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首页> 外文期刊>Journal of Water Resource and Protection >Impact on Wastewater Quality of Biopellets Composed of &i&Chlorella vulgaris&/i& and &i&Aspergillus niger&/i& and Lipid Content in the Harvested Biomass
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Impact on Wastewater Quality of Biopellets Composed of &i&Chlorella vulgaris&/i& and &i&Aspergillus niger&/i& and Lipid Content in the Harvested Biomass

机译:小球藻组成的生物颗粒对废水质量的影响黑曲霉和/ i黑曲霉/ i。和生物质中的脂质含量

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Filamentous fungi can be used to form easily harvested pellets with microalgae (fungal-assisted algal harvesting) in order to advance the sustainability and economic feasibility of wastewater treatment using microalgae. In experiments employing the microalga Chlorella vulgaris and using the filamentous fungus Aspergillus niger for harvesting, this study investigated the effect on water quality and the quantity and quality of lipids in the biomass produced. Major reductions in the concentrations of total nitrogen, ammonium-nitrogen and total phosphorus were observed after addition of the fungal spores (day 5) and during fungal growth and entrapment of the algal cells. At harvest (day 8), the decrease in total nitrogen was 47.4% ± 18.4% of the initial value, corresponding to a reduction of 41.9 ± 17.1 mg·nitrogen·L~(-1). For total phosphorus, the decrease was 94.4% ± 3.2%, corresponding to a reduction of 6.4 ± 0.2 mg·phosphorus·L~(-1). A significant decrease in concentration of the micropollutant diclofenac was observed at harvest, to 5.1 ± 4.0 μg·L~(-1) compared with an initial concentration of 9.5 ± 0.6 μg·L~(-1). A significant decrease in total lipids in the biomass was observed after fungal-assisted algal harvesting, from 58.7 ± 2.7 μg·mg~(-1) at day 5 (algal biomass only) to 34.2 ± 2.7 μg·mg~(-1) at day 8 (fungal-algal biomass). However, because of high biomass production, the amount of lipids produced per litre of wastewater increased from 5.6 ± 0.9 mg on day 5 to 20.6 ± 4.9 mg on day 8.
机译:丝状真菌可用于与微藻形成易于收获的颗粒(真菌辅助藻类收获),以提高使用微藻处理废水的可持续性和经济可行性。在使用微藻小球藻和丝状真菌黑曲霉收获的实验中,本研究调查了对水质以及所产生生物质中脂质的数量和质量的影响。在添加真菌孢子后(第5天)以及在真菌生长和藻类细胞捕获期间,观察到总氮,铵氮和总磷的浓度大幅降低。在收获时(第8天),总氮的减少为初始值的47.4%±18.4%,相当于减少了41.9±17.1 mg·氮·L〜(-1)。总磷的减少量为94.4%±3.2%,相当于减少了6.4±0.2 mg·磷·L〜(-1)。与收获时的初始浓度9.5±0.6μg·L〜(-1)相比,收获时微污染物双氯芬酸的浓度显着下降至5.1±4.0μg·L〜(-1)。真菌辅助藻收获后,生物量中的总脂质显着降低,从第5天的58.7±2.7μg·mg〜(-1)(仅藻类生物量)降至34.2±2.7μg·mg〜(-1)在第8天(真菌-藻类生物质)。但是,由于高生物量产生,每升废水产生的脂质量从第5天的5.6±0.9 mg增加到第8天的20.6±4.9 mg。

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