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1)  polyol glycoside
多元醇葡萄糖苷
2)  coniferin
松柏醇葡萄糖苷
1.
Guaiacyl-type dehydrogenation polymers(DHPs)of lignin were prepared from coniferin by bulk method and end-wise method respectively in the presence of peroxidase,glucose oxidase and β-glucosidase in the laboratory to simulate natural condition in plant.
模拟自然条件,以松柏醇葡萄糖苷为原料,在β-葡萄糖苷酶、葡萄糖氧化酶及过氧化物酶存在下,分别用混合法和滴加法,来合成木质素脱氢聚合物(DHP)。
2.
The appropriate amount of lignin precursor-coniferin was added to plant fiber to promote lignin copolymerization between fibers and form LCC under the roles of lignin peroxidase、β-glucosidase and glucose oxidase.
本论文合成了松柏醇葡萄糖苷,并且以植物纤维为基体,添加适量的木素前驱物松柏醇葡萄糖苷,采用木素过氧化物酶、β-葡萄糖苷酶和葡萄糖氧化酶为主的催化作用体系,使得纤维之间形成木素-碳水化合物复合体并促使纤维之间发生共聚。
3.
This paper studied coniferin in the peroxidase system with glucomannan and pectin complex to improve the strength of paper.
本文研究了在过氧化物酶的体系下利用木素前驱物松柏醇葡萄糖苷与果胶和葡苷聚糖的复合体来提高纸张的强度。
3)  ethylene glycol glucosides
乙二醇葡萄糖苷
1.
The ethylene glycol glucosides stearic acid ester was synthesized with stearic acid and using ethylene glycol glucosides as starting materials.
以硬脂酸和自制乙二醇葡糖苷为原料,直接酯化合成乙二醇葡萄糖苷硬脂酸酯,讨论了物料配比、反应时间、反应温度、反应压力、乳化剂及催化剂对合成的影响。
4)  glycol polyglucoside
乙二醇葡萄糖苷
1.
Study of synthesis of glycol polyglucoside by maize starch;
乙二醇葡萄糖苷的合成研究
2.
The new process of preparing glycol polyglucoside by starch and glycol in the presence of an acid catalyst and a catalyst promoter through one step reaction has been studied.
研究了淀粉和乙二醇在酸性催化剂及助催化剂存在下一步直接合成乙二醇葡萄糖苷的工艺 ,考察了影响反应和产品性能的多种因素。
5)  diethyleneglycol glucoside
二甘醇葡萄糖苷
1.
Synthesis and properties of some diethyleneglycol glucoside fatty acid esters;
二甘醇葡萄糖苷酯的合成及其性能
2.
Stearic acid ester of diethyleneglycol glucoside was prepared by solvent free esterifacation of diethyleneglycol glucoside with stearic acid in the presence of sodium stearate as catalyst.
在无溶剂条件下 ,以硬脂酸钠作为催化剂 ,利用二甘醇葡萄糖苷与硬脂酸直接酯化合成二甘醇葡萄糖苷硬脂酸酯 ,在反应温度为 180℃ ,反应时间 10h ,催化剂用量为反应物总质量11 1%的条件下 ,硬脂酸的转化率达 95 0
6)  stigmasterol-3-O-β-D-glucopyranoside
豆甾醇-葡萄糖苷
补充资料:α-菠甾醇葡萄糖苷
分子式:
CAS号:

性质:熔点291~292℃(汽油),旋光度-35.0°。针状结晶(苯-乙醇);熔点282~283℃,旋光度[α]D-35°(c=0.4,吡啶)。来源于木榄科植物夹竹杉C叶紫荆木(Madhuca neriifolia)的木材,豆科植物金龟树(Pithecolobium dulce Benth.),桔梗科植物桔梗[Platycodon grandiflorum(Jacq.)A. DC. ]的根,紫金牛科植物灰叶松茎山(Maesa chisia D. Den)的叶和小枝,伞形科植物柴胡(Bupleurum folcatum L.)的根,菊科植物高一枝黄花(Solidago altissima L. )的根。有利尿作用。

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