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The effects of Parachlorella kessleri cultivation on brewery wastewater

机译:凯氏小球藻培养对啤酒废水的影响

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Bioindustrial wastewaters, often characterised by high carbon and nitrogen contents, have shown promise as a valuable resource for the cultivation of beneficial microorganisms. The purpose of this study was to assess if Parachlorella kessleri could utilise brewery wastewater (Br WW) for growth and production of metabolites. P. kessleri was cultivated on different concentrations of Br WW over 14 days. Higher concentrations of Br WW led to an approximate two-fold increase in dry cell weight yielding a maximum of 12.3 g DCW/L. High glucose and nitrogen utilisation was associated with high algal biomass yields, with a 97% reduction in glucose achieved in 50% (v/v) Br WW cultures after 14 days. Assessing the benefits to P. kessleri, increases in oleic and a-linoleic acids were seen in 50 and 10% (v/v) Br WW cultures. Concentration of Br WW did not have an impact on the overall antioxidant activities of microalgal cultures, however, it did affect phenolic levels (2.4-fold increase) in 50% (v/v) Br WW cultures. This research demonstrated that P. kessleri did utilise the carbon and nitrogen content in the Br WW for growth and metabolite production, thereby reducing the nutrient load of the Br WW.
机译:通常以高碳和高氮含量为特征的生物工业废水已显示出有望成为有益微生物培养的宝贵资源。这项研究的目的是评估鹦鹉螺小球藻是否可以利用啤酒废水(Br WW)来生长和生产代谢产物。在14天内,在不同浓度的Br WW上培养了凯斯勒体育杆菌。 Br WW的较高浓度导致干细胞重量增加大约两倍,从而产生最大12.3 g DCW / L。葡萄糖和氮的高利用率与藻类生物量的高产量有关,在14天后50%(v / v)Br WW培养物中的葡萄糖降低了97%。评估对凯斯勒假单胞菌的好处,在50%和10%(v / v)的Br WW培养物中,油酸和α-亚油酸增加。 Br WW的浓度对微藻培养物的总体抗氧化活性没有影响,但是,它确实影响了50%(v / v)Br WW培养物中的酚水平(增加了2.4倍)。这项研究表明,凯斯勒氏菌确实利用了Br WW的碳和氮含量来生长和代谢产物,从而降低了Br WW的营养负荷。

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