화학(化學)펄프 제조(製造)에 미생물(微生物)의 응용(應用) 가능성(可能性)

On Possible Application of Microorganism for Chemical Pulping

  • 이선호 (용인공업전문대학 제지공업과) ;
  • 윤병호 (강원대학교 산림과학대학 제지공학과) ;
  • 이원용 (강원대학교 산림과학대학 임산공학과)
  • Lee, Seon-Ho (Dept. of Paper Technology, Yong-In Technical College) ;
  • Yoon, Byong-Ho (Dept. of Paper Science Engineering Technology, College of Forest Sciences, Kangwon National University) ;
  • Lee, Won-Yong (Dept. of Wood Science and Technology, College of Forest Sciences, Kangwon National University)
  • 발행 : 1997.06.30

초록

백색부후균인 Fomes pini (Thore) Lloyd에 의해 처리된 chip을 anthraquinone(AQ)을 첨가하여 화학 펄프화를 실시하여 얻은 결과를 미처리재의 것과 비교하였다. 균처리함에 의해 카파값 20에서의 H factor는 소다와 크라프트 증해에서 각각 17%와 15%가 감소되었다. 이러한 결과는 목재를 백색부후균으로 처리함으로 인해 탈리그닌이 용이해졌음을 나타내는 것이다. 비페놀성 ${\beta}$-O-4 화합물인 veratrylglycerol-${\beta}$-guaiacyl ether(I)와 페놀성 ${\beta}$-O-4 화합물인 syringylglycerol-${\beta}$-syringyl ether(III)에 백색부후균을 작용시키면 반응생성물로서 각각 ${\alpha}$-guaiacoxy-${\beta}$-hydroxypropioveratrone(II)과 ${\alpha}$-syringyloxy-${\beta}$-hydroxypropiosyringone(IV)이 생성됨이 밝혀졌다. 따라서 목재에 균처리를 함으로서 카르보닐기가 리그닌의 측쇄 ${\alpha}$ 위에 도입되어 그로 인해 탈리그닌이 용이하게 된 것으로 여겨진다.

The decayed wood by Fomes pini (Thore) Lloyd required a smaller H factor than the sound wood for pulping to permanganate number 20. The H factors for the decayed wood pulping by the kraft and soda processes were reduced by 15% and 17%, respectively, in the presence of 1% anthraquinone. The wood components degraded by fungi are normally more readily solubilized in alkali than the corresponding components in sound wood. The nonphenolic ${\beta}$-O-4 type lignin model compound, veratrylglycerol-${\beta}$-guaiacyl ether(I), and phenolic model compound, syringylglycerol-${\beta}$-syringyl ether(III), were degraded by the white-rot fungi to yield ${\alpha}$-guaiacoxy-${\beta}$-hydroxypropioveratrone(II) from the former and ${\alpha}$-syringyloxy-${\beta}$-hydroxypropiosyringone(IV) from the latter. Structures of the degradation products indicated that C ${\alpha}$-oxidation could occur with white-rot fungi. It has been shown that the alkaline cleavage of ${\beta}$-aryl ether bonds in the lignin units is accelerated by the presence of ${\alpha}$-carbonyl groups.

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