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采用 Py-GC-MS 对用于生物降解试验的香精包埋聚合材料中残留香精进行定量分析。

Quantification of Residual Perfume by Py-GC-MS in Fragrance Encapsulate Polymeric Materials Intended for Biodegradation Tests.

机构信息

Firmenich SA, Corporate R&D Division, Route des Jeunes 1, 1211 Genève, Switzerland.

Union Française du Commerce Chimique, 75000 Paris, France.

出版信息

Molecules. 2020 Feb 7;25(3):718. doi: 10.3390/molecules25030718.

Abstract

Perfume encapsulates are widely used in commercial products to control the kinetic release of odorant molecules, increase storage stability and/or improve deposition on different substrates. In most of the cases, they consist of core-shell polymeric microcapsules that contain fragrance molecules. A current challenge is to design and produce polymeric materials for encapsulation that are both resistant and non-persistent. The selection of such eco-friendly formulations is linked to a deep understanding of the polymeric material used for encapsulation and its biodegradation profile. To collect this information, pure samples of capsule shells are needed. In this article we present an innovative quantification method for residual volatiles based on pyrolysis-GC-MS to enable validation of sample quality prior to further testing. The presented analytical method also led to the development of a robust and comprehensive purification protocol for polymers from commercial samples. Standard techniques are not suited for this kind of measurement due to the non-covalent embedding of volatiles in the 3D structure of the polymers. We demonstrated the confounding impact of residual volatiles on the estimated biodegradability of fragrance encapsulates.

摘要

香精油微胶囊在商业产品中被广泛应用,用以控制气味分子的动力学释放,提高储存稳定性和/或改善在不同基底上的沉积。在大多数情况下,它们由含有香料分子的核壳聚合物微胶囊组成。目前的一个挑战是设计和生产具有抗性和非持久性的用于封装的聚合材料。这种环保配方的选择与对用于封装的聚合物及其生物降解特性的深入理解相关。为了收集这些信息,需要纯的胶囊壳样品。在本文中,我们提出了一种基于热解气相色谱-质谱(Py-GC-MS)的残留挥发物定量方法,该方法可在进一步测试之前验证样品质量。所提出的分析方法还为从商业样品中分离聚合物开发了一种强大而全面的纯化方案。由于挥发性物质在聚合物的 3D 结构中以非共价键的形式嵌入,因此标准技术不适合这种测量。我们证明了残留挥发物对估计香精油微胶囊生物降解性的干扰影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5742/7037821/fedbf663bda0/molecules-25-00718-g001.jpg

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