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Smart Technology for “Clean Your Plate” Campaign against Wasting Food in University Canteens
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作者 Lai Wei 《Journal of Computer and Communications》 2022年第6期165-176,共12页
Food security is becoming increasingly prominent due to the impact of the COVID-19 and extreme weathers. The Smart Project for “Clean Your Plate” Campaign has been designed and implemented to address food waste on c... Food security is becoming increasingly prominent due to the impact of the COVID-19 and extreme weathers. The Smart Project for “Clean Your Plate” Campaign has been designed and implemented to address food waste on campus. The project takes advantage of technologies such as IoT, dynamic QR code, and visual recognition. Smart devices for clear plate recognition can be installed in multiple locations in campus cafeterias and canteens. Users can login onto a public account and a Mini Program for points reward, exchange and sale. Combining offline clear plate recognition and online points exchange, the project encourages food saving and reduces human cost for university canteens. 展开更多
关键词 “Clean Your Plate” Campaign food conservation Smart Technology
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Optical Determination of the Effects by Thermal Treatment(TT)in Honey of Apis mellifera Bees
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作者 Pablo Broca Quevedo Miguel Angel Basurto Pensado +1 位作者 R.J.Romero Antonio Rodríguez Martínez 《Journal of Agricultural Chemistry and Environment》 2020年第2期37-47,共11页
Spectroscopy in the UV-Vis and NIR ranges of light provides great convenience for the characterization and evaluation of the characteristics and optical modifications that occur during life, the processes for the prep... Spectroscopy in the UV-Vis and NIR ranges of light provides great convenience for the characterization and evaluation of the characteristics and optical modifications that occur during life, the processes for the preparation of some food in order to modify their characteristics or eliminate Micro-organisms that can affect their quality and shelf life, work is carried out at elevated temperatures, even above 100°C. The study has made it possible to identify changes in the Absorbance, Transmittance and Optical Intensity of Apis mellifera honey from four different botanical sources and States of the Mexican Republic: Citrus (Citrus) from the state of Veracruz, Mangle (Rizophora mangle) of the Pacific zone of the state of Sinaloa, Polyfloralis of the state of Morelos and Polyfloralis of the state of Tabasco. 展开更多
关键词 Heat Treatment Spectroscopy food conservation HONEY
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