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Discovery of new enzymes for degrading wood extractives and bleaching.

机译:发现用于降解木材提取物和漂白的新酶。

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摘要

This thesis focuses on discovering new enzymes for applications in the control of extractives in pulp and paper manufacturing and high efficiency biobleaching. The goal was to better understand the potential of soybean lipoxygenase for removal of detrimental pulp extractives from thermomechanical pulp (TMP). Lipoxygenase treatment at both a 1% and 12% pulp consistency resulted in a 15% reduction in total extractives. The enzyme showed a high specificity towards lipophilic fractions primarily consisting of fatty acids and their esters. Several extractive compounds such as resin acids and lignans inhibited lipoxygenase-catalyzed reactions with fatty acids. In proving the concept of lipoxygenase for extractives degradation, a 96-well UV microplate assay was developed to screen enzymes from fungal species with high reduction oxidases.; A second contribution from this thesis was to determine the potential of accessory enzymes in pulp bleaching. A commercial lipase, lipase A "Amano" 12RTM was used since it exhibited high levels of accessory enzymes. Enzymatic treatment of hardwood and softwood kraft pulps resulted in a notable reduction of kappa number and hexenuronic acid contents. Two enzyme fractions containing high accessory enzyme activities were obtained. There fractions exhibited high bleaching efficiency and a high selectivity as was demonstrated which led to a notable reduction in the amount of sugar released compared to present enzyme bleaching with the commercial xylanase produced by Iogen.
机译:本论文的重点是发现新的酶,这些酶可用于制浆和造纸生产中的萃取物以及高效生物漂白。目的是更好地了解大豆脂氧合酶从热机械纸浆(TMP)中去除有害纸浆提取物的潜力。纸浆浓度分别为1%和12%的脂氧合酶处理可使总提取物减少15%。该酶对主要由脂肪酸及其酯组成的亲脂级分显示出高特异性。几种萃取性化合物(例如树脂酸和木脂素)可抑制脂氧合酶催化的脂肪酸反应。为了证明脂氧合酶用于提取物降解的概念,开发了一种96孔UV微孔板测定法,用于从具有高还原氧化酶的真菌物种中筛选酶。本论文的第二个贡献是确定纸浆漂白中辅助酶的潜力。使用商业脂肪酶脂肪酶A“ Amano” 12RTM,因为它显示出高水平的辅助酶。硬木和软木牛皮纸浆的酶处理导致κ值和己糖醛酸含量的显着降低。获得了两个具有高辅助酶活性的酶馏分。如所证明的,这些级分显示出高的漂白效率和高的选择性,与用Iogen生产的商业木聚糖酶进行的当前酶漂白相比,其导致糖释放量的显着减少。

著录项

  • 作者

    Nguyen, David T. T.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Biology Microbiology.; Agriculture Wood Technology.
  • 学位 M.Sc.
  • 年度 2007
  • 页码 79 p.
  • 总页数 79
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;森林采运与利用;
  • 关键词

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