zirconium oxychloride

氧氯化锆,二氯氧化锆

  • In addition with the increase of the concentration of zirconium oxychloride the size of the nano-particle was increased and agglomeration was also aggravated .

    随着 浓度的增加,所合成粉体的晶粒尺寸有所增大,团聚现象亦有所加重。

  • Preparation Zirconium Oxychloride from Concentrated Zr Tails of Nb-Ta Ore by Lime

    碱石灰法从铌钽矿富锆尾矿制备 氯化

  • When the molar ratio of KH-550 to zirconium oxychloride is above 2 the transparency and surface morphology are excellent .

    当KH-550与 氯化 的物质的量比不低于21时,涂膜PC板的透过率较高,表面较平整;

  • The solution of zirconium oxychloride is hydrolyzed by aqueous ammonia and hydrated zirconia flocculent is deposited .

    氯化 水溶液用氨水水解,生成水合氧化锆絮状沉淀,再经过洗涤、陈化、干燥、破碎、筛分、活化处理等几 工艺制成水合 氧化 树脂。

  • Using octahydrate zirconium oxychloride and ammonia liquor ( or sodium hydroxide ) as raw materials through chemical reaction at appropriate hydrothermal condition in high pressure vessel particulate building and crystal developing are realized from atom and molecule .

    以八水合 氧化 和氨水(氢氧化钠)为原料,通过高压釜中适合水热条件的化学反应,实现了原子、分子级的微粒构筑和晶体生长。

  • Comprehensive Utilization of Waste Alkaline Water in Producing Zirconium Oxychloride

    氧化 生产中废碱水的综合利用

  • The reduction of SiO 2 content in water transformed material improved the recovery rate of zirconium oxychloride ;

    水转料中二氧化硅含量降低了, 氯化 的使回收率提高了;

  • Determination of zirconium in zirconia corundum by means of back titration with zirconium oxychloride standard solution

    锆液返滴定法测定锆刚玉中

  • Zirconium oxychloride is the important raw material to produce Zirconium chemicals .

    氯化 是合成锆化学品的重要原料。

  • A new process in which a foam alkali can be produced by taking aluminum sulfate residue and waste alkali liquid of zirconium oxychloride as its raw materials and then sodium metasilicate pentahydrate being made by one shot slag forming is introduced .

    介绍以铝矾土提取硫酸铝废渣和 氯化 副产废碱液为原料生产泡花碱,然后利用一次造粒法生产五水偏硅酸钠新工艺确定影响产品质量指标工艺因素。

  • ZnO green phosphor preparation process by the thermal oxidation of zinc sulfide with zirconium oxychloride as additive is investigated .

    热法是将 氯化 氨水比例混和后,直接加入高压反应 中进行 热反应的工艺。

  • The zirconium sol was rapidly prepared by sol-gel method with zirconium oxychloride as precursor reagent .

    氯化 为前驱体,采用溶胶-凝胶法快速制备锆溶胶,凝胶后经煅 烧制氧化 体, 分析了锆溶胶的制备、 稳定 氧化 体的特性。

  • This study researched improved process route of nano-zirconia in aqueous solution using zirconium oxychloride and urea as the raw materials .

    本课题以 氯化 、尿素为原料,研究了在水溶液体系中制备纳米氧化锆的改良工艺路线。

  • The influence of the concentration of zirconium oxychloride and different solvent on product is researched .

    并研究了不同的 反应 浓度、不同 溶剂等对产物的影响。

  • Preparation of Zirconium Oxychloride via Alkali Fusing of Zirconium Carbide

    碳化锆碱熔制备 氯化 的研究

  • In the preparation of organic zirconium complex the optimum technical parameters are zirconium oxychloride ratio 3 % reaction period 20 min.

    合成有机锆最佳工艺条件为 氯化 用量3%,反应时间20min。

  • The improvement of 10 thousand tons of zirconium oxychloride production and its economic analysis

    10000吨 氯化 生产 工艺的改进研究和经济效益分析

  • Xonotlite was obtained based on dynamic hydrothermal process by using natural powder quartz of Jiangxi Province and lime of Jingjing County Hebei Province as major raw materials . Zirconium oxychloride was used as an additive .

    采用动态水热法,以江西产天然粉石英、河北井陉产石灰为原料,加入 少量 氯化 为添加剂合成硬硅钙石晶体。

  • The production of zirconium oxychloride and its application in new energy resource

    氯化 的生产及其在 现代新能源中的应用

  • Zirconium oxychloride with purity of 36.20 % was prepared from zirconium carbide by the process of alkali fusing water washing hydrochloric acid leaching and product crystallization .

    以碳化 为原料,采用碱熔-水洗-酸浸-结晶工艺制备 氯化锆, 氯化 产品中ZrO2含量达到 36.20%

  • Sodium Removing Craft Research in Producing Zirconium Oxychloride

    氧化 生产中除钠工艺的研究

  • The ZrO ( AC ) 2 sol was prepared by reacting the alcohol solution of Zirconium oxychloride with acetate .

    本文用二 醇溶液与醋酸盐相互作用制得醋酸氧锆的溶胶。

  • Catalytic Synthesis of Ketal over Zirconium Oxychloride

    氧化 催化合成缩酮

  • Technical and Economical Comparison of Zirconium Oxychloride by Basic Process Chlorination

    法氯化 法制 氧化 的技术经济比较