1) Microwave reduction
微波加热还原
1.
Experiments were conducted on the flow sheet and the appropriate technological parameters of microwave reduction include high reduction temperature of 1100~1150 ℃,high reduction temperature time of 90 min,the content of additive 5%.
基于微波加热的优点和钛精矿良好的吸波性能,提出了微波加热还原钛精矿含碳球团制取初级富钛料的工艺路线并进行了试验,发现微波还原的最佳工艺条件:还原时间为1。
2.
A new technology for preparing rich titanium product,which includes microwave reduction-mineral separation-microwave leaching,was put forward on the basis of the abundant situation of titanium mineral resource in Panzhihua-Xichang zone and the advantages and disadvantages of actual productive methods on making rich titanium product.
针对攀西地区丰富的钛资源现状和现行富钛料生产工艺优缺点,提出了微波加热还原钛精矿复合球团—选矿分离—微波浸出制取高品质富钛料的新工艺路线。
3) microwave carbon thermal reduction
微波碳热还原
1.
Aluminium nitride powders were prepared by microwave carbon thermal reduction method.
采用微波碳热还原法制备了氮化铝粉末,研究了铝源、碳源和添加剂对制备氮化铝粉末的影响。
5) Microwaveheating principle
微波加热原理
6) microwave carbothermal reduction nitridation
微波碳热还原氮化
1.
β-sialon ultrafine powder was prepared from tetraethoxysilane,aluminum nitrate and sugar by the sol-gel and microwave carbothermal reduction nitridation methods.
以正硅酸乙酯(tetraethoxysilane,TEOS),硝酸铝,蔗糖等为原料,通过溶胶-凝胶和微波碳热还原氮化法合成了β-sialon超细粉。
补充资料:微波加热
微波加热
microwave heating
we一boJ一ore徽波加热(mierowave heating)场加热。见高预电
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