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Fiber Qualities of Pretreated Betung Bamboo (Dendrocalamusasper) by Mixed Culture of White-Rot Fungi with Respect to Its Use for Pulp/Paper

机译:白腐真菌混合培养对纸浆/纸的使用混合培养物的预处理的白蛋白(Dendrocalamusasper)的纤维品质

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摘要

Previous research on anatomical structures of pretreated large (betung) bamboo (Dendrocalamusasper) using single culture of white-rot fungi has been investigated, which revealed that the pretreatment caused the decrease in the Runkel ratioas well as the coefficient rigidity and the increase in the flexibility ratio of their corresponding bamboo fibers. However, there is no study reported on the anatomical structure changes of them caused by pretreatment using mixed culture of white-rot fungi. This paper reports the results of the research on paper/pulp quality after different treatments. Pretreatment that used Trametes versicolor fungi and lasted for 45 days inflicted intensive fiber damages compared with those of untreated bamboo (control). Fresh and barkless large (betung) bamboo chips of 2 year's old, and 1.6 cm in length, were inoculated by 10% of mixed culture of white-rot fungi inoculums stock for 30 and 45 days in room temperature. There were four treatment groups of mixed culture, i.e T. versi color and P. ostreatus (TVPO); P. ostreatus and P. chrysosporium (POPC); P. chrysosporium and T.versi color (PCTV); and P.chrysosporium,  T.versicolorand  P.ostreatus  (TVPCPO).After  the  inoculation  period,  the  chips  weremacerated into separate fibers using Scultze method to analyze the fiber dimension and its derived values. The fibers were then observed regarding their macro and microscopic structures by optical microscope. Mixed culture pretreatment of white-rot fungi accelerated improvement of fiber morphology and fiber derived value characteristics, except for Muhlsteph ratio. The fiber derived values oftreated bamboo tended to improve compared to those of untreated bamboo, there by requiring milder pulping conditions. Accordingly, the treated bamboo would indicatively produce a good quality pulp (grade I) based on FAO and LPHH (Forest Product Research Report) requirements. Co-culture treatment using P. chrysosporium and P. ostreatus for 45 days produced the best fiber dimension and its derived value properties. The fungi hypae colonized on the surface area of  bamboo followed by mycelium penetration into substrate (bamboo-inner structure). The partial degradation caused by delignification indicatively attributed to the fungi activity was shown in the macroscopic images.
机译:上预处理的大(betung)竹使用的白腐真菌单一培养物(Dendrocalamusasper)的解剖结构先前的研究已经进行了研究,结果发现,该预处理造成了伦克尔减少ratioas以及系数刚性和柔韧性的增加它们相应的竹纤维的比例。然而,没有关于使用白腐真菌的混合培养的预处理引起的解剖结构变化的研究。本文报告了不同治疗后纸张/纸浆质量研究的结果。与未经处理的竹子(控制)相比,使用过摩托车的预处理验证了45天的45天,造成了密集的纤维损失。新鲜和吠声的大型(Betung)竹芯片为2年的旧约,1.6厘米的长度,接种了10%的白腐真菌造物的混合培养物30和45天在室温下。有四组混合培养基,I.E.E。Versi颜色和P. Ostreatus(TVPO); P. Ostreatus和P. Chrysosporium(Popc); P. Chrysosporium和T.Versi颜色(PCTV);和p.chrysporium,t.versicolorand p.ostreatus(tvpcpo)。在接种期间,使用Scultze方法将芯片与单独的纤维进行,以分析光纤尺寸及其推导值。然后通过光学显微镜观察到其宏观和微观结构的纤维。混合培养预处理白腐真菌加速改善纤维形态和纤维衍生的值特征,除了Muhlsteph比例。通过需要更温和的制浆条件,玻璃纤维衍生的竹子与未经处理的竹子相比改善。因此,处理过的竹子将基于粮农组织和LPHH(森林产品研究报告)要求,呈现出良好的质量纸浆(等级I)。使用P. Chrysporium和P. Ostreatus的共培养治疗45天产生了最佳的纤维尺寸及其推导性值。真菌贮藏在竹子表面积上殖民,然后是菌丝体渗透到基材(竹子内部结构)中。在宏观图像中显示出归因于真菌活性的脱铜引起的部分降解。

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