煅烧
- calcine;calcination;burning;incineration;incinerate
-
[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
-
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 .
-
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
-
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 .
-
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
-
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
-
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
-
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
-
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
-
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
-
老化时间,1h;煅烧温度,600℃。
Calcining temperature , 600 ℃; aging time , 1 h .
-
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
-
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
-
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
-
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
-
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
-
改性煅烧高岭土对EPDM性能的影响
Influence of modified calcinated kaolin on properties of EPDM
-
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 .
-
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 .
-
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 .
-
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 .
-
煅烧温度6000C。C带,E。
The calcination temperature is 6000C . a. zone , E.
-
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 ℃ .
-
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 ;
-
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 .
-
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
-
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
-
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 .
-
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 .
-
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 ℃ .
-
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 .