scholarly journals Corrigendum to “Mitigating NO emissions from an ammonia-fueled micro-power system with a perforated plate implemented” [J. Hazard. Mater. 401 (2021) 123848]

2021 ◽  
Vol 418 ◽  
pp. 126179
Author(s):  
Tao Cai ◽  
Dan Zhao
2021 ◽  
Vol 145 ◽  
pp. 111150 ◽  
Author(s):  
Tao Cai ◽  
Dan Zhao ◽  
Yuze Sun ◽  
Siliang Ni ◽  
Weixuan Li ◽  
...  

2021 ◽  
Vol 401 ◽  
pp. 123848
Author(s):  
Tao Cai ◽  
Dan Zhao ◽  
Xinyan Li ◽  
Baolu Shi ◽  
Junwei Li

2001 ◽  
Author(s):  
K. Bruce ◽  
R. Richards ◽  
D. Bahr ◽  
C. Richards

Abstract Work toward the development of a thin-film piezoelectric membrane generator is presented. The membrane generator is the central component of a new MEMS power generation system, the P3 micro power system. The P3 micro power system is based on a two-dimensional, modular architecture, in which the individual generic modules or unit cells each have all the functions of an engine integrated. Each unit cell is an external combustion engine, in which thermal power is converted to mechanical power through the use of a novel thermodynamic cycle that approaches the ideal vapor Carnot cycle. Mechanical power is converted into electrical power through the use of a thin-film piezoelectric membrane generator. This paper introduces the concept of the thin-film piezoelectric membrane generator, and describes its design and fabrication. Results of a study to characterize the performance of the piezoelectric membrane generator under expected operating conditions are presented. Current prototypes of the membrane generator are shown to be capable of producing a peak power of 0.1 milliWatts at a voltage of 0.5 Volts.


2008 ◽  
Author(s):  
Yongtai He ◽  
Yangqiu Li ◽  
Lihui Liu ◽  
Lei Wang

2021 ◽  
Vol 246 ◽  
pp. 114664 ◽  
Author(s):  
Jiaqiang E ◽  
Jiangjun Ding ◽  
Jingwei Chen ◽  
Gaoliang Liao ◽  
Feng Zhang ◽  
...  

2006 ◽  
Vol 16 (10) ◽  
pp. 2014-2020 ◽  
Author(s):  
Zhiyong Xiao ◽  
Guizhen Yan ◽  
Chunhua Feng ◽  
Philip C H Chan ◽  
I-Ming Hsing

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