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(Bio)Nanotechnology in Food Science—Food Packaging

机译:(生物)食品科学包装中的纳米技术

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摘要

Background: Bionanotechnology, as a tool for incorporation of biological molecules into nanoartifacts, is gaining more and more importance in the field of food packaging. It offers an advanced expectation of food packaging that can ensure longer shelf life of products and safer packaging with improved food quality and traceability. Scope and approach: This review recent focuses on advances in food nanopackaging, including bio-based, improved, active, and smart packaging. Special emphasis is placed on bio-based packaging, including biodegradable packaging and biocompatible packaging, which presents an alternative to most commonly used non-degradable polymer materials. Safety and environmental concerns of (bio)nanotechnology implementation in food packaging were also discussed including new EU directives. Conclusions: The use of nanoparticles and nanocomposites in food packaging increases the mechanical strength and properties of the water and oxygen barrier of packaging and may provide other benefits such as antimicrobial activity and light-blocking properties. Concerns about the migration of nanoparticles from packaging to food have been expressed, but migration tests and risk assessment are unclear. Presumed toxicity, lack of additional data from clinical trials and risk assessment studies limit the use of nanomaterials in the food packaging sector. Therefore, an assessment of benefits and risks must be defined.
机译:背景:Bionanootechnology作为一种用于将生物分子掺入纳米饼素的工具,在食品包装领域越来越重要。它提供了对食品包装的高级期望,可确保产品的更长的保质期,更安全的包装,具有改善的食物质量和可追溯性。范围和方法:该综述最近侧重于食品纳米包装的进展,包括基于生物的,改进,有效和智能包装。特别强调置于生物基包装上,包括可生物降解的包装和生物相容性包装,其替代替代最常用的不可降解的聚合物材料。还讨论了(BIO)纳米技术在食品包装中实施的安全和环境问题,包括新的欧盟指令。结论:使用纳米颗粒和纳米复合材料在食品包装中增加了包装的水和氧气屏障的机械强度和性质,可以提供其他益处,例如抗微生物活性和透光性能。已经表达了对纳米颗粒迁移到食物中的担忧,但迁移测试和风险评估尚不清楚。假设毒性,缺乏来自临床试验和风险评估研究的额外数据限制了纳米材料在食品包装部门中的使用。因此,必须定义对福利和风险的评估。

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