1) nickel hydrazine nitrate
硝酸肼镍
1.
When the propellants used were lead styphnate and nickel hydrazine nitrate respectively, with nitrocellulose as the binder, their thrust properties were studied under different chamber diameters (0.
本文设计了用于试验的化学微推冲器 ,研究了斯蒂酚酸铅和硝酸肼镍在不同药室直径 (0 5~ 1 5mm)和不同药剂配比下的推进性能。
2.
When thepropellant was lead styphnate and nickel hydrazine nitrate, their propertiesof ignition and thrust were investigate.
研究了装药分别为硝酸肼镍和斯蒂酚酸铅的微推进器的推进性能。
3.
When the propellant was lead styphnate and nickel hydrazine nitrate, their properties of ignition and thrust were investigated under different chamber diameter and different proportion of themixed propellant.
研究了史蒂酚酸铅和硝酸肼镍在不同药室直径和药剂配比下的点火和推进性能,并且计算了推力器参数对推力性能的影响。
2) hydrazine nitrate
硝酸肼
1.
The gelation of hydrazine nitrate-hydrazine hydrate double components is studied.
研究了硝酸肼-水合肼双元体系凝胶化问题,选择适宜的凝胶剂,确定了对于硝酸肼与水合肼配比范围在60∶40到70∶30之间的体系各凝胶剂适宜的加入量为:聚丙烯酰胺(HPAM)0。
3) hydrazine mononitrate
一硝酸肼
4) Ni(CHZ)3(NO3)2
硝酸碳酰肼镍(Ni(CHZ)3(NO3)2)
5) nickelous nitrate
硝酸镍
1.
Qualified nickelous, sulfate, nickelous nitrate and nikel monoxide were prepared with waste raney nickel catalyst as raw material.
以废雷尼镍催化剂为原料,制备出合格的硫酸镍、硝酸镍和氧化镍。
6) nickel nitrate
硝酸镍
1.
The title compound (NO_3)_2·H_2O was prepared by reaction of the aqueous solutions of nickel nitrate and methylcarbazate (MCZ).
由硝酸镍水溶液和肼基甲酸甲酯 (NH2 NHCOOCH3 ,MCZ)的水溶液反应 ,制备出未见文献报道的配合物 [Ni(MCZ) 3 ] (NO3 ) 2 ·H2 O 。
2.
0 mmol/L nickel nitrate solution.
0mmol L的硝酸镍处理水稻幼苗 2d后 ,再用稻白叶枯细菌 (Xanthomonasoryzaepv 。
补充资料:硝酸肼
分子式:NH2NH2·HNO3
CAS号:
性质:由水合肼在冰水浴中加入浓硝酸中和而制得。肼是一种还原剂,用肼直接还原pu4+到pu3+L的还原速度非常慢。在乏燃料后处理中,肼常和其他还原剂合用如U4+肼,亚硝酸铁-肼,来还原反萃钚。其中肼起支持还原剂作用,破坏亚硝酸根,保护U4+和Fe2+不被亚硝酸根氧化。肼和亚硝酸根作用的反应式为: N2H5+·+NO2—→NH3+2H2ONH3+H++NO2—→N2O+N2+H2O反应产生叠氮化物。还原剂中肼的浓度控制在0.1~0.2mol/L,不能超过0.2mol/L,以防止工艺条件下形成的叠氮酸造成爆炸危险。
CAS号:
性质:由水合肼在冰水浴中加入浓硝酸中和而制得。肼是一种还原剂,用肼直接还原pu4+到pu3+L的还原速度非常慢。在乏燃料后处理中,肼常和其他还原剂合用如U4+肼,亚硝酸铁-肼,来还原反萃钚。其中肼起支持还原剂作用,破坏亚硝酸根,保护U4+和Fe2+不被亚硝酸根氧化。肼和亚硝酸根作用的反应式为: N2H5+·+NO2—→NH3+2H2ONH3+H++NO2—→N2O+N2+H2O反应产生叠氮化物。还原剂中肼的浓度控制在0.1~0.2mol/L,不能超过0.2mol/L,以防止工艺条件下形成的叠氮酸造成爆炸危险。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条