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1)  final baking temperature
最终焙烧温度
1.
A review of the impact of baking parameters such as heat-up rate,final baking temperature and soaking time on the anode properties relevant to the anode behaviour in the electrolysis pots is presented.
在介绍参考文献实验结果的同时,结合笔者在实际生产中的工作经验,阐述了阳极焙烧参数,如升温梯度、最终焙烧温度及焙烧时间对阳极质量的影响。
2)  optimium roasting temperature
最佳焙烧温度
3)  calcination temperature
焙烧温度
1.
Influence of calcination temperature on properties of morpholine synthesis catalysts;
焙烧温度对合成吗啉催化剂性能的影响
2.
Effect of calcination temperature on magnesium promoted iron-based catalyst for Fischer-Tropsch synthesis;
焙烧温度对含Mg助剂的铁基催化剂F-T合成反应性能的影响
3.
Effect of calcination temperature on the structure and Fischer-Tropsch performance of Fe-Mn catalyst;
焙烧温度对Fe-Mn催化剂结构和F-T合成性能影响
4)  Roasting temperature
焙烧温度
1.
5 basicity pellets manufactured in shaft furnace with addition of fine ground limestone have excellent normal temperature strength and good metallungical property, but right roasting temperature and proper operation schedule must be used.
5碱度竖炉球团,球团矿具有良好的冶金性能和常温强度,但应采取适宜的焙烧温度和操作制度。
2.
We study the photocatalyzing properties of TiO 2 and compare their different crystal structures in different roasting temperature.
采用溶胶—凝胶法制备TiO2 薄膜 (玻片为载体 ) ,比较在不同的焙烧温度下制备的TiO2 薄膜对有机物的光催化氧化性能 ,用D XAX - 12 0 0全自动X射线衍射仪检测在不同的焙烧温度下制备的TiO2 薄膜的晶型结构 ,计算其锐钛型和晶红石晶型所占比例 ,从而确定通过控制焙烧温度来控制各种不同比例的晶型结构 ,提出温度对TiO2 薄膜对有机物的光催化氧化性能的影响机制。
3.
In addition,a certain amount of boron and magnesium can reduce the roasting temperature and the addition amount of bentonites during the production of pellet.
适量的硼镁复合添加剂可以降低球团矿的焙烧温度,并能减少膨润土的用量,有利于优化球团工艺。
5)  baking temperature
焙烧温度
1.
Effect of AlF_3 dopant and baking temperature on overpotential of carbon anode in aluminium electrolysis;
AlF_3添加剂和焙烧温度对铝电解炭阳极过电位的影响
2.
The influence of the In-doping amount and baking temperature on the zeta potential of the coating was studied.
以四氯化锡、三氯化铟和氨水为原料,采用原位生成法在α-Al2O3微粒表面制备了In掺杂的纳米SnO2涂层,研究了In掺杂量和焙烧温度对SnO2涂层zeta电位的影响规律和影响机理。
3.
One of the key factors affecting zeolite structure is baking temperature .
此方法中焙烧温度是影响沸石结构的主要因素之一,通过多次试验和跟踪分析,发现炉温控制方法应取多点温度为基准进行调节,并且应分段控制炉温,前段炉温控制在550℃,后段炉温控制在720℃,可使Y型沸石结晶度提高4。
6)  calcinations temperature
焙烧温度
1.
Effects of calcinations temperature on structure and catalytic performance of Ni/MgO-Al_2O_3 catalysts for partial oxidation of methane;
焙烧温度对甲烷催化部分氧化Ni/MgO-Al_2O_3催化剂结构和性能的影响
2.
Effects of calcinations temperature on performance of Ce_(0.65)Zr_(0.35)O_2 oxide;
焙烧温度对Ce_(0.65)Zr_(0.35)O_2储氧材料性能的影响
3.
This article has studied the influence of acid and alkali nature under different load capacity of the γ-Al2O3 sample modified by ZnO or CuO as well as the calcinations temperature,and has determined its superficial acid and alkali intensity and quantity with the adsorption calorimetry technology.
文章研究了不同担载量的ZnO或CuO改性的γ-Al2O3样品的酸碱特性以及焙烧温度的影响,并用吸附量热技术测定了其表面酸碱位的强度和数量。
补充资料:铂电阻温度表(见电阻温度表)


铂电阻温度表(见电阻温度表)


表。bod旧nZu wendubiao铂电阻温度表见电阻温
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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