首页> 外文期刊>International Journal of Photoenergy >Optimization of Gas-Water Absorption Equilibrium of Carbon Dioxide for Algae Liquors: Selection of Alkaline Buffering Chemicals
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Optimization of Gas-Water Absorption Equilibrium of Carbon Dioxide for Algae Liquors: Selection of Alkaline Buffering Chemicals

机译:藻类碳酸二氧化碳气体吸收平衡的优化:碱性缓冲化学品的选择

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摘要

The apparent Henry's Law constant (H'), which quantifies the concentration partition of a gas-liquid equilibrium of carbon dioxide (CO2), is used to optimize the absorption of carbon dioxide in algae liquors. The values of H' were examined under various conditions: in water at different temperatures (27 and 37 degrees C), in alkaline buffering chemicals (sodium hydroxide (NaOH) and sodium carbonate (Na2CO3)), and in aquatic algae plants (Egeria densa and Anubias barteri nana). The optimal conditions for CO2 absorption can be obtained by controlling the aqueous pH values (around weak alkalinity with pH 9-10) using sodium carbonate as an alkaline buffering chemical at 27 degrees C, yielding exact H' values of around 16.3-21.3 atm/M, which were obtained from the mean gaseous CO2 concentration of 803 ppm and the total aqueous carbonate concentration of 4.085mg/L. The experimental results reveal that an alkaline buffering compound, sodium carbonate, can be added to water to maintain a constant aqueous alkalinity enough for the fixation of carbon dioxide by the photosynthesis of green algae in a photobioreactor.
机译:表观亨利的定律常数(H'),其量化了二氧化碳(CO2)的气液平衡的浓缩分配,用于优化藻类液体中二氧化碳的吸收。在各种条件下检查H'的值:在不同温度(27和37℃)的水中,在碱性缓冲化学物质(氢氧化钠(NaOH)和碳酸钠(Na2CO3)中,和水生藻类(Egeria Densa)和anubias barteri nana)。 CO 2吸收的最佳条件可以通过在27℃下以碳酸钠作为碱性缓冲化学物质控制pH值(用pH 9-10周围的弱碱度)来获得,得到约16.3-21.3 atm /的精确H'值。 M,其从803ppm的平均气态CO 2浓度和总碳酸盐浓度为4.085mg / l。实验结果表明,碱性缓冲化合物,碳酸钠可以加入水中以维持恒定的含水碱度,足以通过光生物反应器中的绿藻光合固定二氧化碳。

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