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1)  silver stearate
硬脂酸银
1.
AgSt/AgBr composite was synthesized by in situ method,which NaBr and silver stearate(AgSt) was respectively used as bromide source and substrate.
分别以溴化钠(NaBr)为溴源、硬脂酸银(AgSt)为底物,用原位法合成了复合物AgSt/AgBr。
2.
A novel composite grain silver 2-mercaptobenzimidazole/silver stearate(AgMBM/AgSt) was synthesized by using silver stearate(AgSt) as substrate and 2-mercaptobenzimidazole(MBM) as modifier.
分别以硬脂酸银(AgSt)为本体、2-巯基苯并咪唑(MBM)为修饰剂,合成了一种新型的2-巯基苯并咪唑银/硬脂酸银(AgMBM/AgSt)复合结构颗粒。
2)  sodium stearate
硬脂酸钠
1.
In-situ preparation of hydrophobic CaCO_3 in present of sodium stearate;
硬脂酸钠原位改性碳酸钙的研究
2.
The rutile nano-TiO2 precoated Al2O3 was modified with sodium stearate.
利用硬脂酸钠对表面包覆氧化铝的纳米TiO2进行了有机表面改性。
3.
Methods: The sodium stearate was selected to modify the magnesia powder,and the modified time,the pH value of solution and temperature for the influence of the modified effect were reviewed.
方法采用硬脂酸钠对氧化镁粉体进行表面改性,考察了浓度、温度和溶液pH值对吸附量的影响。
3)  stearic acid
硬脂酸
1.
Study of organic surface modification of nanosized ZnO with stearic acid;
硬脂酸对纳米ZnO的有机表面修饰研究
2.
Mechanistic studies of the effect of stearic acid coated Mg(OH)_2 on properties of EVA/Mg(OH)_2 composites;
硬脂酸改性Mg(OH)_2的机理及对EVA性能的影响
3.
The preparation of nanosized BaSO_4 particles modified with stearic acid;
硬脂酸修饰的纳米硫酸钡的制备
4)  calcium stearate
硬脂酸钙
1.
New process for preparation of calcium stearate;
合成硬脂酸钙新工艺研究
2.
Determination of calcium in calcium stearate and zinc in zinc stearate by suspension sampling-flame atomic absorption spectrometry;
悬浮液进样-火焰原子吸收光谱法测定硬脂酸钙中钙及硬脂酸锌中锌
3.
Study of synthesis of calcium stearate by direct method in aqueous medium;
在水介质中直接制备硬脂酸钙
5)  lanthanum stearate
硬脂酸镧
1.
Study on Thermal Stabilization Mechanism of PVC by Lanthanum Stearate;
硬脂酸镧对PVC热稳定作用机理的研究
2.
Charging method was partly improved in the technical process for preparing PVC heat steabilizer-lanthanum stearate by saponifying method.
对皂化法制备PVC热稳定剂硬脂酸镧工艺过程中的加料方式进行了部分改进。
3.
The direct synthesis of lanthanum stearate is studied under the reaction of stearic acid to La2O3 in the presence of catalyst.
研究了硬脂酸和氧化镧在催化剂作用下直接合成硬脂酸镧的方法。
6)  nickel stearate
硬脂酸镍
1.
Thermochromism of nickel stearate(NiSt_2) and pyrogallic acid(PGA)was reported.
本文报道了硬脂酸镍(NiSt2)和焦性没食子酸(Pyrogallic acid,PGA)的热致变色现象,研究了热敏涂层的显色密度随加热温度和时间的变化关系。
2.
A new thermographic material was studied,in which hydrophilic polyvinyl alcohol(PVA) was used as a binder,nickel stearate was used as a main material and pyrogallic acid was used as a developer.
本文对以水溶性聚乙烯醇(PVA)为粘合剂,硬脂酸镍(NiSt2)为主要原料,焦性没食子酸(PGA)为显影剂的一种新型热成像材料的研究。
补充资料:L-抗坏血酸硬脂酸酯
分子式:C24H42O7
分子量:442.60
CAS号:25395-66-8

性质:稍带光泽的白色结晶性粉末。熔点约116℃。干燥状态下基本稳定,吸湿状态下极易氧化,使作为维生素C的效力降低。不溶于水,溶于花生油(0.09%),棉籽油(0.05%)。

制备方法:将维生素C的硬脂酸溶于95%酸酸中,放置20h。加碎冰使硬脂酰抗坏血酸酯析出后用乙醚等有机溶剂萃取,用水洗至无酸性反应。回收有机溶剂使产品析出,再用石油醚、乙醚等有机溶剂进行重结晶后真空干燥而得。

用途:营养增补剂、抗氧化剂。为具有维生素C效力的亲油性物质。在食品中能强化维生素C和防止氧化。可用于油脂及含脂食品,如奶油、干酪、奶粉、炼乳、人造奶油、动植物油、火腿、香肠、巧克力、胶姆糖、硬糖等。

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