文章摘要
薛美贵,柴欣生,李伟,李小东,陈润权.纸质食品包装制品中挥发性MOSH组分SPME-HSGC-MS追踪检测[J].包装工程,2023,44(17):77-84.
XUE Mei-gui,CHAI Xin-sheng,LI Wei,LI Xiao-dong,CHEN Run-quan.Detection and Tracking Analysis of Volatile Mineral Oil Saturated Hydrocarbons Components in Paper Food Packaging Products by SPME-HSGC-MS[J].Packaging Engineering,2023,44(17):77-84.
纸质食品包装制品中挥发性MOSH组分SPME-HSGC-MS追踪检测
Detection and Tracking Analysis of Volatile Mineral Oil Saturated Hydrocarbons Components in Paper Food Packaging Products by SPME-HSGC-MS
投稿时间:2023-01-17  
DOI:10.19554/j.cnki.1001-3563.2023.17.010
中文关键词: 纸质食品包装制品  饱和烃矿物油  固相微萃取-顶空气相色谱-质谱联用法  食品安全
英文关键词: paper food packaging products  mineral oil saturated hydrocarbon  solid-phase microextraction-headspace gas chromatography-mass spectrometry  food safety
基金项目:广东省基础与应用基础研究基金联合基金项目-青年基金项目(2019A1515110667);东莞市社会发展科技重点项目(20221800906442);广东省科技创新战略(培育)专项资金项目(pdjh2021b0905);广东省数字印刷产教融合创新平台(2021CJPT005);2022年东莞市科技特派员项目(20221800500871)
作者单位
薛美贵 东莞职业技术学院广东 东莞 523808 
柴欣生 华南理工大学广州 510641 
李伟 东莞职业技术学院广东 东莞 523808 
李小东 东莞职业技术学院广东 东莞 523808 
陈润权 东莞质量监督检测中心广东 东莞 523808 
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中文摘要:
      目的 对一次性纸质食品包装制品(盒、袋、桶、杯等)中挥发性饱和烃矿物油(MOSH)组分的含有情况进行检测分析,以确定纸质食品包装材料及制品中各挥发性MOSH组分向外挥发的性能以及对所包装食品(食品模拟物)的潜在危害性。方法 将样品裁切(5 mm×5 mm)后,取适量样品采用固相微萃取法进行萃取富集,然后使用顶空气相色谱-质谱进行检测,通过NIST质谱库检索、特征离子碎片检索以及标准样品比较相结合的方法进行定性。同时,为确定各样品中挥发性MOSH组分的迁移性能,在时隔6个月之后,对以上样品采用同样的方法进行取样、检测、分析。最后,根据2次检测的结果,判断市售一次性纸质食品包装材料及制品中挥发性MOSH组分的迁移性,以确定其对食品安全性的影响情况。结果 结果表明,所测的16种样品中均含有挥发性MOSH组分,并且其含量随着时间而降低;同时发现,没有印刷图文或印刷图文面积极小的纸质包装制品中挥发性MOSH组分向外迁移的速度较低。结论 SPME-HSGC-MS适用于纸质包装材料或制品中挥发性(半挥发性)MOSH组分的检测与分析。为降低由纸质食品包装材料及制品中挥发性MOSH组分对人体产生的危害性,建议纸质包装材料或制品制作完成后,在不增加仓储压力的情况下,放置一段时间,并加大其存储空间的通风,再用于食品包装。
英文摘要:
      The work aims to detect and analyze the content of volatile mineral oil saturated hydrocarbons (MOSH) components in paper food packaging products (such as boxes, bags, buckets, cups, etc.), so as to determine the volatility of volatile MOSH components in paper food packaging materials and products and the potential harm to packaged food (simulants). Samples were cut to small pieces (5 mm×5 mm), then extracted by solid phase microextraction, and lastly detected by headspace chromatography-mass spectrometry (HSGC-MS). The NIST mass spectral library, characteristic ion fragment and standard sample comparison were combined to conduct qualitative analysis. In order to determine the migration performance of the volatile MOSH components in each sample, the samples were taken, detected and analyzed by the method mentioned above after 6 months. Finally, the results of the two tests were compared, and the migration of the volatile MOSH components in the disposal paper food packaging materials and products on the market was judged to determine the impact on food safety. The results showed that all the 16 samples tested contained volatile MOSH components and their content decreased with time. The migration velocity of volatile MOSH components was lower in paper packaging products without printed graphic or with minimal graphic area. SPME-HSGC-MS is suitable for the detection and analysis of volatile (semi-volatile) MOSH components in paper packaging materials or products. In order to reduce the harm of volatile MOSH components to the human body in the paper food packaging materials and products, it is recommended to place paper packaging materials or products for a period of time without increasing storage pressure and increase the ventilation of storage space before using them for food packaging.
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