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Mass Cultivation of Microalgae on Animal Wastewater: a Sequential Two-Stage Cultivation Process for Energy Crop and Omega-3-Rich Animal Feed Production

机译:在动物废水上进行微藻的大规模培养:用于能量作物和富含Omega-3的动物饲料生产的连续两阶段培养过程

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In this study, 97 microalgal strains purchased from algae bank and 50 microalgal strains isolated from local waters in Minnesota were screened for their adaptability growing on a 20-fold diluted digested swine manure wastewater (DSMW). A pool of candidate strains well adapted to the DSMW was established through a high-throughput screening process. Two top-performing facultative heterotrophic strains with high growth rate (0.536 day−1 for UMN 271 and 0.433 day−1 for UMN 231) and one strain with high omega-3 unsaturated fatty acid (EPA, 3.75 % of total fatty acids for UMN 231) were selected. Subsequently, a sequential two-stage mixo-photoautotrophic culture strategy was developed for biofuel and animal feed production as well as simultaneous swine wastewater treatment using above two strains. The maximal biomass concentration and lipid content at the first and second stages reached 2.03 g/L and 23.0 %, and 0.83 g/L and 19.0 % for UMN 271 and UMN 231, respectively. The maximal nutrient removals for total phosphorus and ammonia after second-stage cultivation were 100 and 89.46 %, respectively. The experiments showed that this sequential two-stage cultivation process has great potential for economically viable and environmentally friendly production of both renewable biofuel and high-value animal feed and at the same time for animal wastewater treatment.
机译:在这项研究中,筛选了从藻类库购买的97种微藻菌株和从明尼苏达州当地水域分离出的50种微藻菌株在20倍稀释的消化猪粪便废水(DSMW)上生长的适应性。通过高通量筛选过程建立了非常适合DSMW的候选菌株库。高生长速率的两株兼性异养菌株(UMN 271为0.536 day -1 ,UMN 231为0.433 day -1 )和一株omega-3高的菌株选择不饱和脂肪酸(EPA,UMN 231占总脂肪酸的3.75%)。随后,开发了用于生物燃料和动物饲料生产以及同时使用上述两种菌株同时处理猪废水的连续两阶段混合光合自养培养策略。 UMN 271和UMN 231在第一阶段和第二阶段的最大生物量浓度和脂质含量分别达到2.03 g / L和23.0%,以及0.83 g / L和19.0%。第二阶段培养后,总磷和氨的最大养分去除率分别为100和89.46%。实验表明,这种连续的两阶段培养过程具有巨大的潜力,既可以经济可行地又环保地生产可再生生物燃料和高价值动物饲料,同时可以处理动物废水。

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