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作 者:陈力 匡奕山 张希[1,3] 李军 CHEN Li;KUANG Yishan;ZHANG Xi;LI Jun(State Key Lab of Pulp and Paper Engineering,South China University of Technology,Guangzhou,Guangdong Province,510641;School of Chemistry and Chemical Engineering,Changsha University of Science and Technology,Changsha,Hu’nan Province,410114;Ji’nan Shengquan Group Co.,Ltd.,Ji’nan,Shandong Province,250204)
机构地区:[1]华南理工大学制浆造纸工程国家重点实验室,广东广州510641 [2]长沙理工大学化学化工学院,湖南长沙410114 [3]济南圣泉集团股份有限公司,山东济南250204
出 处:《中国造纸》2022年第7期11-18,共8页China Pulp & Paper
基 金:广州市科技计划项目(201707020011);广东省科学基金培育植物纤维高效利用国家工程研究中心(2017B090903003);制浆造纸工程国家重点实验室(201831)。
摘 要:本研究采用对甲基苯磺酸(p-TsOH)预处理玉米秸秆,研究了3个预处理因素(p-TsOH质量分数、水解温度和水解时间)对其三大组分分离的影响。通过两相模型,得到木质素和半纤维素脱除动力学模型,并探究了处理后残渣的酶解性能。结果表明,p-TsOH预处理玉米秸秆在温和条件下即可快速溶出木质素和半纤维素,而对纤维素的降解较小;木质素脱除反应和半纤维素脱除反应的表观活化能分别为66.5 kJ/mol和50.5 kJ/mol;预处理后,木质纤维的顽抗结构被破坏,表面木质素含量降低,p-TsOH预处理可以有效提高原料的酶解得率;在p-TsOH质量分数为50%、水解温度为95℃和水解时间为40 min条件预处理后,残渣酶解得率为72.9%。In this study,p-toluene sulphonic acid(p-TsOH)was employed to pretreat cornstalk,and the effects of three pretreatment parameters(concentrations of p-TsOH,hydrolysis temperature,and hydrolysis time)on the separation of cellulose,hemicellulose,and lignin were investigated. The kinetic models of lignin and hemicellulose removal were obtained by using the two-phase model,and the enzymatic hydrolysis properties of the treated residue were studied. The results showed that the p-TsOH pretreated cornstalk could quickly remove lignin and hemicellulose under mild conditions but had little effect on the degradation of cellulose. The apparent activation energies of the lignin and hemicellulose removal reactions were 66. 5 kJ/mol and 50. 5 kJ/mol,respectively. The tenacious structure of biomass fibers was destroyed and the surface lignin content was decreased by the p-TsOH pretreatment,which improved the enzymatic yield of treated cornstalk.After pretreatment with p-TsOH concentration of 50%,hydrolysis temperature of 95℃ and hydrolysis time of 40 min,the enzymatic hydrolysis yield of the residue was 72. 9%.
分 类 号:TS721.[轻工技术与工程—制浆造纸工程]
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