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1)  colloidal particle
胶粒
1.
The cluster was very stable because of absorption of Ninaph and became bigger to form colloidal particles while adding (B).
得出催化剂组分以离子对的形式参与反应;Ni~0在Ni(naph)_2—Al(i-Bu)_3陈化液中以团簇粒子形式存在,因吸附Ni~+naph~-而稳定,因加入BF_3·OEt_2而失去稳定性、聚结为胶粒,活性中心位于胶粒表面的观点。
2.
Ni0 aggregated as colloidal particles (Ni0)n, Ni0 and Ni+ located on the surface of colloidal particles are active center parts.
得出Ni(naph)_2被Al(i-Bu)_3还原的主要产物是Ni~0;被(i-Bu)_2AlO(i-Bu)还原的主要产物Ni~+(naph)~-,Ni~0聚结成胶粒(Ni~0)_n,胶粒表面的Ni~0或吸附的Ni~+是活性中心组分,与(i-Bu)~2AlBF_4形成配合物,给出了活性中心模型。
2)  colloidal particles
胶粒
1.
Considered the interactions among all charged colloidal particles, derived a symmetrical Poisson Boltzmann (PB) Equation using a Virial Expansion of Ornstein Zernike Equation.
考虑到胶体分散系中所有带电胶粒 (胶体粒子 )之间的作用 ,由 Ornstein- Zernike方程的维里展开式导出了对称的 Poisson- Boltzmann方程 。
3)  colloid [英]['kɔlɔid]  [美]['kɑlɔɪd]
胶粒
1.
Further verified were the following conclusions: catalyst components reacted with each other in the form of ionic pair;there existed Ni(O) atom cluster(Ni 0) m in aged solution of ;the cluster were very stable because of adsorption of Ni +naph, and would become bigger as colloidal particles while colloidal particles;and but.
得出催化剂组分以离子对的形式参与反应;Ni°在(Ni)(Al)陈化液中以团簇粒子形式存在,因吸附Ni+naph而稳定,因加入(B)而失去稳定性,聚结为胶粒,活性中心位于胶粒表面的观点;以及(Bd)预混不影响活性中心形成的观点得到进一步验证。
2.
The observation by electron microscope of the structure of the gels shows that the colloidal particles are aggregated mainly in the form of P-C(Particle-Cluster)aggregation in the case of direct strike and C-C(Cluster-Cluster)aggregation in the case of reverse strike.
以正滴淀和反滴淀两种沉淀方式制备氢氧化锆凝胶,对其凝胶团聚状态的扫描电镜观察发现,在正滴淀方式下,胶粒主要以P-C(Particle-Cluster)团聚方式团聚,在反滴淀方式下,胶粒主要以C-C(Cluster-Cluster)团聚方式团聚。
4)  colloid particle
胶粒
1.
The hydrodynamic properties correlation method is mainly used to compute the molecular size of heavy oil fractions,but the size and shape of asphaltene colloid particle are characterized by the small-angle scattering method and electron microscopy imaging method.
流体力学性质关联法主要用来计算重油组分分子尺寸,而小角散射法和电子显微镜成像法则用来表征沥青质胶粒形态尺寸。
5)  gel particles
凝胶胶粒
1.
Some chemical compounds that will inhibit the growth of gel particles have been usedin the modification.
分析了酯法比CO_2法水玻璃砂强度高的原因,指出充分发挥水玻璃粘结效率的关键在于细化水玻璃凝胶胶粒
6)  micel(la)
胶束,胶粒
补充资料:胶粒
分子式:
CAS号:

性质: 形成胶体溶液的分子或分子聚集体。其平均直径在1nm至1μtm之间。胶粒的形状很复杂,最简单的情形是球形质点,一般以质点直径的平均值或分子量的平均值来表示其大小。

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