Department of Life Sciences, University of Modena and Reggio Emilia, Via J.F. Kennedy, 17/i, 42124 Reggio Emilia, RE, Italy.
Department of Chemistry, Life Science and Environmental Sustainability, University of Parma, Parco Area delle Scienze, 11/a, 43124 Parma, PR, Italy.
Sensors (Basel). 2023 Oct 12;23(20):8429. doi: 10.3390/s23208429.
Nowadays, it is well known that sensors have an enormous impact on our life, using streams of data to make life-changing decisions. Every single aspect of our day is monitored via thousands of sensors, and the benefits we can obtain are enormous. With the increasing demand for food quality, food safety has become one of the main focuses of our society. However, fresh foods are subject to spoilage due to the action of microorganisms, enzymes, and oxidation during storage. Nanotechnology can be applied in the food industry to support packaged products and extend their shelf life. Chemical composition and sensory attributes are quality markers which require innovative assessment methods, as existing ones are rather difficult to implement, labour-intensive, and expensive. E-sensing devices, such as vision systems, electronic noses, and electronic tongues, overcome many of these drawbacks. Nanotechnology holds great promise to provide benefits not just within food products but also around food products. In fact, nanotechnology introduces new chances for innovation in the food industry at immense speed. This review describes the food application fields of nanotechnologies; in particular, metal oxide sensors (MOS) will be presented.
如今,人们已经充分认识到传感器对我们生活的巨大影响,它们利用数据流来做出改变生活的决策。我们日常生活的方方面面都通过数以千计的传感器进行监控,我们可以从中获得巨大的好处。随着人们对食品质量需求的增加,食品安全已经成为社会关注的主要焦点之一。然而,新鲜食品在储存过程中会由于微生物、酶和氧化的作用而变质。纳米技术可以应用于食品工业,以支持包装产品并延长其保质期。化学组成和感官属性是质量标志物,需要创新的评估方法,因为现有的方法实施起来相当困难、劳动强度大且昂贵。电子感应设备,如视觉系统、电子鼻和电子舌,克服了许多这些缺点。纳米技术有望不仅在食品产品内部,而且在食品产品周围提供好处。事实上,纳米技术以惊人的速度为食品工业带来了创新的新机遇。本文综述了纳米技术在食品领域的应用;特别是,将介绍金属氧化物传感器(MOS)。