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- carbothermal chlorination 加碳氯化
- Chlorination tablet can be added to water to make it safe to drink. 将加氯消毒片放入水中可以使之安全。
- Mechanism model of carbothermal reduction reaction was build. 为该反应体系建立了碳热还原反应机理模型。
- The practice of chlorination has become so widespread. 氯化法在实践中已得到广泛应用。
- Chlorination is carried out with Nhaloamines and sulfuric acid. 氯化是用N-卤胺和硫酸。
- Chlorination tablet can is add to water to make it safe to drink. 将加氯消毒片放入水中可以使之安全。
- CPE was the product made by chlorination of PE, and had extensive applications. 氯化聚乙烯(CPE)是由聚乙烯氯化而制得的产品,用途广泛。
- Carbothermic chlorination 碳热氯化
- Chlorination tablet can be added to water to make it safe to drink . 将加氯消毒片放入水中可以使之安全。
- OBJECTIVE To optimize the synthesis of photosensitizer chlorin e_6 (1). 目的优化光敏剂二氢卟吩e_6(1)的合成工艺。
- Addifionally chlorination can increase the genotoxicity of tap water. 而加氯消毒使水质的遗传毒性增高。
- LiVPO4F was prepared with a two-step reaction method based on a carbothermal reduction(CTR) process. 利用碳热还原法,通过2步反应合成了LiVPO4F。
- In this lecture we will discuss chlorination of water as an example. 本讲我们以氯水为例展开讨论。
- The nanocrystal aluminum nitride was synthesized by carbothermal reduction (CTR) from alumina. 研究了氧化铝球磨对碳热还原反应合成氮化铝的作用。
- The carbothermal reduction nitridation reaction was promoted greatly after the milling of alumina for 20 hours. 研究了氧化铝球磨对碳热还原反应合成氮化铝的作用。
- The reaction sequence of the carbothermal reduction and nitridation of TiO_2 was systematically researched by the thermodynamic analysis. 通过热力学分析系统地说明了TiO_2碳热还原及其氮化过程中的反应顺序。
- SiC whisker was synthesized using industry silicasol and carbon black by the sol-gel method and the carbothermal reduction reaction. 以无机硅溶胶和炭黑为原料,采用溶胶-凝胶方法和碳热还原反应进行了合成碳化硅晶须的试验。
- The valuable metals such as antimony and lead from the acidic leaching residues were recoveried by vacuum carbothermal reduction. 以含锑铅复杂氧化物的酸浸渣为原料,采用真空碳热还原方法回收了渣中的锑铅等有价金属。
- Vanadium nitride was synthesized by microwave high temperature furnace carbothermal reduction nitridation under normal pressure. 利用微波高温炉常压碳热还原渗氮法制备了氮化钒,并进行了试生产。
- ABSTRACT In this study, we have in-situ prepared porous Si3N4 ceramics with high porosity using carbothermal reduction of silicon dioxide. 摘 要 本课题成功地使用二氧化硅的碳热还原反应原位制备出具有高气孔率的多孔氮化硅陶瓷。
