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碱性阴离子交换膜燃料电池用于消除微藻固碳过程中溶氧效应的实验研究 被引量:1
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作者 宋秉烨 李明佳 +1 位作者 童自翔 刘占斌 《西安交通大学学报》 EI CAS CSCD 北大核心 2020年第8期27-34,共8页
针对微藻固碳过程中藻液产生的高浓度溶氧会抑制藻细胞生长、降低CO2固定效率的问题,搭建了管式光生物反应器实验台用于藻类的高效培养和固碳,提出了利用电化学方法抑制藻液中溶氧效应的研究思路。首先开展管式光生物反应器培养小球藻... 针对微藻固碳过程中藻液产生的高浓度溶氧会抑制藻细胞生长、降低CO2固定效率的问题,搭建了管式光生物反应器实验台用于藻类的高效培养和固碳,提出了利用电化学方法抑制藻液中溶氧效应的研究思路。首先开展管式光生物反应器培养小球藻的实验研究,对比了光生物反应器与锥形瓶2种培养装置对小球藻生长特性的影响,其次实验研究了利用碱性阴离子交换膜燃料电池的阴极氧还原反应去除藻液中的溶解氧。结果表明:管式光生物反应器运行10个周期之后,微藻的质量浓度达到769 mg/L,生物量增长了10倍,培养效果明显优于锥形瓶培养;经过系统持续运行4 h之后,藻液中的溶氧量由18.35 mg/L降低到6.19 mg/L,溶氧消耗效率为66.3%,电池的最大功率密度达到81 W/m^2。研究证明,采用燃料电池的阴极电化学反应可以实现藻液中溶解氧快速有效地消耗,这一方面提升了微藻的固碳效率,另一方面输出了电能,降低了系统能耗。 展开更多
关键词 光生物反应器 微藻固碳 溶氧消耗 碱性燃料电池
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Molecular dynamics simulation of alkaline electrolyte diffusion in anion exchange membrane
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作者 song bingye LI Dong +2 位作者 HE YaLing HUANG Dong TONG ZiXiang 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2020年第11期2241-2255,共15页
During the operation of alkaline direct liquid fuel cells,the alkaline electrolyte is usually needed in the anode electrode to accelerate the electrochemical reaction kinetics of the liquid fuel.However,the crossover ... During the operation of alkaline direct liquid fuel cells,the alkaline electrolyte is usually needed in the anode electrode to accelerate the electrochemical reaction kinetics of the liquid fuel.However,the crossover of the alkaline solution in the anode through the anion exchange membrane to the cathode can increase the transfer resistance of the oxygen in the cathode.In order to reduce the crossover of the alkaline solution,the diffusion process of the alkaline solution in the anion exchange membrane needs to be fully understood.In this work,interface models of anion exchange membrane-alkaline electrolytes are established based on the cell structure of the quaternary ammonium polysulfone(QAPS)membrane to simulate the dynamic process of the alkaline solution in the membrane.The effect of the type and the concentration of the alkaline solution on the transportation of the metal ions and OH^-in the membrane are studied.The results show that the agglomeration of Na+is formed more easily than K^+in the interface model.Because of the strong interaction of Na^+on OH^-,OH^-ions appear to be concentrated,resulting in that the diffusion coefficients of the metal ion and OH^-in the in Na^+solution are lower than those in the K^+solution.In addition,with the raised concentration of electrolyte solution,the aggregation degrees of the metal ions and OH^-can be increased,which means an enlarged mass transfer resistance of the components.Furthermore,by adding a polytetrafluoroethylene(PTFE)layer on the QAPS membrane,the distribution of metal ions tends to be concentrated,and the number of hydrophilic channels in the QAPS membrane is reduced,which significantly increases the alkali resistance of the anion exchange membrane. 展开更多
关键词 direct liquid fuel cells anion exchange membrane alkali crossover QAPS membrane
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