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首页> 外文期刊>Journal of Applied Polymer Science >Degradation of low density polyethylene during extrusion. I. Volatile compounds in smoke from extruded films
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Degradation of low density polyethylene during extrusion. I. Volatile compounds in smoke from extruded films

机译:挤出过程中低密度聚乙烯的降解。 I.挤出薄膜烟雾中的挥发性化合物

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摘要

Many problems with odor and taste in food packaging can be traced to degradation of the packaging materials during processing. From this starting point, the degradation of polyethylene in a commercial extrusion coating process was studied by analyzing degradation products present in smoke sampled at the extruder die orifice. Two low-density polyethylenes, A and B, with similar melt flow indexes and densities and obtained from different producers, were investigated. A third polymer, C, consisting of recycled material B, was also investigated. More than 40 aliphatic aldehydes and ketones, together with 14 different carboxylic acids, were identified in the smoke. The highest concentration was found for acetaldehyde, regardless of polymer and processing conditions. Increasing the extrusion temperatures in the range 280-325 degreesC increased the amounts of the oxidized products in the smoke. The extruded film thickness, 12 and 25 mum, influenced the concentrations of degradation products, With the thicker film giving higher amounts of product. The recycled polymer C generally gave lower concentrations of degradation products compared with the virgin polymer B. Difference ill the product spectrum between the two virgin polymers may be related to differences in the manufacturing process, Many of the identified compounds have very characteristic taste and smell and are consequently of interest fron on odor and taste point of view in food packaging applications. (C) 2002 Wiley Periodicals, Inc. [References: 16]
机译:食品包装中的许多气味和味道问题都可以追溯到加工过程中包装材料的降解。从这个出发点,通过分析在挤出机模孔处采样的烟气中存在的降解产物,研究了聚乙烯在商业挤出涂布工艺中的降解。研究了两种低密度聚乙烯,分别来自不同的生产商,它们的熔体流动指数和密度相似,具有不同的熔体流动指数和密度。还研究了由回收材料B组成的第三种聚合物C。在烟雾中鉴定出40多种脂族醛和酮,以及14种不同的羧酸。乙醛的最高浓度,与聚合物和加工条件无关。将挤出温度提高到280-325摄氏度范围内,会增加烟气中氧化产物的量。挤出膜的厚度(12和25μm)会影响降解产物的浓度,而较厚的膜会产生更多的产物。与原始聚合物B相比,回收的聚合物C通常产生的降解产物浓度更低。两种原始聚合物之间的产物谱差异可能与制造工艺的差异有关。许多鉴定出的化合物具有非常独特的味道和气味,因此,从食品包装应用中的气味和味道角度出发,令人感兴趣。 (C)2002 Wiley Periodicals,Inc. [参考:16]

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