林产化学与工业
林產化學與工業
림산화학여공업
CHEMISTRY AND INDUSTRY OF FOREST PRODUCTS
2014年
5期
79-83
,共5页
林玲%曹石林%马晓娟%黄六莲%罗小林%陈礼辉
林玲%曹石林%馬曉娟%黃六蓮%囉小林%陳禮輝
림령%조석림%마효연%황륙련%라소림%진례휘
竹子%预水解%木质素%迁移
竹子%預水解%木質素%遷移
죽자%예수해%목질소%천이
bamboo%pre-hydrolysis%lignin%migration
通过分析竹片在预水解过程中的表面形貌及化学组成变化,研究木质素在竹材水解过程中的迁移行为。结果表明,在竹片预水解过程中,竹片内部的木质素类物质会逐渐迁移至竹片的表层和表面。竹片表层物质的FT-IR图显示,木质素特征峰随着水解程度的提高不断增强,而半纤维素特征峰则逐渐消失;竹片表层物质的XPS图显示,水解至120 min时表层物质的C1( C-C/C-H)含量较竹原料显著增加,从24.0%上升至45.5%,C2(C-O)含量明显减小,从35.5%下降至24.3%,O/C从0.43降低至0.34;水解20 min时表层木质素含量略低于竹片平均木质素含量,超过20 min后表层木质素含量均高于竹片平均木质素含量,而且其差值逐渐上升,水解120 min时,表层木质素为43.3%,竹片平均木质素为26.5%。
通過分析竹片在預水解過程中的錶麵形貌及化學組成變化,研究木質素在竹材水解過程中的遷移行為。結果錶明,在竹片預水解過程中,竹片內部的木質素類物質會逐漸遷移至竹片的錶層和錶麵。竹片錶層物質的FT-IR圖顯示,木質素特徵峰隨著水解程度的提高不斷增彊,而半纖維素特徵峰則逐漸消失;竹片錶層物質的XPS圖顯示,水解至120 min時錶層物質的C1( C-C/C-H)含量較竹原料顯著增加,從24.0%上升至45.5%,C2(C-O)含量明顯減小,從35.5%下降至24.3%,O/C從0.43降低至0.34;水解20 min時錶層木質素含量略低于竹片平均木質素含量,超過20 min後錶層木質素含量均高于竹片平均木質素含量,而且其差值逐漸上升,水解120 min時,錶層木質素為43.3%,竹片平均木質素為26.5%。
통과분석죽편재예수해과정중적표면형모급화학조성변화,연구목질소재죽재수해과정중적천이행위。결과표명,재죽편예수해과정중,죽편내부적목질소류물질회축점천이지죽편적표층화표면。죽편표층물질적FT-IR도현시,목질소특정봉수착수해정도적제고불단증강,이반섬유소특정봉칙축점소실;죽편표층물질적XPS도현시,수해지120 min시표층물질적C1( C-C/C-H)함량교죽원료현저증가,종24.0%상승지45.5%,C2(C-O)함량명현감소,종35.5%하강지24.3%,O/C종0.43강저지0.34;수해20 min시표층목질소함량략저우죽편평균목질소함량,초과20 min후표층목질소함량균고우죽편평균목질소함량,이차기차치축점상승,수해120 min시,표층목질소위43.3%,죽편평균목질소위26.5%。
Understanding of the lignin migration behavior during bamboo pre-hydrolysis is essential for optimization of pre-hydrolysis technology and following cooking process. In this paper, the lignin migration behavior was investigated by Environment Scanning Electron Microscope ( ESEM ) and chemical composition analysis. The results showed that the interior lignin would gradually migrate to the bamboo surface. The infrared absorption characteristic peaks of lignin were enhanced while the peaks of hemicellulose were gradually disappeared during the pre-hydrolysis. The XPS analysis indicated that the C1 ( C-C/C-H ) content increased from 24. 0% to 45. 5%, while C2 ( C-O) content decreased from 35. 5% to 24. 3% and the O/C ratio decreased from 0. 43 to 0. 34 as the bamboo was pre-hydrolyzed for 120 minutes. The higher lignin concentration was observed in the pretreated bamboo surface as compared to other raw material. The disparity between the lignin concentration of the whole bamboo and the lignin concentration of the bamboo surface increased with the pre-hydrolysis time, and lignin cocentration increased from 26. 5 % to 43. 3 % at the time of 120 min.