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Effects of dissolved inorganic carbon and mixing on autotrophic growth of Chlorella vulgaris

机译:溶解性无机碳及混合对小球藻自养生长的影响

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摘要

Carbon dioxide (CO2(aq)) and bicarbonate ion (HCO3~- ) are the two inorganic carbon species used for the autotrophic growth of microalgae. An effective supply of the two dissolved inorganic carbon (DIC) species in the culture medium is critical when sparingly soluble CO2 gas is added within a narrow pH window suitable for the growth. In this study, sodium bicarbonate (NaHCO3) was used as an excellent buffer that can keep the DIC concentration high without its significant loss for open systems within a benign pH window for the growth of Chlorella vulgaris. The use of NaHCO3 along with CO2 gas under agitation could significantly enhance the growth rate by overcoming the DIC limitation for photosynthesis. The photosynthesis reaction was found to be limited by DIC concentration at an initial growth stage and subsequently by light availability at a later growth stage. A high concentration of NaHCCb helps increase a DIC concentration for photosynthesis, but was found to be limited by its salinity generated by Na~+ for this freshwater green alga, C. vulgaris.
机译:二氧化碳(CO2(aq))和碳酸氢根离子(HCO3-)是用于微藻自养生长的两个无机碳物质。当在适合生长的狭窄pH窗口内添加微溶的CO2气体时,在培养基中有效供应两种溶解的无机碳(DIC)物种至关重要。在这项研究中,碳酸氢钠(NaHCO3)被用作出色的缓冲液,可以使DIC的浓度保持高水平,而不会在普通小球藻生长的良性pH窗口内对开放系统造成重大损失。通过在搅拌下使用NaHCO3和CO2气体,可以克服DIC对光合作用的限制,可以显着提高生长速率。发现光合作用反应在初始生长阶段受DIC浓度限制,随后在随后的生长阶段受光利用率限制。高浓度的NaHCCb有助于增加光合作用的DIC浓度,但被Na +产生的盐度限制了这种淡水绿藻C. vulgaris。

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