1)  aneurinase
硫胺分解酶
2)  thiaminase
硫胺分解酶
3)  Thiamine
硫胺
1.
The Reaction Mechanism of Copper in Phosphorescence Analysis of Thiamine;
铜在硫胺燐光分析中的作用机制
4)  ammonium sulfate
硫胺
5)  thiamine nitrate
硝酸硫胺
1.
Analysis and determination of residual organicsolvents in pharmaceuticals(thiamine nitrate) by capillary gas chromatography;
毛细管气相色谱法测定药品硝酸硫胺中有机溶剂残留量的研究
2.
Growth rate of thiamine nitrate crystal during recrystallization process is studied.
探讨了硝酸硫胺重结晶过程中晶体生长速率 ,确立了硝酸硫胺晶体生长速率模型 ,认为硝酸硫胺的生长速率是受扩散和反应两方面控制 ,生长速率是粒度相关的 ,确立的模型具有一定的实际指导意
3.
The concentration variations of all key components were investigated during recrystallization process of thiamine nitrate, and a mathematic model that is used to show the solubility variations of thiamine nitrate was constructed in this paper.
通过考察硝酸硫胺重结晶过程中的各关键组分的浓度变化 ,建立了硝酸硫胺的溶解度模型 ,模型预测结果与实验结果吻合很好 。
6)  thiamine propyl disulfide
丙硫硫胺
7)  VB1
盐酸硫胺
1.
Influences of additions of VB1 、L-Cystine and TiO2 into the liquor on photicdecomposition of pigment under similar conditions were also studied.
通过添加盐酸硫胺、L-胱氨酸和二氧化钛与对照溶液的光降解速率进行比较,确认这三 种添加剂对黑米色素光降解的影响。
8)  thiamine
硫胺素
1.
Studies on Droplet Optical Chemistry Sensor of Thiamine Based on It′s Oxidation by Mercury Ion;
基于汞离子氧化作用的硫胺素液滴光化学传感器研究
2.
Fluorimetric Determination of Thiamine Based on the Thiamine-Vanadium Reaction;
钒(Ⅳ)-硫胺素荧光光度法的研究与应用
9)  thiothiamine
硫代硫胺
1.
The reaction mechanism of the oxidation of thiothiamine was studied, and two kinetic equations that well describe the changing concentration of reactants were also gained in this paper.
探讨了双氧水氧化硫代硫胺反应的机理 ,建立了描述氢离子浓度和双氧水浓度变化的氧化动力学方程 ,与实验结果吻合良好。
10)  oryzanin waste liquid
硫胺废液
1.
Conceptual design of chemical plant burnt oryzanin waste liquid incineration treatment project;
化工厂硫胺废液焚烧处理工程方案设计
补充资料:硫胺
(NH4)2S04   分子量132.14
    性质  白色无臭而带有咸味的菱形晶系结晶体,由于含有不同程度的杂质颜色吴灰色甚至黄褐色。密度1.769g/cm3。分解235℃。易溶于水,溶解时同时吸收热量,水溶液呈酸性反应。不溶于乙醇、丙酮和氨。有吸湿性,吸湿后固结成块。加热到513℃以上完全分解成气体氨和硫酸。与碱类作用则放出氨气。
    应用  品一种优良的氮肥,适用于一般土壤和作物,能使枝叶生长旺盛,提高果实品质和产量,增强作物对灾害的抵抗能力,可作基肥、追肥和种肥。能与食盐进行复分解反应制造氯化铵,与硫酸铝作用生成铵明矾,与硼酸等一起制造耐火材料。加入电镀液中能增加导电性。也是食品酱色的催化剂,鲜酵母生产中培养酵母菌的氮源,酸性染料染色助染剂,皮革脱灰剂。此外,还用于啤酒酿造,化学试剂和蓄电池生产等。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条