防止厨房环境中遇到的热危害的厨师制服用纺织品的特性。

Annals of Occupational Hygiene Pub Date : 2015-10-01 Epub Date: 2015-04-29 DOI:10.1093/annhyg/mev034
Han Zhang, Rachel H McQueen, Jane C Batcheller, Briana L Ehnes, Stephen A Paskaluk
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引用次数: 9

摘要

在厨房内,因接触热表面、火焰、热液体和蒸汽而造成烧伤的可能性很高。厨师的制服可以通过在皮肤和热危害之间提供保护屏障来潜在地提供一些保护,尽管可以提供一些保护的程度是未知的。这项研究的目的是检查厨师制服中使用的织物是否能够提供一些保护,防止厨房中遇到的热危害。厨师夹克和围裙的面料被选中。测定了单层和多层织物的可燃性。同时测定了夹套类型、胶圈和层数对热表面、热水和蒸汽暴露的影响。调查结果显示,当暴露在火焰中时,所有的夹克和围裙织物都迅速点燃。由于隔热层的增加,热表面的热防护也随之增加。通过在系统中安装不透水的胶圈,提高了对蒸汽和热水的保护。对于湿热危害,增加透气层的数量可以降低由于储存热能的保护水平。由于手和手臂是最容易烧伤的部位,在袖子中增加绝缘和不透水的屏障将在最小程度上损害整体热舒适的情况下提高热保护。
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Characterization of Textiles Used in Chefs' Uniforms for Protection Against Thermal Hazards Encountered in the Kitchen Environment.

Within the kitchen the potential for burn injuries arising from contact with hot surfaces, flames, hot liquid, and steam hazards is high. The chef's uniform can potentially offer some protection against such burns by providing a protective barrier between the skin and the thermal hazard, although the extent to which can provide some protection is unknown. The purpose of this study was to examine whether fabrics used in chefs' uniforms were able to provide some protection against thermal hazards encountered in the kitchen. Fabrics from chefs' jackets and aprons were selected. Flammability of single- and multiple-layered fabrics was measured. Effect of jacket type, apron and number of layers on hot surface, hot water, and steam exposure was also measured. Findings showed that all of the jacket and apron fabrics rapidly ignited when exposed to a flame. Thermal protection against hot surfaces increased as layers increased due to more insulation. Protection against steam and hot water improved with an impermeable apron in the system. For wet thermal hazards increasing the number of permeable layers can decrease the level of protection due to stored thermal energy. As the hands and arms are most at risk of burn injury increased insulation and water-impermeable barrier in the sleeves would improve thermal protection with minimal compromise to overall thermal comfort.

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