六铝酸盐,hexaaluminate
1)hexaaluminate六铝酸盐
1.Preparation of Ce and Mn substituted hexaaluminate catalysts for natural gas combustion by reverse microemulsion;反相微乳液法制备铈锰取代六铝酸盐甲烷燃烧催化剂
2.Catalytic Performance of La_(0.8)Sr_(0.2)FeMn_(1.5)Al_(9.5)O_(19-δ) Hexaaluminate-typed Aerosol Catalysts;La_(0.8)Sr_(0.2)FeMn_(1.5)Al_(9.5)O_(19-δ)六铝酸盐气溶胶催化剂的催化性能
3.Progress in research for new function materials of compound oxides hexaaluminate;新型功能材料六铝酸盐复合氧化物研究进展
英文短句/例句

1.Studies on the Preparation of Hexaaluminate Catalyts for Methane Combustion by Reverse Microemulsion Medium;逆微乳液研制六铝酸盐催化剂对甲烷催化燃烧性能研究
2.Preparation of Heaaluminates Catalysts and Their Catalytic Activity for Methane Combustion;六铝酸盐催化剂的制备及对甲烷催化燃烧性能的研究
3.Study on Compositional Type La-Hexaaluminate Methane High-Temperature Combustion Catalysts;复合锰及铈组分的镧系六铝酸盐甲烷高温燃烧催化剂的研究
4.Preparation and Catalysis Characterization Study of Hexaaluminate High-Temperature Combustion Catalyst;六铝酸盐高温燃烧催化剂的合成与甲烷催化氧化性能研究
5.Preparation of Doped Hexaaluminate Catalyts by Reverse Microemulsion and Investigation of Its Catalytic Performance;逆微乳液合成掺杂六铝酸盐催化剂及其催化燃烧性能研究
6.Preparation of Hexaaluminate Catalyst and Its Application in Catalytic Combustion of the New Energy-Dimethyl Ether (DME);六铝酸盐催化剂的制备及其在新能源二甲醚催化燃烧中的应用
7.Preparation and Thermo-Physical Properties of Rare-Earth Hexaaluminate for Thermal Barrier Coating Materials稀土六铝酸盐热障涂层材料的制备及其热物理性能研究
8.Preparation and Characterization of Substitued Hexaaluminate Catalysts for Methane Combustion;掺杂六铝酸盐高温燃烧催化剂的制备及其在甲烷催化燃烧中性能的研究
9.Study on Carbon Dioxide Reforming of Methane to Synthesis Gas over Low Nickel Content Substituted Hexaaluminate Catalysts低Ni载量六铝酸盐催化剂上甲烷和二氧化碳重整制合成气反应研究
10.siallite-carbonate weathered crust硅铝碳酸盐型风化壳
11.Investigation on the Silicate-sulphoaluminate Compound System Cement;硅酸盐-硫铝酸盐复合体系水泥研究
12.a white crystalline double sulfate of aluminum: the ammonium double sulfate of aluminum.一种铝的双硫酸盐:铝铵双硫酸盐,白色晶状。
13.a white crystalline double sulfate of aluminum: the potassium double sulfate of aluminum.一种铝的双硫酸盐:铝钾双硫酸盐,白色晶状。
14.Progress in Research on Electrodepositing Al and Its Alloy from Chloroaluminate Molten Salts氯铝酸熔融盐中电沉积铝及铝合金研究的进展
15.Research on Mechanism of Phosphoaluminate Cement Enhanced the Mechanical Performances of Portland Cement磷铝酸盐水泥增强硅酸盐水泥力学性能的研究
16.Eco-Design on Silicate Cement and Sulphoaluminate Cement Complex;硅酸盐水泥和硫铝酸盐水泥复合的生态设计
17.RESISTANCE TO SULFATE ATTACK OF SULPHOALUMINATE CEMENT硫酸盐环境中硫铝酸盐水泥的侵蚀行为
18.Resistance to Sulphate Attack of Polymer Modified Sulphoaluminate Cement聚合物改性硫铝酸盐水泥抗硫酸盐侵蚀性能
相关短句/例句

hexaaluminates六铝酸盐
1.The parameters which determine the type of hexaaluminates are the charge and radius of the large cations in the conduction layer.介绍了两种典型的六铝酸盐 β -氧化铝和磁铅石的微晶结构 ,六铝酸盐是由尖晶石相和镜面相交替叠加而成的具有层状结构的晶体 ,决定六铝酸盐结构类型的因素为镜面层中的大阳离子的电荷和半径。
2.Series of hexaaluminates LaMn_xAl_(12-x)O_(19+σ) doped with Mn (Here x is 0, 0.采用共沉淀法制备了系列金属Mn搀杂的六铝酸盐LaMnxAl12-xO19+δ(x分别为0,0。
3.There are three major types of catalysts for catalytic combustion,among them the noble metal catalysts have excellent performances but are expensive,and the perovskite-type and hexaaluminates catalysts are inexpensive and exhibit a good high temperature catalytic activity,so they are more attractive.用于催化燃烧的催化剂主要有3种,其中贵金属催化剂性能优异但成本较高,而钙钛矿型催化剂和六铝酸盐系列催化剂价格较低,同时有很好的高温催化活性,因而更具吸引力。
3)hexa-aluminate六铝酸盐
1.The catalysts with good form of crystalline hexa-aluminate can be obtained by calcination at 1 200 ℃ for 4 h.采用溶胶-凝胶法制备了同时掺杂Fe和Mn系列的六铝酸盐催化剂LaFeMnxAl11-xO19(x=0,0。
2.The catalysts for catalytic combustion of methane,hexa-aluminate BaAl_(12)O_(19-α)and its derivtive,BaMnAl_(11)O_(19-α),in which Mn~(2+) partially substituted for Al~(3+),were prepared by reverse microemulsion mediated NH_4OH coprecipitation and conventional NH_4OH coprecipitation methods.采用反相微乳液法、普通氨水共沉淀法制备BaAl12O19-α六铝酸盐催化剂及其中的Al3+部分被Mn2+取代的BaMnAl11O19-α催化剂,研究了合成方法、Mn2+取代部分Al3+对催化剂晶相结构、比表面积、粒径以及甲烷催化活性的影响。
4)Ba-hex aaluminateBa-六铝酸盐
5)Hexagonal copper aluminophosphate六方铜铝磷酸盐
6)hexaaluminate's rNi yAl 12-yO 19-δ六铝酸盐SrNiyAl12-yO19-δ
延伸阅读

铝酸三钙分子式:3CaO·Al2O3 CAS号:性质:白色固体。等轴晶系。密度3.04g/cm3。硬度6。折射率1.710,可与铁、镁、硅、钠、钾等形成固溶体。可由氧化钙和三氧化二铝以3:1的配比,在1000~1800℃通过固相反应生成。是硅酸盐水泥熟料中间相的主要组成,其水化迅速,放热大,凝结快,易使水泥急凝。