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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Embedding photosynthetic biorefineries with circular economies: Exploring the waste recycling potential of Arthrospira sp to produce high quality by-products
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Embedding photosynthetic biorefineries with circular economies: Exploring the waste recycling potential of Arthrospira sp to produce high quality by-products

机译:用循环经济嵌入光合生物档案:探索Arthrospira SP的废物回收潜力,以生产高质量的副产品

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This study was conducted with the aim of embedding circular economies (waste recycling) with photosynthetic biorefineries, for production of commercially viable by-products. Since nitrogen source constitute the major input costs for commercial Arthrospira sp. production, the use of nitrogen rich wastewater for Arthrospira sp. cultivation could significantly reduce their production costs. This study evaluated the effects of high concentrations (8.5-120 mM) of alternative nitrogen sources (urea, ammonium and nitrite) on the biochemical, pigment and proteomic profile of Arthrospira sp., under batch and continuous conditions. Arthrospira sp. cells fed with urea were quantified with modified biochemical and proteomic profile compared to the nitrate fed cells. No inhibitory effect of urea was observed on the biomass even at 120 mM. Nitrite fed cells exhibited comparable biochemical and proteomic profiles as nitrate fed cells. These results clearly indicated at the possibility of using urea rich wastewater streams for profitable cultivation of Arthrospira sp.
机译:该研究是以嵌入光合生物档案的循环经济(废物回收)的目的进行,用于生产商业上可行的副产品。由于氮源构成了商业arthrospira sp的主要投入成本。生产,使用富含氮废水的亚龙烃。培养可以显着降低其生产成本。该研究评估了高浓度(8.5-120mm)的替代氮源(尿素,亚铵和亚硝酸盐)对Arthrospira sp的生化,颜料和蛋白质形象的影响。,在批量和连续条件下。 arthrospira sp。与硝酸酯喂养细胞相比,用修饰的生物化学和蛋白质组曲线向加入尿素的细胞。即使在120mm下也没有在生物质上观察到尿素的抑制作用。亚硝酸盐喂养的细胞表现出可比较的生物化学和蛋白质组学曲线作为硝酸盐喂养细胞。这些结果清楚地表明了使用尿素富含废水流的可能性,用于盈利培养arthrospira sp。

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