1) Hydrogen generation
制氢反应
2) hydrogen producing reactor by photosynthetic germs
光生物制氢反应器
3) hydrogen evolution
制氢
1.
Progress of photocatalytic hydrogen evolution from water by modified nano-TiO_2;
改性纳米TiO_2光催化分解水制氢研究进展
2.
Preparation of beryllium-nitrogen-codoped TiO_2 and performance of photocatalytic hydrogen evolution under visible light irradiation;
铍、氮共掺杂TiO_2的制备及其可见光下光解水制氢性能研究
3.
The activity of the prepared photocatalyst under visible light ir- radiation was evaluated using photocatalytic hydrogen evolution as a probe reaction.
以可见光光催化制氢为探针反应考察了制备的催化剂的活性,发现350℃煅烧的Eosin Y-Pt-TiO_2可见光光催化活性最好。
4) hydrogen production
制氢
1.
Modeling of hydrogen production by sorption enhanced methane steam reforming reactions;
吸收增强式甲烷水蒸气重整制氢循环反应模拟
2.
Research on flow distribution in mini-double-pipe reactor for hydrogen production;
微型套管式制氢反应器中物流分布的研究
3.
Comparison of fluidized and fixed bed operations for hydrogen production from methane decomposition;
流化床与固定床中甲烷裂解制氢过程的比较
5) hydrogen generation
制氢
1.
Effect of sodium metaborate on the performance of hydrogen generation from the hydrolysis of sodium borohydride solutions;
偏硼酸钠对硼氢化钠水解制氢性能的影响
2.
Anion-effect on hydrogen generation from sodium borohydride solution;
NaBH_4溶液催化制氢的阴离子效应研究
3.
Study on Co-B alloys for on-board hydrogen generation from sodium borohydride;
Co-B合金在NaBH_4现场催化制氢中的应用研究
6) Hydrogen
制氢
1.
The preparation of nanoparticle Gd~(3+)-doped TiO_2 and the performance of photocatalytic decomposition of water into hydrogen;
Gd~(3+)掺杂纳米TiO_2的制备及光解水制氢性能研究
2.
Research progress of autothermal reactors for hydrogen production;
自热制氢反应器研究进展
3.
Investigation of Partial Oxidation of Methanol to Hydrogen over Cu/SiO_2 Catalysts;
Cu/SiO_2模型催化剂上甲醇部分氧化制氢反应研究
参考词条
补充资料:核反应制氚
分子式:
CAS号:
性质:锂同位素在裂变堆或聚变堆中俘获中子产生6Li(n,α)3H和7Li(n,n,α)3H核反应,用来制氚。裂变堆中,一般用锂—铝合金作增殖材料。液态锂、锂合金和固态锂的化合物正研究用作聚变堆的氚增殖材料。液态锂和锂合金同时也是反应堆的冷却材料,没有辐照损伤,产生的氚易于提取。
CAS号:
性质:锂同位素在裂变堆或聚变堆中俘获中子产生6Li(n,α)3H和7Li(n,n,α)3H核反应,用来制氚。裂变堆中,一般用锂—铝合金作增殖材料。液态锂、锂合金和固态锂的化合物正研究用作聚变堆的氚增殖材料。液态锂和锂合金同时也是反应堆的冷却材料,没有辐照损伤,产生的氚易于提取。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。