首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Application of Physicochemical Treatment Allows Reutilization of Arthrospira platensis Exhausted Medium An Investigation of Reusing Medium in Arthrospira platensis Cultivation
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Application of Physicochemical Treatment Allows Reutilization of Arthrospira platensis Exhausted Medium An Investigation of Reusing Medium in Arthrospira platensis Cultivation

机译:物理化学治疗的应用允许Arthrospira Platensis的再利用耗尽培养培养的培养培养培养培养基

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摘要

Since cultivations of Arthrospira platensis have a high water demand, it is necessary to develop treatment methods for reusing the exhausted medium that may prevent environmental problems and obtaining useful biomass. The exhausted Schlosser medium obtained from A. platensis batch cultivation in bench-scale mini-tanks was treated by varying concentrations of different coagulants, ferric chloride (6, 10, and 14 mg L-1) or ferric sulfate (15, 25, and 35 mg L-1) and powdered activated carbon (PAC, 30 and 50 mg L-1). Such treated effluent was restored with NaNO3 and reused in new cultivations of A. platensis performed in Erlenmeyer flasks. Reusing media through the cultivation of A. platensis showed satisfactory results, particularly in the medium treated with ferric chloride and PAC. The maximum cell concentration obtained in the flasks was 1093 mg L-1, which corresponded to the medium treated with ferric chloride (6 mg L-1) and PAC (30 mg L-1). This cellular growth was higher than in the medium treated with ferric sulfate and PAC, in which values of maximum cell concentration did not exceed 796 mg L-1. The cultures in the media after treatment did not modify the biomass composition. Thus, combined coagulation/adsorption processes, commonly used in water treatment processes, can be efficient and viable for treating exhausted medium of A. platensis, allowing the production of such biomass with the reduction of production cost and saving water.
机译:由于培养arthospira platensis具有高水需求,因此需要开发用于重用可能预防环境问题并获得有用生物质的耗尽介质的处理方法。通过不同凝结剂,氯化铁(6,10和14mg L-1)或铁硫酸铁(15,25,和硫酸铁(15,25和35mg L-1)和粉末活性炭(PAC,30和50mg L-1)。这种处理过的流出物用纳米3恢复,并在Erlenmeyer烧瓶中进行的新栽培中重复使用。通过培养来重用培养基。铂酶显示出令人满意的结果,特别是在用氯化铁和PAC处理的培养基中。在烧瓶中获得的最大细胞浓度为1093mg L-1,其对应于用氯化铁(6mg L-1)和PAC(30mg L-1)处理的培养基。这种细胞生长高于用硫酸铁和PAC处理的培养基中,其中最大细胞浓度的值不超过796mg L-1。治疗后培养基中的培养物未改变生物质组成。因此,常用于水处理过程的组合凝血/吸附过程,可以对治疗A.PlateSis的耗尽介质有效和可行,从而允许生产这些生物质的生产成本和节水。

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