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Biomass Production, Chlorophll A and Carotenoid Contents of Spirulina Maxima in Mixed Culture of Lactose

机译:生物质生产,叶绿素A和类胡萝卜素含量的螺旋藻乳糖中的混合培养物

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Pollution of the wastewater is a problem for the sustainable development of aquaculture and food industry. Although many treatments have been used in the field, the expensive cost limited their wide application. Microalgae such as Spirulina can utilize the organic substrates of the wastewater as its C or N sources, so it is feasible to purify the wastewater by the microalgae. On another hand, microalgae are a good biomass energy that can be used to produce biofuels. Therefore, culturing microalgae in wastewater and producing microalgae biomass are probable a good method to deal with the problem. The present paper studied and discussed the effects of lactose on its biomass nenergy, chlorophyll a and carenoid contents. The results showed that the biomass of S.maxima could increase significantly after addition of lactose. The optimal lactose concentration was 15 g/L and at that concentration S.maxima can grow best, but chlorophyll a and carotenoid contents decrease remarkably. Compared with glucose and acetate, S.maxima had higher tolerance, which would be used for the relief of inhibitory effects caused by over carbon sources.
机译:废水的污染是水产养殖和食品行业可持续发展的问题。尽管在该领域已经使用了许多处理,但昂贵的成本限制了它们的广泛应用。微藻如螺旋藻可以利用废水的有机基材作为其C或N来源,因此可以通过微藻净化废水是可行的。在另一只手上,微藻是一种很好的生物质能量,可用于生产生物燃料。因此,在废水中培养微藻并产生微藻生物量可能是处理问题的良好方法。本文研究并探讨了乳糖对其生物质内联,叶绿素A和类固醇含量的影响。结果表明,在加入乳糖后,S.Maxima的生物质可以显着增加。最佳乳糖浓度为15g / L,并且在该浓度下,S.maxima可以生长,但叶绿素A和类胡萝卜素内容物显着降低。与葡萄糖和醋酸糖相比,S.maxima具有更高的耐受性,可用于缓解由碳源引起的抑制作用。

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