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1)  kaolinite [英]['keiəlinait]  [美]['keəlɪn,aɪt]
高岭石
1.
Intercalation-Sonication Delamination of Kaolinite and Emergence of a Novel Nanoclub-like Crystal;
插层-超声复合法制备高岭石纳米晶体及棒状晶体的出现
2.
Study on the Adsorption of Copper Ions in Kaolinite Aqueous Solutions;
高岭石吸附水溶液中铜离子的研究
3.
Molecular dynamics simulation of the intercalation of kaolinite with urea and water;
高岭石层间尿素-水体系的分子动力学模拟
2)  kaolin [英]['keɪəlɪn]  [美]['keəlɪn]
高岭石
1.
Preparation and characterization of kaolin-suported TiO_2 photocatalyst;
TiO_2/高岭石负载型催化剂的制备与表征
2.
Studying of scale buildup mechanism of triple compound flooding──Interaction sodium hydroxide with kaolin and montmorillonite;
三元复合驱结垢机理研究——NaOH对高岭石和蒙脱石的作用
3.
By means of rock testing such as X-ray diffraction analyzer and XL-30 energy spectrum electron microscope, chemical behavior of kaolin in 7 different types of acid, i.
利用X-射线衍射分析仪、XL-30能谱电镜等岩矿测试手段,系统评价了高岭石在5%HCl、5%HCl+0。
3)  metakaolin [,metə'keiəlin]
偏高岭石
1.
In this study,fly ash and metakaolin were used as main materials,kalium hydroxide as activator,liquid sodium hydroxide as structural template to prepare geopolymer.
以粉煤灰和偏高岭石为主要原料,氢氧化钾为激发剂,工业液体硅酸钠作结构模板剂制备了无机矿物聚合物材料。
2.
Geopolymer was synthesized with metakaolin and tungsten-tailing as the main raw material and alkali activator composed of sodium silicate solution and sodium hydroxide solution.
以偏高岭石、钨尾矿为主要原料,水玻璃和NaOH组成的碱激发剂制备矿物聚合材料,测试了制品的抗折强度,讨论了几个主要因素对其性能及结构的影响。
3.
Researches show that,the Metakaolin of Datong coal gangue made from temperature 600℃,possesses best pozzolanic activity;Concrete compression strength of blending Datong metakaolin of 600℃ has surpassed calcined meta kaolin compression strength of 850℃ and 1000℃,and at the moment its nature is optimum.
研究结果表明,经600℃煅烧形成的偏高岭石,具有最佳的火山灰活性;掺合经600℃煅烧的大同偏高岭石到水泥中,能显著改善混凝土的力学性能,提高混凝土的密实度和机械强度,为大同高岭岩煤矸石在建材、化工等领域的深加工利用提供了科学依据。
4)  metakaolinite
偏高岭石
1.
Preparation and possible mechanism of potassium acetate/metakaolinite intercalated composites
醋酸钾/偏高岭石插层复合材料的制备及机理研究
2.
A geopolymer material based on dehydrolyed aluminosilicate and phosphoric acid was synthesized from metakaolinite condensed with low-polymeric \~(3n-)_n tetrahedral units in phosphoric acid aqueous solution at room temperature.
在室温条件下,通过偏高岭石与磷酸水溶液中低聚[PO4]3nn-四面体基团的缩合,制备了脱水铝硅酸盐磷酸基矿物键合材料,该反应产物具有三维Si—O—Al—O—P结构。
3.
The degree of geopolymeric reaction between metakaolinite and sodium silicate solutions was characterized by the compressive strengths of the products of the geopolymeric reaction.
采用硅酸钠溶液与偏高岭石的固化键合反应所得到的固体产物的抗压强度表征其键合反应的程度 ,并对不同模数的硅酸钠溶液条件下获得的矿物聚合材料的强度进行了测试。
5)  metakaolinite
变高岭石
1.
The research on the structure of metakaolinite by using wide_angle X -ray diffraction_scattering technology(WAXS) and its radial distribution function(RDF) shows that metakaolinite is a hemicrystal which is disordered in c -axle and composed of non_crystalline phase and a little crystalline phase.
高岭石高岭石的加热相变产物 。
2.
The microstructure differences between pianlinite and metakaolinite were studied based on the wide angle X ray diffraction scattering technology and the radial distributing function for pianlinite and metakaolinite samples heated at different temperatures.
采用广角度 X射线衍射 -散射 ( WAXS)测试技术和由此得到的径向分布函数 ( RDF) ,研究了偏岭石与变高岭石的结构差异 。
3.
Microporous silica is prepared by selective leaching of metakaolinite with 25 mass% H_2SO_4 solution at 80℃ for 2h.
利用高岭石的高硅含量和层状结构特征,于600℃煅烧24h 得到变高岭石,用25mass%的稀硫酸选择性浸取变高岭石2h 制备微孔氧化硅。
6)  kaolnite-gold
高岭石-金
补充资料:高岭石
高岭石
kaolinite

   化学组成为Al4〔Si4O10〕(OH)8的层状结构的硅酸盐矿物。因最早发现于中国景德镇高岭林而得名。晶体属1∶1型单元层的二八面体型结构。由于堆叠中结构单元层间的相对位移,便构成了与地开石、珍珠石不同的多型。三斜晶系,结晶度良好的高岭石成有序结构,一般呈假六方片状晶体;结晶度差的多呈椭圆形或不规则状,通常呈致密或疏松块状集合体产出。一般为白色,含杂质时呈米色。底面解理完全。解理面显珍珠光泽,块状的光泽暗淡。莫氏硬度2~2.5。比重2.60~2.63。高岭石是组成高岭土的主要矿物成分,可以通过风化作用、沉积作用和热液蚀变作用形成。高岭土多呈白色,细粒具分散性、可塑性、高粘结力和高耐火度,是陶瓷和电瓷工业中的重要原材料;还可在造纸、橡胶、油漆等工业中做填充料等。中国是高岭石的主要出产国,产地有江西景德镇、江苏苏州、河北唐山、湖南醴陵等。
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