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1.
Heliyon ; 9(6): e16526, 2023 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-37265625

RESUMEN

Livestock products share more than fifteen percent of total agri-foods traded worldwide. A global increase in food demand has increased the risk to food safety. Improvements in food quality, cold chain transit, and preservation are required for safe livestock products. Though, the food safety and regulation authorities demand complete food traceability from farm to fork, but in traditional supply chain it is ignored by fiddling with the transit paperwork and bill invoices. The process of supply chain reformation and activities linked to food recalls during food safety issues are insanely expensive and challenging. Traceability-driven food supply chain management is likely to implement novel technologies like the Internet of Things (IoT). The capability of the Blockchain era within the food sector is emerging with use cases across different regions, as shown via the growing number of studies. Credibility, efficiency, and safety are all improved when food products can be instantly traced from their point of origin through all points of contact on their way to the consumer. Blockchain assures a tamper-proof and transparent system that allows an innovative business solution, together with smart contracts. However, there are significant difficulties with the implementation of blockchain technology for food traceability. It necessitates more and more training platforms as well as trainers, who can make understanding and operability of this technology easy among ground-level participants and food entities. For the tactical application of this technology, it is essential to comprehend the legal and regulatory framework.

2.
Heliyon ; 6(7): e04509, 2020 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-32728645

RESUMEN

As per the World Health Organization (WHO) and Global Hunger Index, the incidence of malnutrition and Vitamin-A deficiency in preschool-age children is higher in South-East Asian countries. Therefore, this study was envisaged to formulate value-added flavoured buffalo milk and to carry out the sensory evaluation, nutritional analysis, storage characteristics and total carotene content of the developed product. Flavoured buffalo milk was prepared by incorporation of Cucurbita pepo (Pumpkin) pulp and ground sugar at a concentration of 15% and 10%, respectively. The formulation was found preeminent by panellists and then subjected to nutritional analysis and storage studies at room temperature following "in bottle heat treatment". Nutritional analysis revealed that the protein, fat, total carbohydrates, total ash and moisture content of pumpkin flavoured buffalo milk were 3.07%, 5.21%, 12.63%, 0.61% and 78.48%, respectively. The storage study of flavoured buffalo milk showed a significantly (p < 0.05) declined score in colour and appearance as well as flavour only after day 90. The overall acceptability score also declined significantly (p < 0.05) after day 60 of storage. Though the sensory score declined gradually during the storage period, the product was liked by the panellist even till day 180. The carotene content of pumpkin flavoured buffalo milk was 1.2 mg/100 g at day 0 and it decreased significantly as storage prolongs. The nutritional components were not affected significantly during the 180 days storage period. Standard plate counts, coliform counts as well as yeast and mould counts were not detected during storage of pumpkin flavoured buffalo milk.

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