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1.
Preparation of Sulfur-free & High Anti-oxidation Expandable Graphite;
无硫抗氧化性可膨胀石墨的制备研究
2.
Preparation and Properties of Sulfur-free High Anti-oxidation Expanded Graphite;
无硫高抗氧化性膨胀石墨的制备及性质研究
3.
Electrochemical Performance of the Exfoliated Graphite Containing Sulfur Cathode Material for Lithium Sulfur Battery
锂硫电池硫膨胀石墨正极材料的电化学性能
4.
Synthesis and Study on Catalysis Performance of the Expandable Graphite;
可膨胀石墨的合成及其催化性能研究
5.
Electeoless Plating on Low-temperature Expansible Graphite Used for Smock Composition
一种发烟剂用可膨胀石墨的化学镀改性
6.
Study on the Preparation Sulfur-Free Expanded Graphite/Phenol Formaldehyde Resin Composite Bipolar Plates
无硫膨胀石墨/酚醛树脂复合材料双极板的研制
7.
Preparation of Expandable Graphite with the Super Expandable Volume and Study the Catalysis Capability of the Product;
超大体积可膨胀石墨的制备及其催化性能的研究
8.
The Synthesis of Diacetals from Aldehydes with Pentaerythritol Catalysed by Expandable Graphite
可膨胀石墨催化合成季戊四醇双缩茴香醛
9.
Structures and Properties of Expandable Graphite Filled Polypropylene;
可膨胀石墨填充聚丙烯复合材料的结构与性能
10.
Study on the Properties of Rigid Polyurethane Foam with Expandable Graphite Particles as Flame Retardant;
可膨胀石墨阻燃硬质聚氨酯泡沫的性能研究
11.
Structure and Fire Retardance of Unsaturated Polyester/Expandable Graphite System
不饱和聚酯/可膨胀石墨体系的结构与阻燃性能
12.
Adsorption Performance of CaCl_2/Expanded Graphite Compound Adsorbent
氯化钙/膨胀石墨混合吸附剂的吸附特性
13.
Adsorption and Photocatalytic Decomposition of Oil Using Nanometer Titanium Oxide Modified Exfoliated Graphite;
纳米二氧化钛修饰膨胀石墨催化降解含油污水研究
14.
Preparation of Low-temperature Expandable Graphite by Water-exchange Method
水交换法制备低温可膨胀石墨的研究
15.
Effect of Modification of the Expanded Graphite on Adsorptive Properties to Formaldehyde
膨胀石墨改性对甲醛吸附性能的影响
16.
Study on Novel Halogen-Free Expandable Graphite and Its Flame-Retarded Material;
新型无卤可膨胀石墨的制备及其阻燃材料的开发
17.
Comparative Study on Expansion of Undercalcined Magnesia and Ettringite Expansive Agents;
轻烧氧化镁和钙矾石的膨胀性能对比研究
18.
The optimum condition for synthesis of ethyl acetate catalyzed by expansible graphite was investigated through orthogonal test.
通过正交实验研究了可膨胀石墨的催化合成乙酸乙酯的最佳条件。