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Magnetic resonance imaging characterization of intact smoked cigarettes

机译:完整卷烟的磁共振成像表征

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摘要

The interior of intact, extinguished cigarettes following smoldering and puffing combustion was examined by proton magnetic resonance imaging (MRI). Spin-echo imaging sequences were employed to image substances with high molecular mobility such as water, smoke condensate, and waxy materials native to unburned tobacco. Single-point imaging (SPI) methods were employed to image the more rigid components, such as tobacco cell wall polysaccharides and cellulose acetate fibers inside the filter. The distribution of spin-spin relaxation times (T_2) of the tobacco and filters was measured using a low-field ~1H NMR bench-top spectrometer. One-dimensional profiles and two-dimensional images revealed the distribution of combustion and pyrolysis products deposited on the unburned portion of tobacco and in the filter of the cigarette. Image features as small as 25 μm were resolved. The current results demonstrate the feasibility of employing MRI to study combustion in burning cigarettes and other materials in real time.
机译:通过质子磁共振成像(MRI)检查阴燃和膨化燃烧后未熄灭的香烟内部。自旋回波成像序列用于成像具有高分子迁移性的物质,例如水,烟气冷凝物和未燃烧烟草的天然蜡质物质。采用单点成像(SPI)方法对过滤器内部更坚硬的组件(例如烟草细胞壁多糖和醋酸纤维素纤维)成像。使用低场〜1H NMR台式光谱仪测量了烟草和过滤嘴的自旋-自旋弛豫时间(T_2)的分布。一维轮廓和二维图像显示了沉积在烟草未燃烧部分和香烟过滤嘴中的燃烧和热解产物的分布。分辨出小至25μm的图像特征。目前的结果证明了使用MRI实时研究香烟和其他材料燃烧中的燃烧的可行性。

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