• 제목/요약/키워드: guaiacyl ring

검색결과 2건 처리시간 0.014초

리그닌 화합물의 열분해에 관한 기초 연구 (Basic Studies on the Pyrolysis of Lignin Compounds)

  • 황병호
    • 임산에너지
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    • 제20권1호
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    • pp.35-41
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    • 2001
  • 리그닌 모델화합물 Ⅰ-Ⅳ의 시료를 315℃에서 열분해 시킨 결과, 리그닌 모델호합물 Ⅰ, Ⅱ의 열분해에서는 guaiacol이 0.47mol, DMP가 0.57mol로, DMAP는 0.12와 0.23mol로 각각 생성되었으며, 리그닌 모델화합물 Ⅲ, Ⅳ의 열분해에서는 guaiacol의 생성이 0.26mol, DMP가 0.30mol로 TMAP는 0.09mol 과 0.15mol이 각각 생성되었다. 리그닌 모델화합물 열분해 메커니즘으로서는 우선 탈수되고, 이어서 β-O-4 결합이 개열되어 guaiacol, DMP, DMAP와 TMAP가 생성되는 것을 알 수 있었다.

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백색부후균에 의한 크라프트 리그닌의 분해(I) -리기다소나무 리그닌- (Biodegradation of Kraft Lignins by White-Rot Fungi(I) -Lignin from Pitch Pine-)

  • 김명길;안원영
    • 임산에너지
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    • 제17권1호
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    • pp.56-70
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    • 1998
  • This study was carried out to investigate the structural characteristics of kraft lignin and the wood degrading characteristics, the productivity of ligninolytic enzymes and the enzymatic degradation of kraft lignin by white-rot fungi. To purify kraft lignin, precipitation of kraft pulping black liquors of pitch pine meal was done by titration with lN $H_{2}SO_{4}$ reaching to pH 2, and isolation of the precipitates done by centrifugation. The isolated precipitates from pitch pine were redissloved in lN NaOH, reprecipitated by titration with lN $H_{2}SO_{4}$, washed with deionized water, and kept ofr analysis after freeze drying. Fractionation of the precipitates in solution by successive extraction with $CH_{2}Cl_{2}$ and MeOH, and the fractionates were named SwKL, SwKL I, SwKL II, and SwKL III for pitch pine kraft lignin. The more molecular weights of kraft lignin increased, the less phenolic hydroxyl groups and the more aliphatic hydroxyl groups. Because as the molecular weights increased, the ratio of etherified guaiayl/syringyl(G/S ratio) and the percentage were increased. The spectra obtained by 13C NMR and FTIR assigned by comparing the chemical shifts of various signals with shifts of signals from autherized ones reported. The optimal growth temperature and pH of white-rot fungi in medium were $28^{\circ}C$ and 4.5-5.0, respectively. Especially, in temperature and pH range, and mycelial growth, the best white-rot fungus selected was Phanerochaete chrysosporium for biodegradation. For the degradation pathways, the ligninolytic fungus jcultivated with stationary culture using medium of 1% kraft lignin as a substrate for 3 weeks at $28^{\circ}C$. The weight loss of pitch pine kraft lignin was 15.8%. The degraded products extracted successively methoanol, 90% dioxane and diethyl ether. The ether solubles were analyzed by HPLC. Kraft lignin degradation was initiated in $\beta$-O-4 bonds of lignin by the laccase from Phanerochaete chrysosporium and the degraded compounds were produced from the cleavage of $C\alpha$-$C\beta$ linkages at the side chains by oxidation process. After $C\alpha$-$C\beta$ cleavage, $C\alpha$-Carbon was oxidized and changed into aldehyde and acidic compounds such as syringic acid, syringic aldehyde and vanilline. And the other compound as quinonemethide, coumarin, was analyzed. The structural characteristics of kraft lignin were composed of guaiacyl group substituted functional OHs, methoxyl, and carbonyl at C-3, -4, and -5 and these groups were combinated with $\alpha$ aryl ether, $\beta$ aryl ether and biphenyl. Kraft lignin degradation pathways by Phanerochaete chrysosporium were initially accomplished cleavage of $C\alpha$-$C\beta$ linkages and $C\alpha$ oxidation at the propyl side chains and finally cleavage of aromatic ring and oxidation of OHs.

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