胶体微粒

  • 网络colloidal particle
胶体微粒胶体微粒
  1. Ⅱ-Ⅵ族半导体材料&二氧化硅复合胶体微粒的制备研究

    Study on the Preparation of ⅱ - ⅵ Semiconductor Materials-SiO_2 Composite Colloidal Particles

  2. 荸荠汁由于含有多种胶体微粒而呈浑浊态,影响其感官品质。

    The sensory quality of the water chestnut juice was influenced by its turbid state caused from colloidal granule .

  3. 长期以来,形貌可控的纳米材料的制备技术研究是胶体微粒研究的重要方向之一。

    In the past decades , morphology-controlled synthesis of nanoparticles was always one of the focuses of research on colloidal science .

  4. 可絮凝红葡萄酒中的胶体微粒、螯合金属离子、吸附有机酸类物质,提高酒的澄清度、稳定性,改善酒的口感;

    Its application in claret could flocculate colloid granules , chelate metal ions , absorb organic acids , improve wine clarity and stability , and perfect wine taste .

  5. 另外,水的离子强度、无机络阴离子(碳酸根)、可溶性有机物、金属氧化物胶体微粒以及生物作用都会对稀土元素的行为产生重要的影响。

    In addition , the ions strength of water , in organic complex anions ( HCO3 - ), metallic oxide colloidal particulates and biological processes would all exert a great influence on the behavior of REE .

  6. 无机物胶体超微粒子体系的制备过程研究

    Researches on the preparation process of the inorganic ultramicron colloid system

  7. 用碱滴定法测定胶体硅微粒比表面积和粒径

    The Measure Method of Specific Surface Area and Diameter of Micro-Particle by Titration with Sodium Hydroxide

  8. 胶体二氧化硅微粒助留助滤体系

    Microparticle Silica Sol System

  9. 本文介绍一种简单、方便、快捷的测定胶体硅微粒比表面积、粒径的方法&碱滴定法,适合工厂及研究中使用。

    The measure method of specific surface area and microparticle diameter of colloidal silica by titration with sodium hydroxide was introduced in this paper , which is a simple method .

  10. 同时还利用紫外-可见吸收光谱、荧光光谱和光电流谱等研究了ZnO胶体、ZnO微粒膜和ZnO/PANI复合膜的光电化学性能。

    The photoelectrochemical properties of ZnO sol , ZnO particulate film and ZnO / PANI composite film were studied by UV / Vis absorbance spectra , fluorescence spectra and photocurrent spectra .

  11. 采用乳剂和溶液的聚合技术制备了不同电荷密度和胶体性质的阳离子微粒聚合物(CPMP)。

    Cationic polymeric micro particles ( CPMP ) with different charge densities and colloidal properties are prepared from emulsion and solution polymerization techniques .

  12. 超滤膜可去除溶液中的大分子、胶体、蛋白质、微粒等,具有使用压力低、产水量大、便于操作的特点。

    Macromolecules , colloids , proteins and micro granules dissolved or semi dissolved in water could be removed by membrane ultra filtration ( UF ) process under low pressure condition .