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Combined yeast and microalgal cultivation in a pilot-scale raceway pond for urban wastewater treatment and potential biodiesel production

机译:酵母和微藻栽培在一家试验规模赛道池塘中的城市废水处理和潜在的生物柴油生产

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摘要

A mixed culture of oleaginous yeast Lipomyces starkeyi and wastewater native microalgae (mostly Scenedesmus sp. and Chlorella sp.) was performed to enhance lipid and biomass production from urban wastewaters. A 400 L raceway pond, operating outdoors, was designed and used for biomass cultivation. Microalgae and yeast were inoculated into the cultivation pond with a 2: 1 inoculum ratio. Their concentrations were monitored for 14 continuous days of batch cultivation. Microalgal growth presented a 3-day initial lag-phase, while yeast growth occurred in the first few days. Yeast activity during the microalgal lag-phase enhanced microalgal biomass productivity, corresponding to 31.4 mgTSS m(-2) d(-1). Yeast growth was limited by low concentrations in wastewater of easily assimilated organic substrates. Organic carbon was absorbed in the first 3 days with a 3.7 mgC L-1 d(-1) removal rate. Complete nutrient removal occurred during microalgal linear growth with 2.9 mgN L-1 d(-1) and 0.96 mgP L-1 d(-1) removal rates. Microalgal photosynthetic activity induced high pH and dissolved oxygen values resulted in natural bactericidal and antifungal activity. A 15% lipid/dry weight was measured at the end of the cultivation time. Fatty acid methyl ester (FAME) analysis indicated that the lipids were mainly composed of arachidic acid.
机译:含油糖脂肪属植物的混合培养物和废水天然微藻(大部分Scenedesmus sp。和小球藻sp)。进行了从城市废水器中增强脂质和生物量的生产。 400 L赛道池塘,在户外操作,设计并用于生物质培养。将微藻和酵母接种到具有2:1的接种物的培养池中。将它们的浓度监测为14天的分批培养。微藻生长呈现为3天的初始滞后阶段,而酵母生长发生在最初的几天内。酵母活性在微藻滞相期间增强的微藻生物质生产率,对应于31.4mgTs m(-2)d(-1)。酵母生长受易于同化的有机衬底的低浓度的限制。在前3天中吸收有机碳,用3.7mgC L-1 D(-1)去除速率。在微藻线性生长过程中发生完全营养去除,其中2.9mgn L-1 d(-1)和0.96mgp L-1 d(-1)去除速率。微藻光合活性诱导高pH和溶解氧值导致天然杀菌和抗真菌活性。在培养时间结束时测量15%的脂质/干重。脂肪酸甲酯(名称)分析表明,脂质主要由花生酸组成。

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