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化学循环燃烧
相关语句
  chemical-looping combustion
     Progress in Oxygen Carriers for Chemical-Looping Combustion
     化学循环燃烧工艺中载氧体的研究进展
短句来源
     Research Progresses in Oxygen Carriers for Chemical-looping Combustion
     化学循环燃烧载氧体的研究进展
短句来源
     Chemical-looping combustion(CLC)is a new combustion technology,which can capture CO2 and remove NOx simultaneously.
     化学循环燃烧是集分离捕集CO2和去除NOx为一体的新型燃烧技术。
短句来源
     Based on the principle of exergy, this paper introduces the principle of energy conversion in the novel system, and points out that cascade utilization of exergy between both chemical combustion process and thermal cycle process will make a breakthrough in improving energy efficiency and reducing environmental pollution. The generalized energy system also exploits a novel chemical-looping combustion system with no flame, for removing CO 2 and eliminating NO x .
     基于能的品位原理 ,介绍了新系统的能量转换原理 ,指出化学燃烧过程与热力循环过程能的品位梯级利用是提高能源效率与减少环境污染的突破口 ,并开拓出新颖的无火焰化学循环燃烧 ,为解决CO2 回收和根除NOx 产生提供了新思路 .
短句来源
     Chemical-looping combustion(CLC) is a new and promising combustion technology for its capability to separate and(capture) CO_2 and to eliminate NO_X at the same time.
     化学循环燃烧工艺是当前集分离捕集CO2和根除NOX为一体化的新型燃烧技术。
短句来源
  “化学循环燃烧”译为未确定词的双语例句
     The selection of oxygen carriers and the requirements for oxygen carrier performance are summarized. The performances of different oxygen carriers are also analyzed,such as NiO based,Fe2O3 based,CuO based,CoO based and Mn2O3 based oxygen carriers.
     综述了化学循环燃烧载氧体的选材、载氧体的性能要求,对各系载氧体(如NiO系、Fe2O3系、CuO系、CoO系和Mn2O3系载氧体)的性能进行了对比分析;
短句来源
     The advances in research of new processes for separation and capture of CO_2 were introduced,including electrochemical process,membrane process and chemical recirculation combustion process.
     介绍了CO2分离捕集最新工艺———电化学法、膜法、化学循环燃烧法的研究进展。
短句来源
  相似匹配句对
     Research on chemical treatment of circulating cooling water
     循环冷却水化学处理的研究
短句来源
     Chemical Cleaning of Circulating Cooling Water System
     循环冷却水系统化学清洗
短句来源
     The Chemistry of Retardation of Combustion
     阻燃化学
短句来源
     Shock Wave Chemistry
     冲击波化学
短句来源
     RECYCLE
     循环再利用
短句来源
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  chemical-looping combustion
Carbon deposition characteristics and regenerative ability of oxygen carrier particles for chemical-looping combustion
      
For gaseous fuel combustion with inherent CO2 capture and low NOx emission, chemical-looping combustion (CLC) may yield great advantages for the savings of energy to CO2 separation and suppressing the effect on the environment.
      
A 10 kW prototype for chemical-looping combustion was designed, built and run with nickel-based oxygen carrier particles.
      
A comprehensive research programme was undertaken to develop chemical-looping combustion technology.
      
A fluidized-bed combustion process with inherent CO2 separation; application of chemical-looping combustion.
      
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Focusing on an approach of solving two key problems of energy and environment simultaneously,the development of the polygeneration system combining chemical process with power process has been summarized,and a concept of generalized total energy system has been proposed. The concept of the generalized energy system extends clean-energy production and environmental control to the previous polygeneration, which emphasizes chemical products. Based on the principle of exergy, this paper introduces the principle...

Focusing on an approach of solving two key problems of energy and environment simultaneously,the development of the polygeneration system combining chemical process with power process has been summarized,and a concept of generalized total energy system has been proposed. The concept of the generalized energy system extends clean-energy production and environmental control to the previous polygeneration, which emphasizes chemical products. Based on the principle of exergy, this paper introduces the principle of energy conversion in the novel system, and points out that cascade utilization of exergy between both chemical combustion process and thermal cycle process will make a breakthrough in improving energy efficiency and reducing environmental pollution. The generalized energy system also exploits a novel chemical-looping combustion system with no flame, for removing CO 2 and eliminating NO x . The generalized energy system has significant impact on clean-energy production and greenhouse-gas control for its characteristics of high-efficiency, cleanliness, and flexibility.

以探索可以同时解决能源与环境两个重大问题的途径为目的 ,概述了化工与动力工艺结合的多联产系统的进展以及开发清洁能源、控制温室气体的进展 ,并提出广义总能系统的概念 .广义总能系统概念拓展了以往多联产系统侧重化工产品生产的概念 ,将清洁能源生产与环境问题控制引入多联产系统中 .基于能的品位原理 ,介绍了新系统的能量转换原理 ,指出化学燃烧过程与热力循环过程能的品位梯级利用是提高能源效率与减少环境污染的突破口 ,并开拓出新颖的无火焰化学循环燃烧 ,为解决CO2 回收和根除NOx 产生提供了新思路 .广义总能系统以其学科交叉领域的创新性和前瞻性及系统高效、灵活与清洁等特点 ,在清洁能源生产和温室气体控制方面具有深远意义

In this study,the development and deficiency of many newseparate and capture techniques like electrochemistry,ionic liquid technique,chemical looping combustion and so on are summarized,introduce the actuality and development foreground of reduction emission technology of CO 2(the development of new energy sources and reproducible energy sources,improve energy sources'effiˉciency and economize energy sources)、Carbon sequestration technique(ocean sequestration,geologiˉcal sequestration)and analyze the economic...

In this study,the development and deficiency of many newseparate and capture techniques like electrochemistry,ionic liquid technique,chemical looping combustion and so on are summarized,introduce the actuality and development foreground of reduction emission technology of CO 2(the development of new energy sources and reproducible energy sources,improve energy sources'effiˉciency and economize energy sources)、Carbon sequestration technique(ocean sequestration,geologiˉcal sequestration)and analyze the economic cost of carbon sequestration.Meanwhile the spare meaˉsures of carbon sequestration are brought forward and point out the light biosynthesis reaction is the most economy,efficiency,potential carbon sequestration technique was presented.

概述了当前分离捕集新工艺(电化学法、离子液体法和化学循环燃烧法等)的发展及不足,介绍了减排技术领域(新能源和可再生能源的开发利用、提高能源效率与节能)、碳封存领域(海洋封存、地质封存)的现状及发展前景,并分析了碳封存的经济性成本,同时提出了CO2封存的备选方法,指出了生物固定技术是最经济、最有效、最具潜力的CO2封存技术。

The advances in research of new processes for separation and capture of CO_2 were introduced,including electrochemical process,membrane process and chemical recirculation combustion process.The prospects of CO_2 reutilization were analyzed,such as using gaseous CO_2 as carbon source for organism and auxiliary for injection molding and synthesis materials for organic compounds(like carbamate and surfactant);using liquid CO_2 for artificial diamond production,heat pump drying and supercritical CO_2 extraction;and...

The advances in research of new processes for separation and capture of CO_2 were introduced,including electrochemical process,membrane process and chemical recirculation combustion process.The prospects of CO_2 reutilization were analyzed,such as using gaseous CO_2 as carbon source for organism and auxiliary for injection molding and synthesis materials for organic compounds(like carbamate and surfactant);using liquid CO_2 for artificial diamond production,heat pump drying and supercritical CO_2 extraction;and using solid CO_2(dry ice)for cold jet cleaning,etc.CO_2 is a latent rich carbon source,it is necessary to develop new reutilization processes for it and speed up its industrialized reutilization.

介绍了CO2分离捕集最新工艺———电化学法、膜法、化学循环燃烧法的研究进展。评述分析了CO2的各种资源化应用前景:CO2气体用作生物碳源、辅助注射成型剂及有机物(如氨基甲酸酯、表面活性剂)合成原料等;液态CO2用于人造金刚石、热泵干燥、超临界CO2萃取及固体干冰冷喷射清洗等。CO2作为一种潜在的丰富碳源,应不断研发其新的应用领域,加快其工业化应用。

 
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