Costa Sirlene M, Gonçalves Adilson R, Esposito Elisa
Departmento de Biotecnologia, FAENQUIL, Cx. Postal 116, CEP 12600-970, Lorena, SP, Brazil.
Appl Biochem Biotechnol. 2005 Spring;121-124:695-706. doi: 10.1385/abab:122:1-3:0695.
Sugarcane bagasse was pretreated with the white-rot fungus Ceriporiopsis subvermispora for 30 d of incubation. The solid-state fermentation of 800 g of bagasse was carried out in 20-L bioreactors with an inoculum charge of 250 mg of fungal mycelium/kg of bagasse. The oxidative enzymes manganese peroxidase (MnP), lignin peroxidase (LiP), and laccase (Lac) and the hydrolytic enzyme xylanase (Xyl) were measured by standard methods and related to the fungus's potential for delignification. Among the lignocellulolytic assayed enzymes, Xyl was detected in larger quantity (4478 IU/kg), followed by MnP (236 IU/kg). LiP and Lac were not detected. The results of chemical analysis and mass component loss showed that C. subvermispora was selective to lignin degradation. Pretreated sugarcane bagasse and control pulps were obtained by soda/anthraquinone (AQ) pulping. Pulp yields, kappa number, and viscosity of all pulps were determined by chemical analysis of the samples. Yields of soda/AQ ranged from 46 to 54%, kappa numbers were 15-25, and the viscosity ranged from 3.6 to 7 cP for pulps obtained from pretreated sugarcane bagasse.
甘蔗渣用白腐菌拟蜡菌进行预处理,培养30天。在20升生物反应器中对800克甘蔗渣进行固态发酵,接种量为250毫克真菌菌丝体/千克甘蔗渣。通过标准方法测定氧化酶锰过氧化物酶(MnP)、木质素过氧化物酶(LiP)和漆酶(Lac)以及水解酶木聚糖酶(Xyl),并将其与真菌的脱木质素潜力相关联。在所测定的木质纤维素分解酶中,检测到的Xyl量较大(4478 IU/千克),其次是MnP(236 IU/千克)。未检测到LiP和Lac。化学分析和质量成分损失结果表明,拟蜡菌对木质素降解具有选择性。通过苏打/蒽醌(AQ)制浆获得预处理甘蔗渣和对照纸浆。通过对样品进行化学分析来测定所有纸浆的得率、卡伯值和粘度。从预处理甘蔗渣获得的纸浆,苏打/AQ制浆的得率在46%至54%之间,卡伯值为15 - 25,粘度在3.6至7厘泊之间。