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闪速热解
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  flash pyrolysis
     Lots of experiments on flash pyrolysis devolatilization for several biomass were carried out at 750K, 800K, 850K and 900K respectively in a laminar furnace.
     分别在750K,800K,850K,900K温度下,对几种典型生物质材料在层流炉上进行了闪速热解挥发实验.
短句来源
     The Technology of Biomass Flash Pyrolysis and the Application of Bio-oil
     生物质闪速热解技术及生物油的应用
短句来源
     The Development of ZSR-10 System Converting Flash Pyrolysis Biomass into Biofuel
     ZSR-10生物质闪速热解转化生物燃油装置的研制
短句来源
     (5), According to the above experiment result, synthesize to make use of the engineering the mechanics, engineering the material, machine the design to learn the principle, deduce, establish the theory of rotation cone flash pyrolysis reactor material resort time( t) and reasonable rotation velocity(or frequency) relation theory;
     (5)根据上述实验结果,综合运用工程力学、工程材料、机械设计学原理,推导、建立了转锥式闪速热解反应器物料滞留时间(τ)与转速(或频率)合理匹配理论;
短句来源
     OS examination, which provides the basis and convenience for flash pyrolysis fluidization device energy to convert the rate to compute with biomass energy utilization calculation;
     为闪速热解液化装置能量转化率计算和生物质能量利用率计算提供了依据和方便;
短句来源
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  flash heating
     Volatilization Characteristics of Two Agricultural Residues at Flash Heating Rate
     两种农业废弃物闪速热解挥发特性实验
短句来源
  “闪速热解”译为未确定词的双语例句
     A study on the structure safety design theory of rotating cone fast pyrolysis reactor
     转锥式闪速热解反应器结构安全性设计理论研究
短句来源
     Design and Study on ZKR-200 Rotating Cone Pyrolysis Liquefaction Reactor for Biomass
     ZKR-200型转锥式生物质闪速热解反应器的设计及研究
短句来源
     Under the support of national 863 project item "the new technology by integrated biomass repeated flash prolysis and liquefaction to product bio-oil (2001AA514060)", the dissertation author research modeling and simulation of rotating cone flash prolysis reactor for biomass.
     本文在国家863计划“集成式生物质多重闪速热解液化生产生物燃油新技术(2001AA514060)”项目的支持下,对生物质锥式闪速裂解反应器进行建模与仿真研究。
短句来源
     TECHNOLOGY OF ROTATING CONE PYROLYSIS FOR BIOMASS
     旋转锥式生物质闪速热解液化技术
     And (6), we gave the reactor's smallest cone angle certain, reactor cone wall strength design theory, the reactor production ability theory, the power design method and the critical rotation velocity theory.
     (6)提出了转锥式闪速热解反应器的最小锥角设计、锥壁强度设计、生产能力设计理论和功率计算方法及临界转速理论等。
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  flash pyrolysis
Flash Pyrolysis and Kinetic Parameters of Decomposition of Oil Shales
      
Flash pyrolysis of oil shales, distribution of the organic matter in the volatile products, solidresidue at various pyrolysis temperatures were studied.
      
The results are compared with the literature data on the products of the decomposition of butadiene rubbers of similar chemical compositions under flash pyrolysis conditions obtained by IR Fourier transform spectroscopy.
      
The application of this computation technic is given tacticity for flash pyrolysis of ethylene-propylene copolymers.
      
flash pyrolysis under oxygen and GC/MS for analysis of the decomposed products.
      
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  flash heating
A method for approximate calculations of melting under flash heating, diffusion, and vapor and gas release into vacuum is proposed.
      
In the first experiments, 100 ps laser flash heating is used to suddenly vaporize Al nanoparticles embedded in reactive oxidizing polymers nitrocellulose (NC) and Teflon.
      
Numerical estimation of the spatial resolution of thermal NDT techniques based on flash heating
      
The synthesized GICs offer record large expansion on flash heating.
      
These techniques include temporal background subtraction, use of a synchronized electronic shutter system, and cyclic flash heating.
      
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Biomass is a renewable energy resource,and biomass pyrolysis is a thermal chemical process which can produce liquid,gas and solid fuels in complete absence of oxygen or with a limited oxygen supply. A rotating cone flash pyrolysis device is introduced and its characters of the process parameters and products are discussed.The typical data on a bio oil by the conventional pyrolysis and the flash pyrolysis are compared according to the test results.A new path of producing renewable resource has been explored.

利用旋转锥式闪速热解装置,对生物质进行了闪速热解试验研究。生物质是一种可再生的能源,在无氧或有限氧气供给的条件下热解为液体、固体、气体3种燃料产品。介绍了以旋转锥式反应器为核心的闪速热解液化设备、工艺参数及产物特性,并根据此结果对比了常规热解、快速热解、闪速热解的生物油典型数据,为生物质废弃物的有效清洁利用及可再生能源的生产探索了新的途径。

Biomass is a renewable energy resources. By utilizing flash pyrolysis technology, the sawdust was converted into liquid product(bio oil)which is of easy storage , transport, handling and high energy volume density .The rotating cone flash pyrolysis system was tested to produce the bio oil. The bio oil was experimented in air pressure rectification and lower pressure rectification and then the different parts of it were analyzed by GC MS and nuclear magnetic resonance equipment.

该研究利用闪速热解液化技术将木屑转化为易储存、易运输、易处理、能量密度高的液体产品生物质油,对旋转锥式闪速热解液化系统进行了生物质热解液化生物质油的试验研究,并将生产的生物质油进行了常压精馏和减压精馏试验,用色谱质谱分析仪、核磁共振仪对其部分精馏组分进行了成分分析。

The biomass is a renewable energy. By flash pyrolysis technology, the biomass and other organic refuse could be converted into liquid fuel (bio-oil) which is of easy transport and high energy density. In the paper, the biomass flash pyrolysis system is introduced, the principle of the reactor which is the center of the system and the heat carrier dynamics in reactor are studied. The solid residence time of heat carrier is calculated with different cone angles and different rotating frequencies. On the basis...

The biomass is a renewable energy. By flash pyrolysis technology, the biomass and other organic refuse could be converted into liquid fuel (bio-oil) which is of easy transport and high energy density. In the paper, the biomass flash pyrolysis system is introduced, the principle of the reactor which is the center of the system and the heat carrier dynamics in reactor are studied. The solid residence time of heat carrier is calculated with different cone angles and different rotating frequencies. On the basis of these results,a convenient calculation method for further designing and improving the pyrolysis system is provided and all the parameters to the yield of the bio-oil can be optimized.

:生物质是一种可再生的能源资源,通过热解液化技术可将生物质(木屑、秸杆、稻壳及甘蔗渣等)有机废弃物液化为生物质油.本文介绍了自行设计的以旋转锥反应器为核心的闪速热解系统及反应器的工作原理,并对热载体在反应器内的动力学进行了分析.该系统可确定热载体在旋转锥不同锥角、不同旋转角频率w下,足以影响生物质油产率的重要参数一一固体滞留期t,为反应器的设计提供了极为方便的计算方法.

 
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