1)  lipid oxidation
脂类氧化
2)  lipids
脂类
1.
Effect of lipids on Maillard reaction;
脂类对反应型香精风味形成影响的研究
2.
Relationship Between Plasma Insulin,Serum Lipids and Cholelithiasis in Patients With Type 2 Diabetes;
2型糖尿病合并胆石症与血胰岛素和脂类代谢的关系
3)  Lipid
脂类
1.
The changes of the lipid composition in ovary and hepatopancreas during the period of the ovarian fast development of the Chinese mitten crab Eroicheir sinensis after 3 months starvation;
饥饿对中华绒螯蟹卵巢快速发育阶段的脂类与肝胰腺脂类的影响
2.
Analysis of lipid and fatty acid composition during embryonic and larval development of Oratosquilla kempi;
黑斑口虾蛄胚胎和幼体不同发育时期脂类及脂肪酸组成分析
3.
Changes in lipid class and fatty acid compositions in the ovaries and hepatopancreas of the mud crab Scylla serrata during the vitellogensis of the second ovarian maturation;
锯缘青蟹卵黄发生期卵巢和肝胰腺脂类的变化
4)  lipid
脂类物质
1.
Effects of microorganism starter culture on the lipid of dry-cured fermented duck;
微生物发酵剂对发酵风鸭中脂类物质的影响
2.
Almond,walnut,peanut and almond are abundant in protein and lipid with CH stretching vibration nearby 2 914 cm-1,2 847 cm-1and C=O stretching vibration nearby 1 742 cm-1 in their infrared spectrum;while wolfberry fruit, red date,raisin and fig are abundant in pdysaccharide and protein conte.
巴旦木、核桃仁、花生仁、带壳杏仁富含蛋白质和脂类物质,红外图谱显示出在2 914,2 847cm-1附近的CH伸缩振动和1 742 cm-1附近的C=O伸缩振动;枸杞子、红枣、葡萄干和无花果干富含多糖、蛋白类物质,其红外图谱显示出在3 370 cm-1附近的OH变形振动、NH伸缩振动和2 920 cm-1附近的CH伸缩振动。
5)  lipophilic extracts
脂类成分
1.
Comparison of the determination of antioxidative activity of lipophilic extracts from seaweeds by phosphomolybdenum complex assay and β-carotene-linoleate assay systems;
磷钼络合物法与β-胡萝卜素-亚油酸法测定海藻脂类成分抗氧化活性的比较
6)  lipid microtubule
脂类微管
1.
Lipid microtubules are fabricated by molecular self assembly method from biologically derived lipid,and the helical characteristics of lipid microtubules are primarily summarized on the basis of many investigations.
利用联乙炔基甘油磷脂酰胆碱分子的自组装特性 ,制备得到脂类微管结构 ,并在大量观察基础上 ,对脂类微管的螺旋带特征进行分析归纳 。
参考词条
补充资料:硒氧化物类高分子氧化剂
分子式:
CAS号:

性质:指含有硒氧化物(—SeO—)的高分子氧化剂。硒氧化物试剂是一种能够将烯烃氧化成邻二羟基化合物,将芳香环外甲基氧化成醛的选择性氧化剂。虽然有机硒化合物是常用的氧化试剂,但是小分子有机硒有毒,并具有恶臭,对工业化使用不利。高分子化的硒试剂可以消除上述缺点。高分子硒试剂的制备通常以聚对氯苯乙烯为原料,与硒酚钠反应生成二苯硒醚型高分子硒试剂。

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