首页> 外文期刊>Forest Products Journal >Effect of Pinus radiata Bark Polyphenols on Phenol Liquefaction of Cellulose in the Presence of p-Toluene Sulfonic Acid Catalyst
【24h】

Effect of Pinus radiata Bark Polyphenols on Phenol Liquefaction of Cellulose in the Presence of p-Toluene Sulfonic Acid Catalyst

机译:对甲苯磺酸催化剂下辐射松树皮多酚对纤维素苯酚液化的影响

获取原文
获取原文并翻译 | 示例
           

摘要

The influence of Pinus radiata bark polyphenol components in the phenol liquefaction of P. radiata bark was investigated using p-toluene sulfonic acid (PTSA) and sulfuric acid (SA) as acid catalysts. A series of the phenol liquefaction reactions werecarried out using mixtures of pure cellulose with increasing amounts of hot-water extract (HWE) of P. radiata bark— the polyphenol-rich component of bark. The yields of liquefied product reactions and combined phenol amounts in them were determined, andthe liquefaction residues were also analyzed for determination of acid-soluble and insoluble polyphenols and residual cellulose fractions.The yield of cellulose liquefaction decreased linearly with increasing amounts of HWE with the effect being more pronounced for SA than for PTSA. The combined phenol amount increased with liquefaction yield increases for both SA and PTSA catalysts, but at liquefaction yield levels above 83 percent, more phenol was combined for SA catalyst than for PTSA catalyst. The liquefaction residues contained lower cellulose and higher polyphenol components for SA catalyst than for PTSA catalyst at the same liquefaction time. The results indicate that the bark polyphenol components can significantly interfere in the acid-catalyzed bark phenol liquefaction reactions by their excessive condensation with cellulose and/or phenol, especially in the presence of SA catalyst.
机译:以对甲苯磺酸(PTSA)和硫酸(SA)为酸催化剂,研究了辐射松树皮多酚成分对辐射梨树皮苯酚液化的影响。使用纯纤维素与放射状P.radiata树皮(树皮中富含多酚成分)的热水提取物(HWE)数量增加的混合物进行了一系列苯酚液化反应。测定液化产物反应的收率和其中的总苯酚量,并分析液化残渣以测定酸溶性和不溶性多酚和残留的纤维素馏分。 SA比PTSA更明显。 SA和PTSA催化剂的总苯酚含量随液化产率的增加而增加,但在液化产率水平超过83%时,SA催化剂的苯酚结合量大于PTSA催化剂。在相同的液化时间下,与PTSA催化剂相比,SA催化剂的液化残余物含有更少的纤维素和更高的多酚组分。结果表明,树皮多酚组分由于它们与纤维素和/或苯酚的过度缩合,特别是在SA催化剂的存在下,可以显着干扰酸催化的树皮酚的液化反应。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号