Impact of Mollusca by-Products as a Natural Source of Calcium on the Quality of Rusk

M. Ali, W. Badawy
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Abstract

The body may not have enough calcium (Ca) if dairy products are avoided because of lactose sensitivity. Large quantities of this raw material are accessible as a by-product from the high Ca content of Mollusca bones and shells. This study was divided into two steps. Firstly, analysis of the chemical composition and minerals content of different Mollusca by-products (cuttlebone, oyster shell and donax shell). Secondly, cuttlebone powder was used as a source of calcium to improve the rusk. In addition, the influence of cuttlebone powders substitution (5, 7.5 and 10%) on the rheological properties of dough, minerals content and sensory properties of bakery products (rusk) was studied. The obtained results showed that the content of ash was 94.47, 98.34 and 97.93% for cuttlebone, oyster shell and donax shell, respectively. Cuttlebone powder had the highest calcium content (11405.17 mg/100g) followed by oyster and donax shells. The replacement of the rusk wheat with the cuttlebone powder led to a noticeable increase in Ca, Mg, and Na contents and improved the rheological properties of dough in the supplemented rusk. Moreover, sensory evaluation of rusk that has cuttlebone elicited comparable scores for those with the three substituted ratios. Hence, Cuttlebone powder can be suggested for use as a natural source of calcium in the creation of bakery products with high calcium content that are well-liked by consumers. Additionally, the practical reutilization of shell waste frequently involves issues
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软体动物副产品作为天然钙源对木质素的影响
如果因为对乳糖敏感而不吃乳制品,身体可能没有足够的钙。大量的这种原料可以作为软体动物骨骼和贝壳中钙含量高的副产品而获得。本研究分为两个步骤。首先,分析了不同软体动物副产物(海螵蛸、牡蛎壳和donax壳)的化学成分和矿物质含量。其次,用海螵蛸粉作为钙的来源,以改善风险。此外,还研究了海螵蛸粉替代量(5%、7.5%和10%)对面团流变学性能、矿物质含量和烘焙产品感官性能的影响。结果表明,海螵蛸、牡蛎壳和唐菖蒲壳的灰分含量分别为94.47%、98.34%和97.93%。海螵蛸粉钙含量最高,为11405.17 mg/100g,其次为牡蛎壳和donax壳。用海骨粉替代木屑小麦,可显著提高Ca、Mg和Na含量,改善木屑面团的流变特性。此外,对含有海螵蛸的风险的感官评估得出了与具有三种替代比率的风险相当的分数。因此,可以建议将海螵螵粉作为钙的天然来源,用于制作高钙含量的烘焙产品,深受消费者的喜爱。此外,贝壳废料的实际再利用经常涉及问题
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