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The potential of using a combined fungal and enzyme treatment system to remove detrimental dissolved and colloidal substances from TMP/newsprint mill process waters.

机译:使用真菌和酶组合处理系统从TMP /新闻纸厂工艺用水中去除有害的溶解和胶体物质的潜力。

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摘要

The main objective of this thesis was to assess the potential of using a combined fungal and enzyme system as an internal treatment “kidney” to control the build up of detrimental dissolved and colloidal substances present in a TMP/newsprint mill process water. Some specific objectives were achieved as a result of this study.; A clear knowledge of the composition of a “typical” TMP process white water gave us a better understanding of the influence that the DCS components had on paper properties and it also helped in the design of an appropriate treatment technology. These included mill white waters collected from a typical TMP/newsprint mill and “model” recycled white waters (one to five times recycled white waters) made in the PAPRICAN pilot plant. A comprehensive protocol was established to analyze each of DCS components present in the different white water samples and to determine the various physical properties of each of the white water samples. By examining the physical properties of the handsheets prepared by using these different white waters, it was recognized that the properties of the papersheets formed in the white water were not only influenced by the different chemical natures of the white water DCS components, but also by their physical form (i.e. dissolved or colloidal).; The major detrimental components present in the white water were shown to be lignin and lipophilic extractives. Thus, the next objective of the study was to screen various fungi for their activities against these substances and to find a suitable strain that could carry out effective fungal and enzyme treatment of the white waters. As anticipated, the fungi utilized a small portion of the white water from the main stream which was cooled to 30°C before feeding into a bioreactor to produce enzymes present within the fungal culture filtrate (FCF). More importantly, many of the enzymes required to break down the DCS substrates could then be released into the white water.; Over twenty fungal strains were screened through a two step-process. From the two screening steps, the white-rot fungus Trametes versicolor showed both the highest growth on white water and highest activity against the DCS components present in the TMP white water. Therefore, this fungus was selected for further study. (Abstract shortened by UMI.)
机译:本文的主要目的是评估使用真菌和酶联合系统作为内部处理“肾脏”以控制TMP /新闻纸厂工艺用水中有害的溶解和胶体物质积累的潜力。这项研究的结果达到了一些特定的目标。清楚了解“典型” TMP工艺白水的组成,使我们对DCS组分对纸张性能的影响有了更好的了解,并且还有助于设计适当的处理技术。其中包括从典型的TMP /新闻纸厂收集的工厂白水,以及在PAPRICAN中试工厂中制造的“模型”再生白水(是再生白水的1至5倍)。建立了全面的协议来分析存在于不同白水样品中的每种DCS成分,并确定每种白水样品的各种物理性质。通过检查使用这些不同的白水制备的手抄纸的物理性质,可以认识到在白水中形成的纸张的性能不仅受白水DCS组分的不同化学性质的影响,而且还受到其DCS成分的不同化学性质的影响。物理形式(即溶解或胶体)。白水中存在的主要有害成分被证明是木质素和亲脂性提取物。因此,研究的下一个目标是筛选各种真菌对这些物质的活性,并找到合适的菌株,以对白水进行有效的真菌和酶处理。如预期的那样,真菌利用了来自主流的一小部分白水,将其冷却至30°C,然后再馈入生物反应器以产生真菌培养滤液(FCF)中存在的酶。更重要的是,分解DCS底物所需的许多酶可以释放到白水中。通过两个步骤筛选了超过20种真菌菌株。在两个筛选步骤中,白腐真菌杂色Trametes versicolor 在白水上显示出最高的生长速度,并且对TMP白水中存在的DCS成分具有最高的活性。因此,该真菌被选作进一步研究。 (摘要由UMI缩短。)

著录项

  • 作者

    Zhang, Xiao.;

  • 作者单位

    The University of British Columbia (Canada).;

  • 授予单位 The University of British Columbia (Canada).;
  • 学科 Agriculture Wood Technology.; Environmental Sciences.; Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 157 p.
  • 总页数 157
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 森林采运与利用;环境科学基础理论;环境污染及其防治;
  • 关键词

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