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1)  alcohothermal
醇热还原
1.
For the property of full of N—H bonds on the surface of the amorphous Si3N4 which is prepared by Termal-CVD,the surface of ultrafine-powder silicon nitride is modified by using alcohothermal process,and RuCl3 as the source of Ru.
针对热CVD法制备的无定形超微Si3N4粉体表面富含N—H键的特性,以RuCl3为钌源,采用醇热还原法对Si3N4粉体进行了钌包覆。
2)  reducing [英][ri'dju:siŋ]  [美][rɪ'dusɪŋ]
醇还原
1.
The spherical,monodispersed,ultrafine cobalt powder has been fabricated by reducing cobalt hydroxide with glycol.
测试结果表明多元醇还原的钴粉为球形 ,以面心立方晶体为主 ,还有微量的简单六方 ;钴粉粒度分布较窄 ,平均粒径为 0 。
2.
The spherical, monodispersed, ultrafine cobalt powder has been fabricated by reducing cobalt hydroxide with glycol.
测试结果表明多元醇还原的钴粉为球形 ,晶体结构以面心立方为主 ,还有微量的简单六方 ;当Co(OH) 2 加入量为 6 0g/L时制得的钴粉粒度分布较窄 ,平均粒径为 0 。
3)  magnesium alkoxide reduction
醇镁还原
1.
Research on single step preparing p-chloroaniline by magnesium alkoxide reduction;
醇镁还原法一步制取对氯苯胺的研究
4)  Carbothermal reduction
碳热还原
1.
Analysis of carbothermal reduction of TiO_2 and extraction of titanium carbonitride from the blast furnace slag bearing titania;
TiO_2碳热还原与高炉钛渣提取碳氮化钛分析
2.
Research on synthesis of TiC by sol-gel and carbothermal reduction method;
溶胶-凝胶和碳热还原法制备碳化钛的研究
3.
Synthesis of lithium iron phospho-olivines by aqueous precipitation and carbothermal reduction;
沉淀-碳热还原联合法制备橄榄石磷酸铁锂
5)  thermo-reduction
热还原
1.
Titanium production processes of thermo-reduction including Kroll process,subhalide reduction process,PRP process,Hunter process,and of molten salt electrolysis processes including electrolysis TiCl4 process,FFC Cambridge process,EMR/MSE process are briefly introduced.
本文介绍了热还原法制备金属钛的工艺,包括Kroll法、镁还原低价卤化物、PRP法及Hunter法及电解法,包括电解TiCl4法、FFC剑桥工艺、EMR/MSE等,分析了各种方法的机理及特点。
6)  hydrothermal reduction
水热还原
1.
Preparation of copper nanorods and nanowires by hydrothermal reduction;
水热还原制备铜纳米棒和纳米线
2.
Investigation of the kinetics of the hydrothermal reduction of sodium chromate with starch
淀粉水热还原铬酸钠过程动力学研究
3.
Preparation of ultrafine chromia particles by hydrothermal reduction and size control was investigated.
研究了水热还原法制备超细氧化铬的工艺过程及其粒径调控。
补充资料:钙热还原
分子式:
CAS号:

性质:是以四氟化铀为原料工业生产金属铀的一种主要方法。以高纯金属钙作还原剂,在高温下将四氟化铀还原为金属铀。这是一个强放热反应,反应最高温度可达2000℃左右。金属铀和氟化钙渣均熔化呈液态,并借助于两者的密度差而澄清分层,金属铀聚集于熔融氟化钙渣的下方。钙热还原可以在敞开式的还原竖炉中进行,以耐热的石墨作炉衬。

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