1.
Preparation of Amorphous Nanostructured Ni-B Powders by the Method of Reduction in Aqueous Solution at Room Temperature;
室温液相还原法制备非晶纳米镍基合金
2.
Water is a liquid at room temperature and has a relatively high freezing point.
在室温下,水是液体,结冰点相对高.
3.
Analysis of Correlativity between Room Temperature and the Diluent Rate Of Buffalo Rumen Liquor
室温与水牛瘤胃液稀释率相关性分析
4.
Managed grasslands: A greenhouse gas sink or source?
管理的草原:温室气体汇(下沉)还是源?
5.
Green House Gas Emission Reduction and Materials for Selective Catalytic Reduction of NO_x in China
中国温室气体减排与选择性催化还原脱硝材料
6.
Research on Technics of the Preparation of Nanometer Fe Powder by Liquid Phase Deoxidation;
液相还原法制备纳米Fe粉的工艺研究
7.
LiFePO_4/C cathode materials synthesized by liquid reduction method
液相还原法制备正极材料LiFePO_4/C
8.
Pd/C catalysts Prepared with Improved Liquid Phase Reduction Method
用改进液相还原法制备炭载Pd催化剂
9.
The Development of Ultrafine Copper Powder Preparation by Liquid Phase Reductive Process
液相还原法制备超细铜粉的研究进展
10.
Structural and Spectroscopic Studies of Single-crystal Au Nanoplates Synthesized by Low-temperature Chemical Reduction
金纳米片的低温水相还原法制备及表征
11.
Phase transformation of Si_3N_4-Al_2O_3-SiO_2 system in high temperature reducing atmosphere
Si_3N_4-Al_2O_3-SiO_2体系高温还原条件下的物相变化
12.
THE PHASE,REDUCTION & SULFIDATION PERFORMANCE OF THE MIXED ZnO HOT COAL GAS DESULFURIZATION SORBENTS
复合ZnO高温煤气脱硫剂的物相、还原及硫化行为
13.
Keywords: CO2, greenhouse effect, rock weathering, photocatalytic reduction, TiO2.
关键词:二氧化碳、温室效应、岩石风化、光催化还原、二氧化钛。
14.
Study on Reduction of Noble Metal Catalysts Using Argon Glow Discharge Plasma at Room Temperature;
氩气辉光放电等离子体室温下还原贵重金属催化剂研究
15.
Preparation of nanosized nickel powders by reduction in 1,2-propanediol
1,2丙二醇液相还原法制备纳米镍粉的研究
16.
Study on the Preparation of Silver Nanoparticles by Chemical Reduction Using Sodium Hypophosphite in Solution;
次磷酸钠液相化学还原法制备纳米银粉的研究
17.
Study on the New Process for Preparation of Ultrafine Cobalt Powder by Chemical Reduction in Aqueous Solution;
液相还原法制备超细钴粉新工艺的研究
18.
Investigation of the Refolding of Reduced/Denatured Ribonuclease a by Liquid Chromatography;
还原变性核糖核酸酶的液相色谱折叠法研究