Netzwerke bildende Biopolymere: Lignin, Polyisopren, Japanlack

作者: Gotthold Ebert

DOI: 10.1007/978-3-322-92132-1_6

关键词:

摘要: Wie der Name andeutet (lat. lignum = Holz) wird Lignin bei Verholzung pflanzlicher Gewebe in Intercellularspalten und interfibrillaren Zwischenraumen gebildet. Es allen hoheren Pflanzen einschlieslich Farne gefunden, nicht aber Moosen.

参考文章(35)
A. Hüttermann, Der Wald als Rohstoffquelle Sauerländer. ,(1981)
L. H. Sperling, Charles E. Carraher, Polymer Applications of Renewable-Resource Materials ,(1983)
Yoshio Yamauchi, Ryuichi Oshima, Ju Kumanotani, Configuration of the olefinic bonds in the heteroolefinic side-chains of japanese lacquer urushiol Journal of Chromatography A. ,vol. 243, pp. 71- 84 ,(1982) , 10.1016/S0021-9673(00)88165-0
D. Fengel, Römpp Chemie Lexikon European Journal of Wood and Wood Products. ,vol. 49, pp. 234- 234 ,(1991) , 10.1007/BF02627541
Ju Kumanotani, Laccase‐catalyzed polymerization of urushiol in precisely confined Japanese lacquer system Macromolecular Chemistry and Physics. ,vol. 179, pp. 47- 61 ,(1978) , 10.1002/MACP.1978.021790105
J. Peisach, Walter G. Levine, W.E. Blumberg, Structural properties of stellacyanin, a copper mucoprotein from Rhus vernicifera, the Japanese lac tree. Journal of Biological Chemistry. ,vol. 242, pp. 2847- 2858 ,(1967) , 10.1016/S0021-9258(18)99584-0
Takashi Kato, Ju Kumanotani, Studies of Japanese Lacquer: Isolation of a Diphenyl Dimer of Urushiol Bulletin of the Chemical Society of Japan. ,vol. 42, pp. 2375- 2376 ,(1969) , 10.1246/BCSJ.42.2375