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Dissolved inorganic carbon enhanced growth, nutrient uptake, and lipid accumulation in wastewater grown microalgal biofilms

机译:溶解的无机碳增强了废水中生长的微藻生物膜的生长,养分吸收和脂质积累

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摘要

Microalgal biofilms grown to evaluate potential nutrient removal options for wastewaters and feedstock for biofuels production were studied to determine the influence of bicarbonate amendment on their growth, nutrient uptake capacity, and lipid accumulation after nitrogen starvation. No significant differences in growth rates, nutrient removal, or lipid accumulation were observed in the algal biofilms with or without bicarbonate amendment. The biofilms possibly did not experience carbon-limited conditions because of the large reservoir of dissolved inorganic carbon in the medium. However, an increase in photosynthetic rates was observed in algal biofilms amended with bicarbonate. The influence of bicarbonate on photosynthetic and respiration rates was especially noticeable in biofilms that experienced nitrogen stress. Medium nitrogen depletion was not a suitable stimulant for lipid production in the algal biofilms and as such, focus should be directed toward optimizing growth and biomass productivities to compensate for the low lipid yields and increase nutrient uptake. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了生长用于评估废水和生物燃料生产原料的潜在营养去除方案的微藻生物膜,以确定碳酸氢盐改良剂对其生长,营养吸收能力和氮饥饿后脂质积累的影响。在有或没有碳酸氢盐修饰的藻类生物膜中,未观察到生长速率,营养物质去除或脂质积累的显着差异。由于培养基中溶解的无机碳储量很大,因此生物膜可能没有碳限制条件。然而,在用碳酸氢盐修饰的藻类生物膜中观察到光合速率的增加。碳酸氢盐对光合作用和呼吸速率的影响在经历氮胁迫的生物膜中尤为明显。中等的氮耗竭不是藻类生物膜中脂质生产的合适刺激物,因此,重点应放在优化生长和生物量生产力上,以补偿低脂质产量和增加养分吸收。 (C)2015 Elsevier Ltd.保留所有权利。

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