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1)  carbon-containing
含碳
1.
So the ore belongs catacla-stic, refractory, carbon-containing.
05mm,含碳是钼的10余倍,而且云母类易浮矿物很高,这些都将对钼的浮选回收造成严重的影响,该矿石属极难选含碳多金属破碎带钼矿石。
2)  gold ore containing arsenic and carbon
含砷含碳
3)  carbonic [英][kɑ:'bɔnik]  [美][kɑr'bɑnɪk]
碳的,含碳的
4)  carbon-bearing pellet
含碳球团
1.
Under the condition of 1000~1200 ℃,study the effect of the carbon-bearing pellet strengths and metallization rate with different iron ore concentrate size,matching carbon ratio(carbon oxygen mol ratio),kind of additive and reduction temperature.
在1000~1200℃条件下研究了不同的矿粉粒度、配碳比、粘结剂、还原温度等对含碳球团强度及金属化率的影响。
2.
The carbon-bearing pellets made of zinc-bearing dust and sludge,iron concentrates and additive of agglomerant were reduced at 1 000~1 200 °C,the effects of different kinds of additive and reduction temperature on the strength and metallization rate of carbon-bearing pellets were studied.
将含锌尘泥、铁精矿及粘结剂混合造成的含碳球团在1050~1250℃条件下还原,研究了不同粘结剂、不同温度对其强度及金属化率的影响。
3.
A new technique that layer of carbon-bearing pellets is heated and direct reduced under conditon of parallel-flow heating with pre- heated air is put forword.
提出了一种顺流加热含碳球团直接还原的新方法。
5)  ore/coal composite pellet
含碳球团
1.
The behavior of sulfur,sulfur distribution and methods of decreasing or controlling the sulfur content in iron bead have been investigated during the reduction and melting in ore/coal composite pellets in the coal hot-air rotary hearth furnace process(CHARP).
对转底炉煤基热风熔融炼铁工艺(CHARP)含碳球团还原熔分过程中硫的分配、硫的行为以及如何降低或控制珠铁中的硫含量进行了实验研究。
2.
The behaviour of reduction and melting in ore/coal composite pellets has been investigated experimentally at the high temperature electric resistance furnace.
通过高温电阻炉对含碳球团还原熔分的行为进行热态模拟研究,考察温度、配碳比、化学成分等因素对球团还原熔分的影响程度。
6)  pellet containing carbon
含碳球团
1.
Based on the theory of Stefan flow, reduction mechanism of pellet containing carbon in oxidizing atmosphere has been studied and the minimum reduction rate vRL of pellet without oxidation may be calculated.
根据Stefan流理论,研究了含碳球团在氧化性气氛中的还原机理,建立了极限抗氧化还原速度vRL的计算式。
补充资料:含碳配位σ-π重排
分子式:
CAS号:

性质:不饱和烃的过渡金属π络合物与对应的烷基σ络合物往往处于平衡状态,如下式所示(图暂缺):在碱性配位体(即σ给予体)影响下,平衡右移,金属与碳之间形成定域σ键;在酸性配位体(即π接受体)影响下,平衡左移,利于π络合物的形成。该过程是烯烃二聚、聚合、双键异构化和同位素交换反应的中间过程。

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