层状硅酸盐

  • 网络Phyllosilicates;phyllosilicate;layered silicates;PLS
层状硅酸盐层状硅酸盐
  1. 含膨胀性晶层层状硅酸盐矿物的层电荷表征方法及其原理

    Measurement and mechanism of layer charge of phyllosilicate with expansive layers

  2. 常见层状硅酸盐矿物的表面特征

    Surface characteristics of general phyllosilicate minerals

  3. 纳米TiO2/层状硅酸盐矿物包覆型复合粒子的制备

    Preparation of nanometer tio_2-coated layered silicate minerals compound particles

  4. RTV硅橡胶/层状硅酸盐纳米绝缘的力学性能

    Research on Mechanical Characteristic of RTV / Layered Silicate Nanocomposites Insulation

  5. 二氧化钛柱撑蒙脱石(TiO2-PILM)是一种新型层状硅酸盐纳米复合材料,具有较大的晶面间距和比表面积,纳米TiO2均匀分布在蒙脱石层间,可用于光催化降解有机污染物。

    Titanium pillared montmorillonite ( TiO_2-PILM ) with large basal spacing and specific surface area is a kind of novel nanocomposite with layered silicates .

  6. 研究了不同层状硅酸盐包括普通蒙脱土、云母以及有机化蒙脱土对HDPE/层状硅酸盐复合材料的阻隔性能影响。

    E effect of different layered silicate material , including raw montmorillonite , mica and organized montmorillonite on barrier property of HDPE / layered silicate composite was studied .

  7. 介绍几种可用普通挤出设备生产管材的改性超高分子量聚乙烯(UHMWPE),包括液晶聚合物改性、有机硅树脂改性和层状硅酸盐改性等;

    Several modified UHMWPE including liquid crystalline polymer , organ silicon materials , layered silicate that can be processed by common extrusion equipment were introduced .

  8. 蒙脱土(MMT)是一种天然纳米层状硅酸盐,在溶液中大分子链可以插入MMT层间,形成插层复合物。

    Montmorillonite ( MMT ) is a kind of natural nano-scale layered silicate . Macromolecules in solution can insert into MMT layers to form the intercalated composite .

  9. 在过去十几年中,聚合物/层状硅酸盐(简称PLS)纳米复合材料已成为一个极为活跃的研究领域,吸引着众多研究者。

    In the past more than ten years , polymer / layered silicate nanocomposites ( abbr. PLS ) have become a quite active research field , which attract numerous researchers .

  10. 概述了绿色洗涤剂助剂4A沸石、硅酸盐、无定型硅酸盐、层状硅酸盐等化学性能,研究现状,以及它们的进展。

    The paper presents the chemical function of zeolite 4A , the silicate , the amorphous silicate , the layered silicate of green phosphorus detergent and its present development .

  11. 结果表明:HGMS处理后,土壤粘粒层状硅酸盐矿物含量相对减少,高岭含量减小的幅度较大,而2∶1型矿物含量变化幅度较小;

    Results indicated that phyllosilicates were decreased after HGMS treatment . But decreasing degree of 2 ∶ 1 phyllosilicates was less than kaolin .

  12. 聚合物/层状硅酸盐(Polymer/LayeredSilicate,简称PLS)纳米复合材料是以有机高分子聚合物为连续相、层状硅酸盐片层为增强相并在纳米尺寸上进行复合得到的纳米复合材料。

    Polymer / Layered Silicate ( PLS ) nanocomposite is a type of material composited in the nanometer size , which uses the organic polymers as the continuous phase and the layered silicate layers as the reinforcement phase .

  13. 在仔细分析了相应的实验数据后,提出了SKS-5的水合机理。层状硅酸盐SKS-6有比SKS-5复杂得多的晶体结构且在洗涤剂工业中具有重要的应用价值。

    After carefully analyzing the experimental data , the corresponding hydration mechanisms about SKS-5 were given .

  14. 而蒙脱土(MMT)是一种天然层状硅酸盐,片层上的电荷分布也十分复杂,这些决定了明胶与MMT具有特殊的相互作用过程。

    Montmorillonite ( MMT ) is a kind of natural layered silicate , the distribution of charges on its layers is also very complicated . All these determine that the interaction between gelatin and MMT is special .

  15. 目前聚合物/层状硅酸盐(PLS)纳米复合材料由于众多优点而成为研究的热点,具有2:1型片层结构的蒙脱土是最常用的层状硅酸盐之一。

    At present , polymer / layer silicate ( PLS ) nanocomposites have become investigation focus for its excellent properties . Montmorillonite ( MMT ) with the layer-structure of 2:1 type is one of the most prevalent used layer silicates .

  16. 制备了聚对苯二甲酸丁二醇酯-层状硅酸盐(LS)纳米复合材料(NPBT),并研究了它的结晶特性。

    Poly ( butylene terephthalate ) - layered silicate ( LS ) nanocomposites ( NPBT ) were prepared , and their crystallization , nucleation and their structure-properties were investigated .

  17. RPA和孟山都毛细管流变仪对材料流变性能的研究表明,与炭黑填充胶料相比,层状硅酸盐/橡胶纳米复合材料具有较强的填料网络结构;

    The results indicate that the rheology of these two composites is similar , however , layered silicate / SBRnanocomposites exhibit stronger filler network and higher viscosity compared to those of carbon black / SBR composites .

  18. 本论文结合纳米二氧化硅、纳米层状硅酸盐结构特点,以及它们在其他有机高聚物中的成功应用,选取它们来对RTV硅橡胶进行纳米化改性。

    In this paper , according to the configurable characteristics of nano SiO2 and nano layered silicate and their respective successful application in other kinds of polymers , thus they are used to the modification of RTV is determine ultimately as well .

  19. 结果表明:以OH–和CO32–为主的化学反应是矿渣胶凝材料稳定软土的基础,土壤中层状硅酸盐黏土矿物、链状硅酸盐闪石类矿物和碳酸盐是软土化学稳定过程中的活性成分。

    The results indicate that the soil stabilization by slag cementing materials can be attributed to the chemical reactions containing OH – and CO32 –, while layer silicate clay mineral , chain silicate amphibole mineral and carbonate are active components of the soil stabilization process .

  20. 作为一类性能优良的环保功能材料,生物降解性聚合物/层状硅酸盐(BPLS)纳米复合材料正日益引起人们的关注。

    Biodegradable polymer / layered silictate ( BPLS ) nanocomposites are attracting great interest from researchers as a type of high-performance and environmental benign materials .

  21. 以具有层状硅酸盐结构的累托石(REC)为主体,以烷基季铵盐为改性剂合成了有机累托石(OREC),以有机累托石和环氧树脂复合,制备出纳米复合材料。

    The synthesis of organic rectorite ( OREC ) is studied by using quaternary ammonium bromine salt with rectorite ( REC ), and epoxy resin nanocomposites have been further prepared by dispersing organically modified rectorite in a kind of epoxy resin .

  22. 铜型抗菌层状硅酸盐的合成研究

    Study on the synthesis of Cu - type antibacterial layer silicate

  23. RTVSR/层状硅酸盐纳米复合材料耐酸性能研究

    Research on Acid Resistance Properties of RTVSR / Layered Silicate Nanocomposites

  24. 熔融插层制备聚烯烃/层状硅酸盐纳米复合材料研究进展

    Advances in Preparation of Polyolefine / Lamellar Silicate Nano-composites by Intercalation Method

  25. 层状硅酸盐矿物在污水处理和净化中的应用

    Application of layer silicates in wastewater disposal and water purification

  26. 高分子/层状硅酸盐纳米复合材料的研究应用现状及发展前景

    Application Advances and Development Foreground of Polymer Layered Silicate Nanocomposites

  27. 尼龙6/层状硅酸盐复合材料制备与表征

    Preparation and Characterization of Nylon 6 / Layered Silicate Composites

  28. 后者包括层状硅酸盐、金属双氢氧化物等。

    And the latter consists of layered silicate , metallic double hydroxide etc.

  29. 超高分子量聚乙烯/层状硅酸盐复合物性能研究

    Study on Properties of UHMWPE / Layered Silicate Composite

  30. 粘土矿物为层状硅酸盐,具良好的吸附性能和阳离子交换性能。

    Clay minerals are layered silicate and have fine absorption and cation exchange .