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1)  seperate addition of fuel
燃料分加
1.
The mixing and granulation process of Jiou Gang sintering plant was presented And the scheme of intensifying granulation and seperate addition of fuel process were propose
介绍了酒钢烧结厂高碱度烧结矿生产中的混合制粒工艺 ,提出了强化制粒及燃料分加的工艺方案。
2.
With modifying the mixing drum into intensive mixer-pelletizer,using atomizing sprayer to enhance granulating efficiency and adopting seperate addition of fuel and segreqation bedding arts, the pellet sintering was realized.
将烧结厂原有圆筒混合机改造为强力混合造球机,并改用雾化喷水器,提高了造球效果,同时采用燃料分加技术和偏析布料技术。
2)  zoned fuel loading
分区加燃料
3)  fuel lamination addition
燃料分层配加
4)  divided fuel addition
燃料二次分加
1.
To further verify the effects of kinds of fuel and their matching,the particle size of fuel on efficiency of divided fuel addition,the addition sequenc of anthracitic coal and coke, the variation of coke size were tested in Vanadium--Titanium Magnitite concentrates sintering As a result,the proper kind of fuel (coke)and the proper size rang were find out.
为进一步探明燃料种类及其搭配、燃料粘度等对燃料二次分加效果的影响,就二次分加时,无烟煤与焦粉的搭配顺序、焦粉粒度变化对钒钛磁铁精矿烧结指标的影响进行了研究。
5)  separate addition of fuel
烧结燃料分加
6)  fuel divided addition technology
燃料分加技术
补充资料:高加浓铀燃料循环
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性质:反应堆中使用235U加浓度>90%的铀作燃料,由于235U的临界质量小,浓缩铀燃料装量少,堆芯功率密度高。核潜艇用压水堆、利用钍的高温气冷堆和高中子通量反应堆均利用高加浓铀作燃料。高加浓铀在生产时消耗大量分离功,成本很高。乏燃料元件必须处理以回收未用完的235U。高加浓铀是核武器原料,一般不易得到,限制了高加浓铀燃料循环的应用。

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