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CO_2 Bubbling to Improve Algal Growth, Nutrient Removal, and Membrane Performance in an Algal Membrane Bioreactor

机译:CO_2起泡以改善藻类膜生物反应器中的藻类生长,营养去除和膜性能

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摘要

Algae generally prefer CO2 through passive gas diffusion to HCO3- or CO32-, as uptake of carbonate species relies on active transport. In this study, the effects of CO(2 )bubbling on algal growth, nutrient uptake, lipid accumulation, and membrane fouling control were investigated in an algal membrane bioreactor (A-MBR). Bubbling with 10% CO2 in the A-MBR system increased algal specific oxygen production rate by 43 +/- 5% and algal productivity by 39 +/- 1%, even though there was abundant dissolved inorganic carbon available in the secondary wastewater effluent (about 3.6 mM). Meanwhile, nitrogen removal capacity increased from originally 2.6 +/- 0.4 g/ m(3).d to 3.6 +/- 0.4 g/m(3).d through continuous CO2 bubbling. Furthermore, membrane fouling was significantly reduced in the A-MBR system with CO2 addition, likely because of reduced mineral precipitation on the membrane at lower pHs.
机译:藻类通常更喜欢通过被动气体扩散而不是HCO3-或CO32-来吸收CO2,因为碳酸盐种类的吸收依赖于主动运输。在这项研究中,在藻类膜生物反应器(A-MBR)中研究了CO(2)鼓泡对藻类生长,养分吸收,脂质积累和膜污染控制的影响。即使在二级废水中有大量溶解的无机碳可用,在A-MBR系统中鼓入10%CO2的气泡也会使藻类的特定氧气产生速率提高43 +/- 5%,藻类生产率提高39 +/- 1%(约3.6毫米)。同时,通过连续的鼓泡,除氮能力从原来的2.6 +/- 0.4 g / m(3).d增加到3.6 +/- 0.4 g / m(3).d。此外,在A-MBR系统中添加CO2可以显着减少膜结垢,这可能是由于较低pH值下膜上的矿物沉淀减少所致。

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