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首页> 外文期刊>Journal of Cleaner Production >Comparison of the odorant composition of post-consumer high- density polyethylene waste with corresponding recycled and virgin pellets by combined instrumental and sensory analysis
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Comparison of the odorant composition of post-consumer high- density polyethylene waste with corresponding recycled and virgin pellets by combined instrumental and sensory analysis

机译:消费后高密度聚乙烯废料的气味成分与相应的回收粒料和原生粒料的仪器分析和感官分析相比较

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摘要

Both, for ecological and economic reasons, the recycling of plastics for new or broader applications is currently gaining more and more attention. As high-density polyethylene (HDPE) plays an essential role in various packaging, the recycling of this material is particularly sought for. Thereby, odorous contaminants are a common obstacle when aiming at achieving high-quality HDPE recycled goods. In this respect, revealing the differences in the odorant composition of waste, recycled pellets and virgin pellets provides insights into odor sources and formation pathways and therefore supports the developing of optimized avoidance strategies. For this reason, the odor of post-consumer HDPE waste, corresponding recycled HDPE pellets and virgin HDPE granules was analyzed in the frame of the present study by comprehensive sensory analysis as well as instrumental analysis using high resolution gas chromatography-olfactometry followed by two-dimensional high resolution gas chromatography-mass spectrometry-olfactometry. In total, 32 odorous substances were identified. While some oxidation products were present in all three samples, albeit mostly with much higher smell intensity when regarding the waste and the recycled pellets, a number of terpenes as well as phenylpropanoids were found only in the HDPE waste and recycled material and, in most cases, with high sensory abundance. These odorants are likely to stem from fragrances used in cosmetics and washing/cleaning agents. Moreover, comparative odor extract dilution analysis (cOEDA) revealed that the applied conventional recycling process resulted only in a slight reduction of the odor pollution: moreover, it could be shown that no new odorants were generated to any relevant extent. Accordingly, this study shows that further optimized strategies for odorant removal from post-consumer recycled HDPE material are required. (C) 2018 Elsevier Ltd. All rights reserved.
机译:出于生态和经济原因,用于新的或更广泛的应用的塑料回收目前正越来越受到关注。由于高密度聚乙烯(HDPE)在各种包装中起着至关重要的作用,因此特别需要回收这种材料。因此,当要获得高质量的HDPE再生产品时,气味污染物是常见的障碍。在这方面,揭示废物,回收颗粒和原始颗粒的气味成分之间的差异可提供对气味来源和形成途径的见解,从而支持开发优化的回避策略。因此,在本研究的框架内,通过全面的感官分析以及使用高分辨率气相色谱-嗅觉法随后进行两步法进行的仪器分析,分析了消费后HDPE废物,相应的回收HDPE颗粒和原始HDPE颗粒的气味。维高分辨率气相色谱-质谱-嗅觉法。总共确定了32种有气味的物质。尽管所有三个样品中都存在一些氧化产物,但就废物和回收的颗粒而言,虽然大多数具有较高的气味强度,但仅在HDPE废物和回收的材料中发现了许多萜烯和苯丙烷类化合物,在大多数情况下,具有很高的感官丰度。这些增香剂可能源自化妆品和洗涤/清洁剂中使用的香料。此外,比较性气味提取物稀释分析(cOEDA)显示,采用的常规回收工艺仅能稍微减少气味污染:而且,可以证明,在任何相关程度上都不会产生新的气味。因此,这项研究表明,需要进一步优化的策略来从消费后的回收HDPE材料中去除臭味。 (C)2018 Elsevier Ltd.保留所有权利。

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