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1)  addition process black iron oxide
直接合成法氧化铁黑
2)  direct combination of hydrogen and oxygen
氢氧直接化合法
3)  The synthesis of direct black BN
直接黑BN的合成
4)  direct oxidation
直接氧化法
1.
Synthesis of 2,3,5-trimethylhydroquinone by direct oxidation;
直接氧化法合成2,3,5-三甲基氢醌
2.
p-Bromobenzaldehyde was synthesized from p-bromotoluene by direct oxidation with manganese sesquioxide The factors affecting the yields of p-bromobenzaldehyde were investigated.
用三氧化二锰直接氧化法将对溴甲苯氧化对溴苯甲醛,讨论了合成过程中影响产率的各种因素,确定反应的优化条件为温度338K,硫酸的浓度7。
3.
The paper reviews the development of direct oxidation process for sulfur recovery, with the emphasis on direct oxidation processes which are more successful recently, and puts forth the necessity for developing the processes.
综述了直接氧化法硫回收技术的进展情况 ,重点介绍了目前较为成功的直接氧化法工艺技术 ,指出了开发该技术的必要性。
5)  direct synthesis
直接合成法
1.
The advances in preparing AES resin by direct synthesis and blend were reviewed,containing the technology of solution polymerization,emulsion polymerization,suspension polymerization,application of compatilizer and chemical reaction during the mixture for compatibilization.
概述了直接合成法和共混法制备AES(丙烯腈/三元乙丙橡胶/苯乙烯共聚物)树脂方面的研究进展,包括溶液聚合、乳液聚合、悬浮聚合、加入相容剂增容和利用混合过程中的化学反应来增容等工艺和技术,并提出了关于今后AES树脂制备和应用发展建议。
2.
Recent progress in research of direct synthesis of hydrogen peroxide from H_2 and O_2 was reviewed.
介绍了国内外近年来在氢氧直接合成法合成H2O2方面的研究进展。
3.
The latest progresses in studies on preparing dimethyl carbonate including direct synthesis from CO2 and methanol,ester interchange and direct alcoholysis of urea were reviewed,under homogeneous catalysis system,non-homogeneous catalysis system,ionic liquids catalysis system,supercritical reaction system and phot.
综述了国内外CO2和甲醇直接合成法、酯交换法和尿素醇解法合成碳酸二甲酯的研究进展,在均相催化体系、非均相催化体系、离子液体催化体系、超临界反应体系以及光催化反应体系下概述了上述方法的研究概况。
6)  direct synthesis
直接法合成
1.
Catalyst system influence on direct synthesis methylchlorosilane;
催化体系对直接法合成甲基氯硅烷的影响
2.
Study on technique of direct synthesis of methyl tin chloride
直接法合成甲基氯化锡的工艺研究
补充资料:直接合成法氧化铁黑
分子式:
CAS号:

性质:指采用三氧化二铁和烧碱与硫酸亚铁的反应产物(FeOH2)进行加合反应制得的氧化铁黑。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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