煅烧

duàn shāo
  • calcine;calcination;burning;incineration;incinerate
煅烧煅烧
煅烧 [duàn shāo]
  • [calcine] 使(如无机物)加热至高温,但不熔化,目的是使产生有用的物理变化和化学变化,以便转化或除去所含不需要的某种物质

煅烧[duàn shāo]
  1. 在煅烧以后,c轴伸长明显使原有的晶格畸变消失。

    After calcination the lattice parameter c grows obviously and the old crystal lattice distortion disappears .

  2. O2/CO2气氛下石灰石煅烧及烧结特性研究

    The investigation on characteristics of calcination and sintering of limestone in o_2 / co_2 atmosphere

  3. 通过粉体的X射线衍射分析了煅烧温度对粉体的影响。

    The effect of calcine on the power is proved by x - ray diffraction .

  4. V2O5对水泥熟料煅烧和性能的影响

    Effect of V_2O_5 , on clinker burning and clinker properties

  5. 快速煅烧分解石灰石对其吸收CO2和SO2的影响

    Effects of Rapid Limestone Calcination on Carbonation or Sulphation of Calcined Lime by CO_2 or SO_2

  6. 高温煅烧条件下石油焦和沥青焦的物理结构及其CO2气化特性

    Physical structures and co_2 gasification characteristics of petroleum coke and pitch coke at the condition of high temperature calcination

  7. 快速升温煅烧对C2S和C3S形成过程的影响

    The Effect of Rapid Heating-Up Burning on the process of the Formation Of C2s and C3S

  8. 碱(Na2O)对道路水泥的煅烧及性能的影响

    The Effect of Alkali ( Na_2O ) on the Calcination and Properties of Highway Cement

  9. 醇盐水解快速煅烧法制备球形超细α-Al2O3粉

    Preparation of spherular ultrafine α - Al_2O_3 powder by hydrolysis of alkoxide combining instant calcination

  10. 老化时间,1h;煅烧温度,600℃。

    Calcining temperature , 600 ℃; aging time , 1 h .

  11. 煅烧温度对钙钛矿复合金属氧化物的结构及其同时催化去除NOx和碳烟的影响

    Effect of calcination temperature on the structure and catalytic properties of perovskite mixed-oxide for simultaneous removal of NO _x and soot

  12. 梯度煅烧对PZT铁电薄膜表面形貌的影响

    Influence of Gradient Firing on the Microstructure of PZT Ferroelectric Thin Film

  13. 水泥立窑煅烧STD工业控制计算机分布式控制系统

    Distributing control system with STD industry control computer for shaft cement calcining kiln

  14. 罐式炉煅烧DG石油焦的碳质烧损

    Carbon Burning Loss of Calcining DG Petroleum Coke in Pot Furnace

  15. 混合碳酸稀土两步煅烧法制备超细CeO2

    Preparation of Ultrafine CeO_2 by Using Two Steps Annealing Method with Mix Rare Earth Carbonates as Raw Materials

  16. 改性煅烧高岭土对EPDM性能的影响

    Influence of modified calcinated kaolin on properties of EPDM

  17. 随着反应物浓度和煅烧温度的增加,所制得的ZnO纳米粒子平均粒径呈增大的趋势;加入表面活性剂可以有效的降低纳米颗粒的团聚。

    With the increase of the concentration of reactants and calcination temperature , the size of ZnO nanoparticles showed an increasing tendency .

  18. 研究了煅烧温度对TiO2粒子晶粒尺寸和晶相组成的影响。

    The effect of calcining temperature on the particle size and crystalline phase composition of TiO2 powders has been studied .

  19. 利用TG/DTA表征了共沉淀法制备的Ni/Al2O3系列催化剂母体的煅烧,以及反向浸渍制备过程中Ni(OH)2的煅烧和浸渍后硅源的分解过程。

    The calcination processes of Ni / Al2O3 precursor by co-precipitation and Ni ( OH ) 2 by reverse impregnation were studied by TG / DTA .

  20. 目的:探索煅烧骨(calcinedbonecalcium,CBC)作骨组织工程支架材料的可行性。

    AIM : To investigate the feasibility of calcined bone calcium ( CBC ) as scaffold material in bone tissue engineering .

  21. 煅烧温度6000C。C带,E。

    The calcination temperature is 6000C . a. zone , E.

  22. 煅烧温度对共掺杂TiO2光催化性能影响较大,最佳煅烧温度为600℃。

    The photocatalytic activity of co-doped TiO2 could be influenced greatly by calcined temperature . The optimal calcined temperature was 600 ℃ .

  23. 干凝胶于1150℃煅烧1h后完全转变为α-Al2O3;

    The dry gel would completely transform to α - Al2O3 after firing at 1 150 ℃ for 1 h ;

  24. 讨论了煅烧至不同温度时,NiO电极的电化学性质以及电容器性能。

    We discuss the electrochemical property and capacitive behavior of the NiO capacitor electrode in different annealing temperature .

  25. 准气相反应法中煅烧温度对ZrO2微球结构特性的影响

    Effect of Calcination Temperature on the Structure of the ZrO_2 Microspheres Synthesized by Quasi-gaseous State Reaction

  26. 对美国AlF3流化床煅烧冷却器密封结构改进的建议

    Suggestions on Improving the Sealing Structure of the American AlF_3 Fluidized-bed Calciner-cooler

  27. 负载体系中,TiO2以薄膜的形式包覆在ACF的表面,在ACF条带状沟槽处的薄膜煅烧时容易开裂,裂口处是负载体系结合性的薄弱环节。

    TiO2 film located groove in ACF easy to craze and the crack was the combination weakness of support system .

  28. 部分制备条件影响LDO的选择性。对LDO的煅烧条件研究结果表明,煅烧温度、煅烧时间均影响LDO的活性和选择性。

    Calcination temperature influences catalyst property , and calcination time also influence catalyst activity .

  29. 煅烧温度较低时,ZnO纳米晶体的生长模式为正常扩散生长,煅烧温度在800℃时,发生了竞争生长现象。

    The growth mode of ZnO nanocrystals agrees with normal diffusion growth theory at relatively low temperature but the phenomenon of competitive growth mode occurred at 800 ℃ .

  30. 400℃煅烧后,TiO2纳米管的管状结构被破坏,变为锐钛矿型的实心结构。

    After being calcined at 400 ℃ for 3 h , the tubulose structure was destroyed accompanied with phase transforming from amorphous into the anatase structure .