Kim Sehoon, Holtzapple Mark T
Department of Chemical Engineering, Texas A&M University, College Station, 77843-3122, USA.
Bioresour Technol. 2006 Mar;97(5):778-85. doi: 10.1016/j.biortech.2005.04.002. Epub 2005 Jun 14.
Corn stover was pretreated with excess calcium hydroxide (0.5 g Ca(OH)(2)/g raw biomass) in non-oxidative and oxidative conditions at 25, 35, 45, and 55 degrees C. The delignification kinetic model of corn stover used three first-order reactions with following forms: W(L) = 0.09 x exp(-infinity x t) + 0.28 x exp(-k(2) x t) + 0.63 x exp(-k(3) x t) in non-oxidative pretreatment; W(L) = 0.16 x exp(-infinity x t) + 0.27 x exp(-k(2) x t) + 0.57 x exp(-k(3) x t) in oxidative pretreatment. The first term corresponds to the initial phase, which is essentially infinite at the time scale of the reaction (weeks). The second and third terms correspond to the bulk and residual phases of delignification. The activation energies for delignification in the oxidative lime pretreatment reactions were estimated as 50.15 and 54.21 kJ/mol in the bulk and residual phases, respectively, which are similar to the Kraft delignification of bagasse, but much less than in Kraft delignification of wood.
在25、35、45和55摄氏度的非氧化和氧化条件下,用过量的氢氧化钙(0.5克Ca(OH)₂/克生物质原料)对玉米秸秆进行预处理。玉米秸秆的脱木质素动力学模型采用了三个具有以下形式的一级反应:在非氧化预处理中,W(L)=0.09×exp(-∞×t)+0.28×exp(-k₂×t)+0.63×exp(-k₃×t);在氧化预处理中,W(L)=0.16×exp(-∞×t)+0.27×exp(-k₂×t)+0.57×exp(-k₃×t)。第一项对应初始阶段,在反应时间尺度(周)内基本上是无限的。第二项和第三项分别对应脱木质素的主体阶段和残余阶段。氧化石灰预处理反应中脱木质素的活化能在主体阶段和残余阶段分别估计为50.15和54.21千焦/摩尔,这与甘蔗渣的硫酸盐法脱木质素相似,但远低于木材的硫酸盐法脱木质素。