强度的高百分比。然而,通过对综合区域的校正,基于理想的Lorentzian峰形状的假设,在整个压力范围内观察到NMR分析与重量组合物之间的优异一致性。这些实验证明了H-1 NMR的潜力,用于低压气相混合物的定量组成测定。

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