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首页> 外文期刊>Progress in Artificial Intelligence >Complementary Methods to Improve the Depuration of Bivalves: A Review
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Complementary Methods to Improve the Depuration of Bivalves: A Review

机译:补充方法,改善双语常数次数:综述

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摘要

Bivalves are filter feeders that can accumulate and concentrate waterborne contaminants present in the water in which they live. Biotoxins, pathogenic bacteria, viruses, and heavy metals present in the aquaculture environment constitute the main hazards for human health. The most common method employed for combating waterborne pollutants in bivalves is depuration with purified seawater. Although this method is effective at increasing the microbiological quality of bivalves, in most cases, it is ineffective at eliminating other risks, such as, for example, viruses or heavy metals. Biological (bacteriocins and bacteriophages), physical (UV light, ozone, and gamma-irradiation), chemical (metallothioneins and chitosan), and other industrial processing methods have been found to be useful for eliminating some contaminants from seawater. The aim of this work was to provide a review of academic articles concerning the use of treatments complementary to conventional depuration, aiming to improve depuration process efficiency by reducing depuration times and decreasing the levels of the most difficult-to-erase contaminants. We conclude that there are different lab-tested strategies that can reduce depuration times and increase the food safety of bivalve produce, with possible short- and long-term industrial applications that could improve the competitivity of the aquaculture industry.
机译:双抗体是过滤器进料器,可积聚和浓缩其居住的水中存在的水性污染物。水产养殖环境中存在的生物毒素,病原菌,病毒和重金属构成了人类健康的主要危害。用于对双抗体中的水性污染物进行分解的最常见方法均用纯化的海水缩小。虽然这种方法在增加偏离的微生物质质量方面是有效的,但在大多数情况下,在消除其他风险时,它是无效的,例如病毒或重金属。已发现生物(含有硫化物,臭氧和γ-辐照),化学(金属硫蛋白和壳聚糖),以及其他工业加工方法可用于消除海水的一些污染物。这项工作的目的是提供关于使用与常规钙化额互补的治疗的学术制品的审查,旨在通过减少剩余次数并降低最难以擦伤的污染物的水平来改善钙化过程效率。我们得出结论,有不同的实验室测试策略,可以减少剩余次数,增加双抗体生产的食品安全性,可能的短期和长期的工业应用,可以提高水产养殖业的竞争力。

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