首页> 美国卫生研究院文献>Microbial Biotechnology >Conversion of NaHCO3 to Na2CO3 with a growth of Arthrospira platensis cells in 660 m2 raceway ponds with a CO2 bicarbonation absorber
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Conversion of NaHCO3 to Na2CO3 with a growth of Arthrospira platensis cells in 660 m2 raceway ponds with a CO2 bicarbonation absorber

机译:碳酸氢钠的转化3至Na2一氧化碳3在660 m2的带有CO的水道池塘中生长有Arthrospira platensis细胞2碳酸氢盐吸收塔

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摘要

The weight ratio of Na /Na was investigated in order to improve microalgal productivity in large‐scale industrial operations by converting Na to Na with a growth of cells in 660 m raceway ponds. Two microalgal cultivation systems with a Na by‐product ( ) and a bicarbonation absorber ( ) were firstly thoroughly introduced. There was a 13.3% decrease in the initial weight ratio of Na /Na resulting in a 25.3% increase in the biomass growth rate with , compared to that of . Increased sunlight intensity, solution temperature and all resulted in both a higher absorbance and release, thereby increasing the weight ratio of Na /Na during the growth of . The biomass growth rate was peaked at 39.9 g m  day when the weight ratio of Na /Na was 3.7. Correspondingly, the cell pigments (chlorophyll and carotenoid) and trichome size (helix pitch and trichome length) reached to a maximum state of 8.47 mg l , 762 μg l , 57 and 613 μm under the system.
机译:钠的重量比 /钠 为了通过转化Na来提高大规模工业运营中的微藻生产力,进行了研究 到Na 在660 m的跑道池中有细胞生长。两种含钠的微藻培养系统 副产品()和 首先彻底引入了碳酸氢盐吸收剂()。 Na的初始重量比降低了13.3% /钠 与相比,导致生物量增长25.3%。日光强度,溶液温度的增加以及所有这些都导致较高的吸收和释放,从而增加了Na的重量比 /钠 在成长中。当Na的重量比达到39.9 g·m时,生物量增长率达到峰值 /钠 是3.7。相应地,在该系统下,细胞色素(叶绿素和类胡萝卜素)和毛状体大小(螺旋螺距和毛状体长度)达到最大状态8.47 mg·l,762μg·l,57和613μm。

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