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- SnCl2.2H2O SnCl2·2H2O
- SnCl2·2H2O SnCl2·2H2O
- 结果表明 ,SnCl2 BPC熔盐可用于Sn的电镀 ; The results has shown that Sn was deposited from SnCl 2 BPC molten salt.
- NaWO4·2H2O tungsten trioxide
- CaSO4·2H2O CaSO4·2H2O
- 在测定了室温型SnCl2 BPC熔盐的物理、电化学性质的基础上 ,进行了镀锡的研究。 Electrodeposition of Sn from SnCl 2 1 butylpyridinium chloride (BPC) ambient temperature molten salt electrolytes was studied.
- CuCl2·2H2O CuCl2 · 2H2O
- CoC2O4·2H2O COC2O4·2H2O
- 熔盐的组成影响电流效率与镀层的形貌 ,5 0 .0mol%SnCl2 熔盐可得到平整光亮的锡镀层。 The current efficiency and surface morphology were effected by SnCl 2 content. A bright Sn deposition was obtained from the 50.0 mol%25 SnCl 2 molten salt.
- FeC3O4·2H2O FeC2 O4 · 2H2 O
- 3Cu(IO3)2·2H2O Crystal field theory
- Ni(IO3)2·2H2O Ni ( IO3 ) 2·2 H2O
- 以LiCl、LiCl+SnCl2 等为熔盐电解质 ,采用电解石墨的方法制备了纳米碳管和纳米线 ,并运用TEM、XRD、EDS等分析手段对产物的形貌和结构进行了表征 . Carbon nanotubes and metal nanowires were formed in situ during the electrolysis of graphite cathode using LiCl, LiOH and LiCl/SnCl 2 melts as electrolyte, respectively. The structure and morphology were characterized by TEM, XRD and EDS analyses.
- Cu3V2O7(OH)2·2H2O Cu3V2O7(OH)2·2H2O
- [Eu(Ⅲ)(Phen)(BIM)]Cl3·2H2O [Eu(Ⅲ) (Phen) (BIM)]Cl3·2H2O
- 锌酸钙[Ca(OH)2·2Zn(OH)2·2H2O] calcium zincate[Ca(OH)2·2Zn(OH)2·2H2o]
- 实验证明,在低温时二氧化碳的生成速率远大于一氧化碳的生成速率,这说明反应CH4+2H2O=CO2+4H2占主导地位。 It suggests that the reaction, CH4+2H2O=CO2+4H2, probably dominates methane steam reforming at the conditions of lower temperature.
- 通过酸溶法测定了粉煤灰Ca(OH)2H2O系统中粉煤灰的反应率,以此来评估不同品质低钙粉煤灰的火山灰反应性,并据此建立了低钙粉煤灰火山灰反应的动力学模型。 Reaction ratio of fly ash in fly ashCa(OH)_(2)H_(2)O system was measured by acid dissolution method, which was used for evaluation of pozzolanic reactivity of low-limed fly ashes. On this basis, the kinetics model of pozzolanic reaction of low-limed fly ashes was established.