1) anode of biofuel cell

生物燃料电池阳极
1.
Then the nanocomposite was used to modify anode of biofuel cell and the performance of the modified electrode was studied.
用这种复合材料修饰酶基生物燃料电池阳极,并进行电化学性能考察。
2) planar anode-supported solid oxide fuel cell

平板式阳极支撑固体氧化物燃料电池
1.
3D Simulation of mass and heat transfer for planar anode-supported solid oxide fuel cell;

平板式阳极支撑固体氧化物燃料电池传质传热仿真研究
4) Microbial fuel cells

微生物燃料电池
1.
The application of the microbial fuel cells to wastewater treatment;

微生物燃料电池在废水处理中的应用
2.
Research Progress in Microbial Fuel Cells for Electrons Transfer of Electricigens

微生物燃料电池中产电微生物电子传递研究进展
3.
Based on this biological mechanism, Dissimilatory Metal Reduction Bacteria Rhodoferax ferrireducens was used to construct a suit of microbial fuel cells with sugars as fuel, and .
环境中的一些微生物通过还原金属氧化物进行无氧呼吸,而石墨电极与金属氧化物相似,也可以作为这类微生物呼吸作用的最终电子受体,利用这类微生物构建微生物燃料电池,以糖类物质为燃料,对电池产电情况、产电原理进行研究。
5) microbial fuel cell

微生物燃料电池
1.
Experimental research on integration of anaerobic microbial treatment and microbial fuel cells;
污水厌氧生化处理与微生物燃料电池的结合探讨
2.
A membrane electrode assembly typed microbial fuel cell for electricity generation;

“三合一”微生物燃料电池的产电特性研究
3.
Production of electricity from phenol using a microbial fuel cell;

以苯酚为燃料的微生物燃料电池产电特性
6) Biofuel cell

生物燃料电池
1.
Electrochemical properties of enzyme electrode in biofuel cell;

生物燃料电池酶电极电化学性能研究
2.
Enzyme-based biofuel cells possess several positive attributes for energy conversion,including renewable catalysts,flexibility of fuels,and the ability to operate at room temperature.
酶法生物燃料电池对能量转换有许多积极的贡献,包括可更新的催化剂、燃料的多样性及室温下的操作能力,但是酶法生物燃料电池仍然被许多条件限制。
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