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Bicarbonate-based Integrated Carbon Capture and Algae Production System with alkalihalophilic cyanobacterium

机译:基于碳酸氢盐的嗜碱蓝细菌综合碳捕获和藻类生产系统

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摘要

An extremely alkalihalophilic cyanobacteria Euhalothece ZM001 was tested in the Bicarbonate-based Integrated Carbon Capture and Algae Production System (BICCAPS), which utilize bicarbonate as carbon source for algae culture and use the regenerated carbonate to absorb CO_2. Culture conditions including temperature, inoculation rate, medium composition, pH, and light intensity were investigated. A final biomass concentration of 4.79g/L was reached in tissue flask culture with 1.0M NaHCO_3/Na_2CO_3. The biomass productivity of 1.21g/L/day was achieved under optimal conditions. When pH increased from 9.55 to 10.51, 0.256M of inorganic carbon was consumed during the culture process. This indicated sufficient carbon can be supplied as bicarbonate to the culture. This study proved that a high biomass production rate can be achieved in a BICCAPS. This strategy can also lead to new design of photobioreactors that provides an alternative supply of CO_2 to sparging.
机译:在基于碳酸氢盐的碳捕集和藻类综合生产系统(BICCAPS)中测试了一种极其嗜盐的蓝细菌Euhalothece ZM001,该系统利用碳酸氢盐作为藻类培养的碳源,并使用再生的碳酸盐吸收CO_2。研究了培养条件,包括温度,接种率,培养基组成,pH和光强度。在用1.0M NaHCO_3 / Na_2CO_3进行的组织瓶培养中,最终生物量浓度达到4.79g / L。在最佳条件下,生物质生产率为1.21g / L /天。当pH从9.55增加到10.51时,在培养过程中消耗了0.256M的无机碳。这表明可以将足够的碳作为碳酸氢盐提供给培养物。这项研究证明,在BICCAPS中可以实现较高的生物质生产率。该策略还可以导致光生物反应器的新设计,从而为喷射提供替代的CO_2供应。

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