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首页> 外文期刊>Cellulose Chemistry and Technology: International Journal for Physics, Chemistry and Technology of Cellulose and Lignin >WILLOW CM PULPS FOR NEWSPRINT. II. RELATIONSHIPS BETWEEN WOOD CHARACTERISTICS AND PULP PROPERTIES
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WILLOW CM PULPS FOR NEWSPRINT. II. RELATIONSHIPS BETWEEN WOOD CHARACTERISTICS AND PULP PROPERTIES

机译:WILLOW CM纸浆用于新闻打印。二。木材特性与纸浆特性之间的关系

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The aim of this work was to establish relations, through multiple regressions, that allow the prediction of the properties of CMP pulp from willows for newsprint, from the viewpoint of wood characteristics. Another objective was to verify whether the traditional factors used to characterize softwood mechanical pulps are still applicable to hardwood chemimechanical pulps. Linear and quadratic multiple regression models were evaluated by the results of a previous work, on the chemimechanical pulping of six willow clones (Salix sp) from two different plantation sites. The variables measured on wood, considered as independent variables, were the following: basic density, fiber length, fiber width, cell wall thickness, lumen width, moisture content, hot water and alcohol-benzene extractive content, total extractives, soluble materials in 1 % sodium hydroxide, insoluble, soluble and total lignin, and cellulose content of wood. The independent pulp variables were fractions of MacNett classification, Forgacs' "L" factor, intrinsic fiber strength (measured by zero span tensile test), water retention value (WRV) and pulp drainability (°SR). The dependent variables used were specific volume, tear and tensile index, brightness, opacity, light scattering coefficient (s) and light absorption coefficients of handsheets (k). The best fit models were obtained by considering fiber fractions and pulp weakening and, to a lesser extent, the properties of wood. Therefore, one could reasonably predict numerous chemimechanical pulp properties that could be used as a first selection criterion for obtaining clones for pulp with better mechanical and optical properties.
机译:这项工作的目的是通过多重回归建立关系,从而从木材特性的角度,从柳叶中预测用于新闻纸的CMP纸浆的性能。另一个目的是验证用于表征软木机械纸浆的传统因素是否仍然适用于硬木化学机械纸浆。通过先前工作的结果,对来自两个不同种植园的六个柳树克隆(Salix sp)的化学机械制浆,评估了线性和二次多元回归模型。在木材上测得的变量被认为是独立变量,以下是:基本密度,纤维长度,纤维宽度,细胞壁厚度,管腔宽度,水分含量,热水和乙醇-苯提取物含量,总提取物,可溶性物质合计1 %的氢氧化钠,不溶的,可溶的和总的木质素以及木材的纤维素含量。独立的纸浆变量是MacNett分类的分数,Forgacs的“ L”因子,固有纤维强度(通过零跨度拉伸试验测量),保水率(WRV)和纸浆排水性(°SR)。使用的因变量是比容,撕裂和拉伸指数,亮度,不透明度,光散射系数和手抄纸的光吸收系数(k)。最佳拟合模型是通过考虑纤维含量和纸浆弱化程度以及木材的性能(较小程度)而获得的。因此,可以合理地预测众多化学机械纸浆性能,这些化学机械性能可用作获得具有更好机械和光学性能的纸浆克隆的第一选择标准。

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