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1)  AgI sol
AgI溶胶
1.
After further compared different methods of adding Ag+ into TiO2 sol,it was found that,the method of adding into TiO2 sol via AgI sol would make all positive effects on the stability of TiO2 sol,resist.
进一步比较TiO2溶胶中引入Ag+的不同方法发现,将Ag+以AgI溶胶方式引入TiO2溶胶中有利于同时促进TiO2溶胶中Ag+的稳定性、涂层耐变色性及其室内灭菌性能,表现出较以络合Ag+引入TiO2溶胶的方式更好的综合性能。
2)  sols
溶胶
1.
Synthesis of MoO3 nanobelts with no template via a simple hydrothermal method from peroxomolybdic acid sols was reported.
以过氧钼酸溶胶为反应前驱体采用简单的水热方法,在没有任何模板剂的条件下合成三氧化钼纳米带,通过XRD,SEM,TEM和IR等测试方法对产物进行结构表征和形貌分析。
2.
Translucent SiO_2 sols are prepared from TEOS using NH_3·H_2O as catalyzer,polyelectrolyte/ SiO_2 composite films are fabricated via electrostatic self-assembly multilayer method,and SiO_2 thin films are formed by heat-treating the polyelectrolyte/SiO_2 composite films to eliminate the polyelectrolyte and other components in compos- ite films.
以氨水为催化剂,通过水解正硅酸乙酯制备了乳白色二氧化硅溶胶,采用静电自组装薄膜技术制备了聚电解质/二氧化硅复合薄膜,并通过热处理制备了二氧化硅薄膜。
3.
The average thickness of the interface layer wrapped about sols usually is determined by fitting the Porod curve that shows a negative deviation from Porod's law.
溶胶界面层厚度通常是用Porod法对高角区负偏离的Porod曲线进行拟合求算 ,但本文研究表明还可通过分别测定Porod负偏离校正前后体系粒子的平均半径之差而获得平均界面厚度 。
3)  peptization [,peptai'zeiʃən]
胶溶
1.
During the process of peptization and hydrothermal crystallization, the aggregation behavior and the resulting morphology of nanocrystalline titania (TiO2) were studied by X-ray diffraction (XRD), scanning electron microscope (SEM), and dynamic light scattering (DLS) techniques.
通过XRD、SEM和动态光散射粒度测定仪(DLS)研究了胶溶及水热晶化过程中纳米TiO2晶粒聚集行为及形貌。
2.
The A1(OH)3 sol and Al(0H)3—Zr(OH)4 sol is prepared by peptization method with A1(NO3)3 , ZrOCl2 and NH3H2O as starting materials, using A1(NO3)3 solution and Zr(OH)4 sol as peptizing agents, and the preparation process, preparation conditions and colloid structure are analyzed.
本文以Al(NO_3)_3,ZrOCl_2和氨水为原料,分别以Al(NO_3)_3溶液和Zr(OH)_4溶胶作为胶溶剂,通过胶溶法制备Al(OH)_3溶胶和Al(OH)_3—Zr(OH)_4溶胶,并对两种溶胶的制备过程,制备条件和胶团结构进行了分析。
4)  Colloid [英]['kɔlɔid]  [美]['kɑlɔɪd]
溶胶
1.
A Simple Method for Preparation of Nano-Pd Colloid;
一种制备纳米级Pd溶胶的简易方法
2.
A method of gathering and enhancing of microbial flocculants(MBF) was established,in which the FeO(OH)colloid was loaded MBF from the fresh activated sludge which came from biochemical treatment of beer wastewater and needn’t culture in any specially prepared nutrient medium.
研究了 pH值、调pH值的时机、上清液与水合氧化铁溶胶投量比以及Ca2 + 的存在对脱色效果的影响 ,结果表明 :pH值为 10 ;上清液与水合氧化铁溶胶投量比为 1 5 ;pH值的调节在FeO(OH)溶胶加入之前 ,直接黄染料 (DY4 )的最高脱色率达 98 7%。
3.
The acid-treated MWNTs can be dispersed into water to form very stable black aqueous colloids with the help of ultrasonication.
在超声作用的帮助下可以把这种酸处理的多壁碳管分散在水中形成一种黑色的水溶胶 。
5)  sol [英][sɔl]  [美][sol]
溶胶
1.
UV screening property of cotton fabric treated with TiO_2/SiO_2 nano composite sol;
纳米TiO_2/SiO_2复合溶胶处理棉织物的抗紫外性能
2.
Studies on viscosity properties of dioxane-lignin sol;
二氧六环-木素溶胶粘度特性的研究
3.
Study on non-fluoro water repellent finish of cotton fabric by sol-gel progress;
棉织物溶胶-凝胶法的无氟拒水整理研究
6)  collosol ['kɔləusɔl]
溶胶
1.
Selection of Conducting Solution During Testing z Potential of Fe(OH)_3 Collosol;
Fe(OH)_3溶胶ζ电位测定中导电液的选择问题
2.
Preparation of Cyclodextrin Polymer Glass Capillary Column by Collosol Adsorption Method;
溶胶吸附法制备β环糊精聚合物玻璃毛细管柱
补充资料:大气气溶胶化学
分子式:
CAS号:

性质:又称大气气溶胶化学(atmospheric aerosol chemistry);大气颗粒物化学(atmospheric particulate chemistry)。大气化学的分支之一。主要研究大气中气溶胶(又称颗粒物)的来源、形成、分布、传输及消除过程中的物理、化学行为,化学组成的变化,存在状态的特性、粒度分布的特性及其与大气现象的关系等。许多大气污染现象都直接或间接与气溶胶的物理化学特性和行为有关。例如,燃烧化石燃料或光化学烟雾反应会产生硫酸盐气溶胶(一次或二次颗粒物),它对环境会引起酸化,并能远距离迁移,造成广域污染;美国东北部和五大湖地区出现的酸雨危害,就是典型例子。气溶胶在不同粒度中的化学组成不同,对环境影响和生态效应也大不相同。伦敦烟雾事件中因有气溶胶的存在而使危害加剧。小于2μm粒径气溶胶中集中了绝大多数的有毒有害物质,在大气中滞留时间长、传输广,危害大。气溶胶化学涉及非均相大气化学反应和颗粒表面反应等问题,气溶胶对气候有变冷的效应(或称阳伞效应),这些都是当今气溶胶化学关注的问题。

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