Studies on the treatment of kraft bleaching effluents with lignin-degrading fungi

李 宣鎬, 近藤 隆一郎, 坂井 克己, Senne Lee, R. Kondo, K. Sakai
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Abstract

Typically, for production of high brightness pulp, the residual lignin in unbleached kraft pulp is commonly removed through a multi-stage bleaching process with the use of chlorine species. The effluent from such a bleaching process is dark brown due to their content of chromophoric and polymeric lignin derivaties. Moreover, the organically bound chlorine [measured as total organically bound chlorine (TOCI) or adsorbable organic halogen (AOX)) is present in a wide range of organic materials which have toxic and mutagenic properties. It has recently been discovered that small quantities of dioxines [polychlorinated dibenzo dioxin (PCDD) and polychlorinated dibenzo furan (PCDF)) can also appear in bleach plant effluents. Consequently, this bleaching effluent is not easily recycled within a mill recovery system because of the potential corrosion problems created by its high chlorine content and finally affects the harmful effects on the environment. The purpose of the present research is to describe the decolorization of the El effluent with white-rot fungi showing the Iigninolytic activity, to accomplish efficient treatment of kraft bleachery efficient with less energy and in relatively short treatment-period. First, it was attempted to design the effective treatment process of the El effluent with the fungus IZU-154 showing ligninolytic activity. It has revealed that the color of the effluent was effectively removed when glucose was added as an additive. Furthermore, the addition of glucono-d-lactone to the El effluent produced a more remarkable degree of decolorization than did that of glucose. All white-rot fungi tested showed high decolorization effect of the El effluent in the presence of glucono-d-lactone. It is suggested that the effect of glucono-d-Iactone on the high decolorization of El effluent are closely associated with the activity of the surfaces of the mycelium due to the change of pH of the effluent during fungal treatment. Moreover, to establish a more practical system for the decolorization of the bleaching effluent, a screening have been performed to find fungi having high decolorization activity of the El effluent without any additional nutrients. The
木质素降解真菌处理硫酸盐漂白废水的研究
通常,为了生产高亮度纸浆,未漂白硫酸盐纸浆中的残余木质素通常通过使用氯类的多阶段漂白过程去除。这种漂白工艺的出水是深褐色的,因为它们含有显色性和聚合木质素衍生物。此外,有机结合氯(以总有机结合氯(TOCI)或可吸附有机卤素(AOX)测量)广泛存在于具有毒性和诱变特性的有机材料中。最近发现,在漂白剂厂的废水中也可出现少量的二恶英[多氯二苯并二恶英(PCDD)和多氯二苯并呋喃(PCDF)]。因此,这种漂白废水不容易在工厂回收系统内回收,因为它的高氯含量造成了潜在的腐蚀问题,并最终影响对环境的有害影响。本研究的目的是描述白腐菌对El废水的脱色作用,以较低的能量和较短的处理时间完成对硫酸盐漂白的高效处理。首先,尝试设计出具有木质素降解活性的真菌IZU-154处理El废水的有效工艺。结果表明,当添加葡萄糖作为添加剂时,出水的颜色被有效地去除。此外,在El废水中添加葡萄糖内酯比添加葡萄糖产生更显著的脱色程度。所有白腐菌对含葡萄糖内酯的El废水均有较好的脱色效果。结果表明,葡萄糖内酯对El出水高度脱色的影响与真菌处理过程中流出液pH值的变化导致菌丝表面活性的变化密切相关。此外,为了建立一个更实用的漂白出水脱色系统,我们进行了筛选,以找到对El出水具有高脱色活性的真菌,而不需要任何额外的营养物质。的
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