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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effect of ammonium nitrogen on microalgal growth, biochemical composition and photosynthetic performance in mixotrophic cultivation
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Effect of ammonium nitrogen on microalgal growth, biochemical composition and photosynthetic performance in mixotrophic cultivation

机译:氮氮对混纺栽培中微藻生长,生化组成和光合作用的影响

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摘要

To enhance microalgal growth and optimize ammonium utilization, the effect of ammonium on microalgal growth, biochemical composition and photosynthetic performance were investigated by mixotrophic cultivation of microalgaSpirulina platensiscomparing with autotrophic cultivation. The results indicated that elevated ammonium significantly affected the microalgal growth, but the microalga in mixotrophic cultivation showed better growth and stronger tolerance to higher ammonium. The microalgal proteins were increased by increasing nitrogen concentration. The synthesis of microalgal carbohydrates was inhibited by higher ammonium, especially in mixotrophic cultivation. The addition of ammonium decreased the microalgal lipids in autotrophic cultivation but increased microalgal lipids in mixotrophic cultivation. Ammonium negatively affected the microalgal photosynthetic performance. The inhibition was intensified by elevated ammonium, inducing stronger photosystem protection mechanism, particularly in mixotrophic cultivation. The rate of ammonium inhibition to the microalgal photosystem was quick in the early stage by decreasing electron transport rate of PS II.
机译:为了增强微藻生长和优化铵利用,通过微营养培养的微观营养培养,研究了铵对微藻生长,生物化学成分和光合作用的影响。结果表明,升高的铵显着影响了微藻生长,但混纺培养中的微藻表现出更好的增长和对高铵的耐受性更强。通过增加氮浓度来增加微藻蛋白。通过高铵抑制微藻碳水化合物的合成,特别是在混纺培养中抑制。加入铵在自养培养中降低了微藻脂质,但在混纺培养中增加了微藻脂质。铵对微藻光合作用的负面影响。通过升高的铵,诱导更强的照相保护机制,诱导抑制抑制,特别是在混纺培养中。通过降低PS II的电子传输速率,在早期阶段快速抑制微藻照相速率。

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