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Two-step strategy for obtaining dunaliella sp. biomass and beta-carotene from anaerobically digested poultry litter wastewater

机译:获得Dunaliella SP的两步策略。 生物量和β-胡萝卜素来自无厌氧物消化的家禽废水废水

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摘要

Using anaerobically digested wastewater to culture microalgae can realize wastewater treatment and biomass acquisition simultaneously. However, previous works concentrated mostly on wastewater treatment or bioenergy production, whereas few studies carried out high value-added product production. Therefore, this study focused on using anaerobically digested poultry litter wastewater (PLW) for obtaining biomass and beta-carotene. The feasibility and optimal conditions for pollutant removal, biomass production, and beta-carotene accumulation were investigated. The results showed that Dunaliella FACHB-558 could utilize ammonium as the sole nitrogen source. With the optimal conditions of 36 ps mu salinity and 200 mu mol/m(2)/s light intensity, the total nitrogen, total phosphorus, and total organic carbon removal, and biomass and beta-carotene yields reached 63.8%, 87.2%, 64.1%, 678 mg/L, and 4.02 mg/L, respectively, after 15 days of treatment. To further improve beta-carotene accumulation, a two-step strategy was adopted. By changing the culture medium from the anaerobically digested PLW to modified BG-11 medium and applying optimal culture conditions of 180 ps mu salinity, 14 mg/L nitrogen, and 250 mu mol/m(2)/s light intensity in the second step, the beta-carotene yield reached 7.26 mg/L, 42.4% more than in the first step. Moreover, the salinity was found to be the most crucial factor influencing beta-carotene accumulation in the second step.
机译:使用厌氧消化废水培养微藻可以同时实现废水处理和生物质采集。然而,以前的作品主要集中在废水处理或生物能源的生产上,而少数研究进行了高附加值产品生产。因此,该研究旨在使用厌氧消化的家禽凋落物废水(PLW)来获得生物质和β-胡萝卜素。研究了污染物去除,生物质生产和β-胡萝卜素积累的可行性和最佳条件。结果表明,Dunaliella Fachb-558可以利用铵作为唯一的氮源。具有36 ps mu盐度的最佳条件和200μmol/ m(2)/ s光强度,总氮,总磷和总有机碳除去,生物质和β-胡萝卜素产量达到63.8%,87.2%,在处理15天后,分别在64.1%,678 mg / L和4.02 mg / L.为了进一步改善β-胡萝卜素积累,采用了两步策略。通过将培养基从厌氧物质消化的PLW改变为改性BG-11培养基并在第二步中施加180 ps mu盐度,14mg / l氮气和250μmmol/ m(2)/ s光强度的最佳培养条件,β-胡萝卜素产率达到7.26mg / L,比第一步更少42.4%。此外,发现盐度是影响第二步中β-胡萝卜素积累的最关键因素。

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