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Cultivation of Arthrospira (Spirulina) platensis using confectionary wastes for aquaculture feeding

机译:利用食用性废物养殖水产养殖的螺旋藻(螺旋藻)

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摘要

The microalga biomass production from confectionary effluent is a possible solution for the urgent need for a live food in aquaculture. Arthrospira (Spirulina) platensis was the dominant alga in effluent of “Biscomisr a confectionary factory”, in Alexandria–Egypt. Therefore, it was isolated from the effluent samples and used throughout the study. The cyanobacterium, A. platensis was grown on the effluent using 22 Central Composite Design (22 CCD). This work addresses the best effluent dilution (WC, %) as well as sodium bicarbonate concentration (SBC) on the alga growth and biochemical composition. Total protein, carbohydrate, lipid contents and fatty acid profiles of the produced algal biomass were highly improved. The statistical analyses suggested that the main effect of (WC, %) is significant negative influences on the algal contents of proteins, lipids and carbohydrates (p > 0.01). Although it had a significant positive influence on chlorophyll (p > 0.01), no significant effect on algal β carotenes (p > 0.05) had been reported. The inter action effect of SBC together with WC, % exerted a significant negative influence on the algal proteins (p > 0.01) and no significant effect on the other responses (p > 0.05). The produced alga biomass was used for feeding the rotifer, Brachionus plicatilis for further application in aquaculture. Growth rate, reproductive rate and fecundity attributes, fatty acid content of B. plicatilis were amended. The Pearson correlation test indicated that β carotenes displayed a highly positive significant correlation with the growth rate of B. plicatilis (r = 0.733, p < 0.01) and the carbohydrates showed significant positive correlations with Egg % (r = 0.657, p < 0.05).
机译:从糖食废水生产微藻生物质是水产养殖迫切需要活食的可能解决方案。埃及螺旋藻(Spirulina)是在“亚历山大糖食工厂”废水中的主要藻类。因此,它是从废水样品中分离出来的,并在整个研究中使用。使用2 2 中央复合设计(2 2 CCD)在出水上生长蓝细菌A. platensis。这项工作解决了藻类生长和生化成分方面的最佳废水稀释度(WC,%)以及碳酸氢钠浓度(SBC)。产生的藻类生物质的总蛋白质,碳水化合物,脂质含量和脂肪酸谱得到了极大的改善。统计分析表明,(WC,%)的主要影响是对蛋白质,脂质和碳水化合物的藻类含量的显着负面影响(p> 0.01)。尽管它对叶绿素有显着的积极影响(p> 0.01),但尚未报告对藻类β胡萝卜素有显着影响(p> 0.05)。 SBC与WC的交互作用百分比对藻蛋白产生显着负面影响(p> 0.01),而对其他反应则无显着影响(p> 0.05)。产生的藻类生物质被用于饲喂轮虫轮虫(Brachionus plicatilis),以进一步应用于水产养殖。修正了B. plicatilis的生长率,生殖率和繁殖力,脂肪酸含量。皮尔逊相关性测试表明,β胡萝卜素与褶皱芽孢杆菌的生长速率呈高度正相关(r = 0.733,p <0.01),而碳水化合物与鸡蛋%呈显着正相关(r = 0.657,p <0.05) 。

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