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化学链式燃烧
相关语句
  chemical looping combustion
     Chemical looping combustion can effectively separate out CO2 with a simultaneous release of energy.
     化学链式燃烧能在能量释放的同时有效分离CO2。
短句来源
  相似匹配句对
     Radioanalytical Chemistry
     放射分析化学
短句来源
     CHAPTER 5 MARINE SEDIMENTATION Section 5 Sedimentary Chemistry
     沉积物化学
短句来源
     Electric-discharge non-chain pulsed HF chemical laser
     放电引发的非链式脉冲HF化学激光器
短句来源
     OPTIMIZATION OF SOFC POWER GENERATION SYSTEM WITH CHEMICAL LOOPING COMBUSTOR
     采用化学链式燃烧器的固体氧化物燃料电池发电系统优化
短句来源
     Chemical looping combustion can effectively separate out CO2 with a simultaneous release of energy.
     化学链式燃烧能在能量释放的同时有效分离CO2。
短句来源
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  chemical looping combustion
Chemical looping combustion of coal in interconnected fluidized beds
      
Chemical looping combustion is the indirect combustion by use of oxygen carrier.
      
In this paper, chemical looping combustion of coal in interconnected fluidized beds with inherent separation of CO2 is proposed.
      
Thermodynamics analysis indicates that NiO/Ni oxygen carrier is the optimal one for chemical looping combustion of coal.
      
Simulation of the processes for chemical looping combustion of coal, including coal gasification and reduction of oxygen carrier, is carried out with Aspen Plus software.
      
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SOFC power generation system with chemical looping combustor is a kind of new solid oxide fuel cell combined cycle. The key difference between other SOFC power systems and this one is the adoption of chemical looping combustor. But this configuration might not be the best one. So an optimization both of flowsheet and parameters was initiated in order to improve the performance of CL-FCCC. Both optimal flowsheet and fundamental parameters can be obtained simultaneously.

化学链式燃烧器和固体氧化物燃料电池相结合的发电系统是一种新型联合循环。本文通过对包含更多可能结构的改进流程进行系统参数和流程同步优化,达到进一步提高循环性能的目的。

Chemical looping combustion can effectively separate out CO2 with a simultaneous release of energy.A simulation study of the performance of a combined cycle system featuring integrated coal-gasification chemical-looping combustion with FeO/Fe3O4/Fe2O3 serving as an oxygen carrier has been conducted by using software ASPEN PLUS.In the meantime,the effect of air reactor temperature,cooling-air flow rate and supplementary firing temperature at the turbine inlet on such parameters as system efficiency,oxygen consumption...

Chemical looping combustion can effectively separate out CO2 with a simultaneous release of energy.A simulation study of the performance of a combined cycle system featuring integrated coal-gasification chemical-looping combustion with FeO/Fe3O4/Fe2O3 serving as an oxygen carrier has been conducted by using software ASPEN PLUS.In the meantime,the effect of air reactor temperature,cooling-air flow rate and supplementary firing temperature at the turbine inlet on such parameters as system efficiency,oxygen consumption rate and CO2 emissions etc.was also studied.The simulation results indicate that when the supplementary firing temperature at the turbine inlet is kept at 1350 ℃ and the air reactor temperature increases from 850 ℃ to 1100℃,CO2 emissions will drop from 396 g/(kWh) to 210 g/(kWh);the system efficiency will decrease from 44.04% to 43.19%.An increase in cooling-air flow rate will also reduce the system efficiency.When the supplementary firing temperature at the turbine inlet goes up,the CO2 emissions will increase accordingly.There exists an optimum compression ratio at a given turbine inlet temperature.

化学链式燃烧能在能量释放的同时有效分离CO2。运用ASPEN PLUS软件对FeO/Fe3O4/Fe2O3作载氧体的整体煤气化链式燃烧联合循环系统性能进行了模拟研究,分析空气反应器温度、冷却空气率、透平进口前补燃温度对系统效率、氧耗量和CO2排放量等参数的影响。模拟结果表明,维持透平进口前补燃温度1350℃,当空气反应器温度从850℃提高到1100℃时,CO2排放量从396 g/(kWh)降低到210g/(kWh),系统效率从44.04%降低到43.19%;提高冷却空气率,系统效率降低;提高透平进口前补燃温度将增加CO2的排放量;在一定的透平进口温度下,存在最佳压缩比。

 
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