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首页> 外文期刊>Journal of Applied Phycology >Effects of improved post-harvest handling on the chemical constituents and quality of carrageenan in red alga, Kappaphycus alvarezii Doty
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Effects of improved post-harvest handling on the chemical constituents and quality of carrageenan in red alga, Kappaphycus alvarezii Doty

机译:改善收获后处理对赤藻卡拉胶中鹿角菜胶化学成分和质量的影响

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摘要

Red alga Kappaphycus alvarezii Doty is an important commercial species widely cultivated in southeast Asian countries for its polysaccharide, kappa-carrageenan. Common post-harvest handling technique involves sun-drying of harvested seaweed on platforms at the farms. Quantity and quality of carrageenan varies depending on the duration and care taken during the post-harvest handling of the raw seaweed. In this study, dynamics of moisture content, water activity index (aw), carrageenan yield, and carrageenan quality were investigated by subjecting the seaweed to three post-harvest methods: (1) freeze-drying (FD), (2) shade-drying (SD), and (3) direct sun-drying (DSD). Seaweed dried under FD and SD produced high yield (56-58 %), superior gel strength (1,454-1,424 g cm(-2)), high viscosity (57-58 cPs), and low syneresis (15-17 %). But, carrageenan extracted from DSD seaweed gave 28 % lower yield, 38 % lower gel strength, 27 % lower viscosity, and 8-9 % higher syneresis. In addition, gelling temperature and melting temperature of the DSD carrageenan were lower by 4 and 9 A degrees C, respectively. Molecular size analyses of carrageenan extracted from seaweed dried under FD and SD contained carrageenan of 700 KDa (80 %) and 200 KDa (4-10 %). However, carrageenan extracted from DSD seaweed contained smaller carrageenan molecules, 460 KDa (55 %), 210 KDa (25 %), and < 100 KDa (20 %). Further, scanning electron microscope images illustrated the severe effects of DSD on the morphology of seaweed cells. Therefore, SD technique was found to be the best post-harvest processing technique that gave quality carrageenan in a high quantity. Due to its simplicity and low cost, it is a practical approach to be practiced in southeast Asian countries.
机译:红藻Kappaphycus alvarezii Doty是一种重要的商业物种,因其多糖Kappa-carrageenanan而在东南亚国家广泛种植。常见的收获后处理技术是在农场的平台上晒干收获的海藻。角叉菜胶的数量和质量取决于生海藻收获后处理期间的持续时间和所采取的护理措施。在这项研究中,通过对海藻进行三种收获后方法研究了水分含量,水分活度指数(aw),角叉菜胶产量和角叉菜胶质量的动态变化:(1)冷冻干燥(FD),(2)遮阴-干燥(SD),以及(3)直接晒干(DSD)。在FD和SD下干燥的海藻产生高收率(56-58%),优异的凝胶强度(1,454-1,424 g cm(-2)),高粘度(57-58 cPs)和低脱水收缩(15-17%)。但是,从DSD海藻中提取的角叉菜胶产量降低了28%,凝胶强度降低了38%,粘度降低了27%,脱水收缩率提高了8-9%。此外,DSD角叉菜胶的胶凝温度和熔化温度分别降低了4和9摄氏度。从FD和SD下干燥的海藻中提取的角叉菜胶的分子大小分析包含700 KDa(80%)和200 KDa(4-10%)的角叉菜胶。但是,从DSD海藻中提取的角叉菜胶含有较小的角叉菜胶分子,分别为460 KDa(55%),210 KDa(25%)和<100 KDa(20%)。此外,扫描电子显微镜图像说明了DSD对海藻细胞形态的严重影响。因此,发现SD技术是最好的收获后加工技术,可以大量生产高质量的角叉菜胶。由于其简单性和低成本,这是在东南亚国家中实践的一种实用方法。

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