The synthesis of feruloylated monoacylglycerol catalyzed by P-Toluene sulfonic acid was investigated.
研究对甲苯磺酸
成阿魏酸单甘
酯的工艺。
The synthesis of feruloylated monoacylglycerol catalyzed by P-Toluene sulfonic acid was investigated.
研究对甲苯磺酸
成阿魏酸单甘
酯的工艺。
The test of glycerol diether analog suggested that 3 archaean halophiles contained typical glycerol diether analog.
对细胞壁的甘二醚衍生物测定显示,3株嗜盐古细菌均含有典型的甘
二醚类衍生物。
Glycerate 3-phosphate (phosphoglyceric acid) The phosphorylated form of glyceric acid, a 3-carbon atom molecule.
(磷酸甘酸)是甘
酸的3号碳位发生磷酸
后的形式。
A gas chromatographic method for the quantitative analysis of monopalmitin and monoolein in fat and oil was described.
建立了一种利用气相色谱法测定脂中棕榈酸单甘
酯与
酸单甘
酯含量的方法。
This paper initially discussed synthesis and modification of tetrafunctional epoxy resin(1,1,2,2- tetrakis(hydroxy phenye)ethane),as well as application in copper clad laminate.
对四能环氧树脂[1,1,2,2-四(对羟
苯
)乙烷四缩水甘
醚]的
成与改性及在覆铜板中的应用作了初步探讨,并对其屏蔽紫外线与产生荧光的机理作用作了简单阐述。
Four new materials,such as carbon suspension,sodium sulfonate of polyoxyethylene allyl glycidyl nonyl phenyl ether,vanillyl alcohol,vanillin,etc,in lead-acid storage batteries were reviewed.
综述了铅酸蓄电池用碳素悬浊液的制备与作用方式以及在铅酸蓄电池使用聚氧乙烯烯丙
缩水甘
苯醚的硫酸酯钠盐、香草醇和香草醛的目的及作用机理。
OBJECTIVE:To study the adsorption of disposable transfusion connective tube and infusion needle for single use only to nitroglycerin in intravenous injection via minipump.
研究微泵维持静脉注射时一次性输液连接管和输液针对硝酸甘的吸附作用。
Overseas research progress of new process for synthesis glycerol from formaldehyde is introduced. Close relationship of the technology yielding with formose technique is reviewed.
介绍国外甲醛制甘新工艺的研究进展,阐述了该技术的产生与甲醛聚糖技术的密切关系。
Objective To compare the clinical treatment effect and side reaction of dissolving compound salivia miltiorrhiza in mouth and dissolving nitroglycerin in mouth to treat angina pectoris.
目的比较含复方丹参滴丸与含
硝酸甘
治疗心绞痛的临床疗效及副反应。
Recently, it has been shown that the Mitochondrial aldehyde dehydrogenase is responsible for the bioactivation of nitroglycerin prior to the release of NO, which is a strong vasodilator.
近来,有研究表明线粒体乙醛脱氢酶是体内硝酸甘
生物转
的主要途径,线粒体乙醛脱氢酶同时具有脱氢酶和酯酶的
活性,其酯酶活性可以通过将硝酸甘
脱硝形成一氧
氮,进而血管扩张。
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