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首页> 外文期刊>Biochemical Engineering Journal >Ultraviolet-B radiation of Haematococcus pluvialis for enhanced biological contact oxidation pretreatment of black odorous water in the symbiotic system of algae and bacteria
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Ultraviolet-B radiation of Haematococcus pluvialis for enhanced biological contact oxidation pretreatment of black odorous water in the symbiotic system of algae and bacteria

机译:Haematococcus Pluvialis的紫外-B辐射,增强生物接触藻类水中的黑色光血水中的预处理藻类和细菌

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摘要

Black odorous water contains abundant organics and nutrients, such as nitrogen and phosphorus, which would lead to eutrophication of the water body and affect the water environment. In this study, the eutrophic water body in the campus landscape was taken as the research object, and the biological contact oxidation (BCO) method and co-cultivated indigenous microorganisms were adopted to pretreat black odorous water. Inoculating mutant strain M1 through ultraviolet-B radiation formed algae-bacteria symbiosis system in optimal effluent. The results showed that under the conditions of dissolved oxygen (DO) concentration of 5 mg/L, light intensity of 3000 Lx and inoculum size of 125,000 cells/mL, the optimal organic migration effect was achieved by the combined process. In addition, the ability of H. pluvialis to transform from green vegetative cells to red cyst cells under stressful conditions (strong light, nitrogen starvation, etc.) made it as an indicator for monitoring the degradation status of pollutants in black odorous water.
机译:黑色含量的水含有丰富的有机物和营养素,如氮和磷,这将导致水体的富营养化并影响水环境。在这项研究中,校园景观中的富营养化水体被视为研究对象,并采用生物接触氧化(BCO)方法和共同培养的土着微生物来预施加黑色的空气水。通过紫外-B辐射接种突变菌株M1在最佳流出物中形成藻类 - 细菌共生体系。结果表明,在溶解氧(DO)浓度为5mg / L的条件下,3000升的光强度为125,000个细胞/ ml,通过组合过程实现了最佳的有机迁移效果。此外,HP.PLUVIALIS在压力条件下从绿色营养细胞转化为红色囊肿的能力(强光,氮饥饿等)作为监测黑色含水中污染物的降解状态的指标。

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