南京林业大学学报(自然科学版) ›› 2008, Vol. 32 ›› Issue (05): 32-36.doi: 10.3969/j.jssn.1000-2006.2008.05.006

• 研究论文 • 上一篇    下一篇

松油醇生产中副产物化学组成分析及利用

安鑫南1,2,罗金岳1,3   

  1. 1. 南京林业大学化学工程学院, 江苏 南京 210037; 2. 广西林产化学品开发与应用重点实验室, 广西 南宁 530006
  • 出版日期:2008-10-18 发布日期:2008-10-18

Study on the chemical composition of by-product from terpineol production and its utilization

AN Xin-nan1,2, LUO Jin-yue1,2   

  1. 1. College of Chemical Engineering Nanjing Forestry University, Nanjing 210037, China; 2. Key Laboratory of Development and Application of Forest Chemicals of Guangxi, Nanning 530006, China
  • Online:2008-10-18 Published:2008-10-18

摘要: <正>为探讨黑松受不同毒力松材线虫与无毒拟松材线虫侵染后,超氧自由基O2在互作早期对松材线虫病发生发展的作用,采用2年生黑松接种强毒、弱毒松材线虫与无毒拟松材线虫,于接种后4、12、24、48、72、96、120 h对受侵染黑松的茎干和针叶取样测定。结果表明:黑松受不同毒力供试线虫侵染后体内02:和SOD活性变化差异显著。接种后12 h,松树茎、叶中的O2-均出现第1次突增,茎部突增的强度与供试线虫毒力呈负相关,在针叶内O2-出现第2次突增,且无毒拟松材线虫处理48 h的启动时间早于强毒松材线虫72 h的。SOD活性在接种无毒拟松材线虫的松树茎、叶中出现两次突增,而接种强毒松材线虫的处理仅出现1次突增。3种处理黑松茎、叶的Mn-SOD含量在24 h后第1次突增,且接种无毒拟松材线虫的高于接种强毒松材线虫的。O2-与SOD的变化趋势在一定程度上呈正相关关系,但SOD的特异变化滞后于O2-的变化。由此可见,超氧自由基可能是松树受松材线虫侵染后进行信号转导的重要桥梁物质。

Abstract: The chemical composition of by-product from terpineol production was analyzed by GC-MS, and 22components were identified. The main components are limonene,isoterpinolene,α-pinene and eucalyptol etc. Reaction of terpineol production by-product which was catalyzed with SO42-/TiO2-ZrO2solid superacid were studied. The effects of conditions for preparation of SO42-/TiO2-ZrO2catalysts, such as ratio of Ti to Zr, calcination temperature, reaction temperature, reaction time, catalyst dosage, on its catalytic activity was investigated. Furthermore, the effect of storage time of the cataIysts on the reaction was discussed, and the experiments of catalyst repeat use were carried out. The products of reaction were identified by GC-MS. In the reaction, the main product was p-cymene, and the by-products were terpinolene and α-terpinene, as well. The results showed that the optimum conditions for the preparation of SO42-/TiO2-ZrO2catalysts were the ratio of Ti to Zr 3mol/mol, and calcinations temperature 650℃. At these conditions, the main factors affecting the reaction were investigated in the work. The optimum conditions for by-product reaction from terpineol production were as follows: reaction time 6h, reaction temperature 130℃, and catalyst dosage 3%. Under these conditions, the content of p-cymene was 60. 60%.

中图分类号: