1) plant cellulose
植物纤维素
1.
Determination of polymerization degree of plant cellulose by viscosimetry;
粘度法测定植物纤维素的聚合度
2.
The degradation reactions of plant cellulose under microwave irradiation in the presence of catalyst were reported in this paper.
采用微波加热与催化剂相结合对植物纤维素进行降解。
3.
onosaccharides, including glucose,xylose,galactose,arabinose and mannose,are structure units ofplant cellulose and hemicellulose, Optimal separation of them was achieved by a Bio- Rad Aminex HPX-87Pcolumn at 85℃ eluted with degassed water at 0.
植物单糖的高效液相色谱分析吴伟志,罗廉,余世袁(南京林业大学理化中心南京210037)1前言植物单糖(葡萄糖、木糖、半乳糖、阿拉伯糖、甘露糖等)是组成植物纤维素、半纤维素的主要单体。
2) lignocellulose
[英][,lignəu'seljuləus] [美][,lɪgno'sɛljə,los]
植物纤维素
1.
Steam Explosion Pretreatment and Its Application for Lignocellulose;
蒸爆技术在植物纤维素预处理中的应用
2.
Steam Explosion Pretreatment and Its Application of Lignocellulose;
蒸爆技术及其在植物纤维素资源中的应用
3) reuse of plant cellulose
植物纤维素再生
4) plant fiber
植物纤维
1.
Status and developmental trends of plant fibers and their reinforced composites;
植物纤维及其增强复合材料的研究进展
2.
A study of the applications of mineral fiber in place of plant fiber;
矿物纤维代替植物纤维的应用与展望
5) Vegetable Fiber
植物纤维
1.
Progress in Chemical Conversion of Natural Vegetable Fiber to Thermoplastic Materials;
天然植物纤维转变为热塑性材料研究进展
2.
As a kind of low cost and renewable resource, vegetable fibers have been chosen as the reinforced material of cement-based composites, and research on the material and its application have important practical engineering meanings.
植物纤维是一种低成本、可再生的资源,研究将其作为水泥基材料的增强材有很实际的意义。
6) cellulose fiber
植物纤维
1.
The properties of paper made up of bacterial cellulose and cellulose fiber was analyzed.
作者重点研究了细菌纤维素湿膜经机械匀浆处理所得的细菌纤维与植物纤维混合抄片的纸页性能。
2.
The properties of paper made of bacterial cellulose and conventional cellulose fiber were analyzed.
研究了细菌纤维素湿膜经机械匀浆处理后 ,细菌纤维与植物纤维混合抄片的纸页性能。
3.
The application of some kinds of softener, such as phosphate ester, in the composites composed of collagen and cellulose fibers was compared.
主要对比了磷酸酯等几类纸用柔软剂,在胶原纤维/植物纤维复合材料和纸张中的应用效果,试验表明:综合考虑柔软度、裂断长、吸水性及经济成本等指标,在加入量为0。
补充资料:植物防卫素
分子式:
CAS号:
性质:感病植物自身诱生的抗菌活性物质。已知化学结构的有豌豆素、异黄酮、苯并呋喃衍生物、茋类、番薯酮、色酮、萜烯类等。至今未商品化。
CAS号:
性质:感病植物自身诱生的抗菌活性物质。已知化学结构的有豌豆素、异黄酮、苯并呋喃衍生物、茋类、番薯酮、色酮、萜烯类等。至今未商品化。
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