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1)  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。
2)  biofuel cells
生物燃料电池
1.
The recent research progress of enzymatic biofuel cells including the properties,structure and components of biofuel cells are briefly reviewed.
综述了酶生物燃料电池的研究进展,特别是近年来在电池结构、性能以及电池的正极和负极研究等方面的成果。
2.
Biofuel cells can utilize organic compounds in wastewater as fuel to generate electricity thus the wastewater can be reused.
生物燃料电池能充分利用生产和生活污水中的有机物,将有机废物中的化学能转变为电能,使原本需要额外投入成本处理掉的有机物被资源化利用。
3)  Microbial fuel cells
微生物燃料电池
1.
The application of the microbial fuel cells to wastewater treatment;
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
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。
4)  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
5)  MFC
微生物燃料电池
1.
Comparison of difference between two-chambered and single-chamber MFC;
双室和单室微生物燃料电池的研究及比较
2.
Microbial fuel cell(MFC) is a device directly converting microbial metabolic power into electricity with the microbial catalysts,which has the advantages of abundant fuel resource,mild reaction condition and high efficiency.
生物燃料电池(m icrob ial fuel cell,MFC)利用微生物催化剂将其代谢能直接转化为电能,具有原料广泛、反应条件温和、清洁高效等优点。
3.
As an alternative to alleviate the energy crisis and solve the environmentalproblems, microbial fuel cell (MFC) can generate electricity directly from thetreatment of wastewater and has become one of the focuses in the field ofenvironmental protection and energy recovery.
将微生物燃料电池(Microbial fuel cell,MFC)应用到废水处理领域,在处理有机废水的同时获得电能,是缓解当前能源危机和解决环境问题的有效途径,也是环境能源领域的热点研究课题之一。
6)  enzymatic biofuel cell
酶生物燃料电池
1.
It can be classified into microbial fuel cell and enzymatic biofuel cell.
按采用催化剂的不同,可分为微生物燃料电池和酶生物燃料电池
2.
Enzymatic biofuel cell is a device converting chemical energy directly with the biocatalysts, which has the advantage of abundant fuel resource, mild reaction condition and good biology consistency.
生物燃料电池利用生物催化剂酶直接把化学能转化为电能,是一种清洁、高效、安静运行的电化学发动机,具有燃料来源广泛、反应条件温和、生物相容性好等优点,是一种可再生的绿色能源。
补充资料:固体氧化物燃料电池
分子式:
CAS号:

性质: 以氧化锆陶瓷为固体电解质的一种高温型氢/氧或氢-CO/空气燃料电池。ZrO2(以Y2O3或CaO稳定)在800~1000℃时是一种氧离子导体,在ZrO2薄膜的两边涂以多孔导电物质,作为正、负电极。正极中氧在高温下离子化成为氧离子,它迁移通过ZrO2薄膜,与负极的氢和CO化合,分别生成H2O和CO2,同时输出电流。由于工作温度高达1000℃,电催化等问题不突出,如果充分利用余热,总的能量效率可达60%~65%,但材料的高温腐蚀问题不易解决。该燃料电池已进行过10~100kW级成套电池试运行。

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