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Synthesis of Pulping Processes With Fiber Loading Methods for Lightweight Papers

机译:轻质纸纤维负载法制浆工艺的综合

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Pulping technologies can be synthesized with fiber loading with simultaneous alkaline peroxide bleaching to produce lightweight high-opacity printing papers. We compared the results of recent experiments on combining oxalic acid pretreated wood chips used for thermomechanical pulp (TMP) with fiber loading and previous experiments on combining similar pulps treated with fungal and microwave pretreatments with fiber loading. For TMP at 100 mL CSF, various species and pretreatments resulted in differences in (a) energy requirements for pulp production, (b) properties of handsheets prepared from pulps, and (c) response of pulps to precipitated calcium carbonate added conventionally and by fiber loading. Of the three treatment methods (oxalic acid, fungal (bio-treatment), and microwave), refining energy reduction was greatest for bio-treated TMP (31%). For microwave and oxalic acid treated pulps, energy was reduced 10% and 20%, respectively. All three pretreatments improved handsheet strength properties to about the same extent. Brightness and scattering coefficient were reduced the least by oxalic acid treatment, followed by microwave and bio-pretreatments. Fiber loading of bio-pretreated TMP improved handsheet strength compared with that of control TMP. Fiber loading and direct loading of oxalic acid pretreated pulps resulted in similar handsheet strengths.
机译:可以通过在纤维负载下同时进行碱性过氧化物漂白来合成制浆技术,以生产轻质的高不透明度打印纸。我们比较了将用于热机械纸浆(TMP)的草酸预处理木屑与纤维负载相结合的最新实验结果,以及将经过真菌和微波预处理的类似纸浆与纤维负载相结合的先前实验的结果。对于100 mL CSF的TMP,各种物质和预处理导致以下差异:(a)纸浆生产的能量需求,(b)由纸浆制备的手抄纸的性能,以及(c)纸浆对常规添加和通过纤维添加的沉淀碳酸钙的反应加载中。在三种处理方法(草酸,真菌(生物处理)和微波)中,经生物处理的TMP的精炼能量减少最大(31%)。对于微波和草酸处理的纸浆,能量分别降低了10%和20%。所有这三种预处理将手抄纸的强度性能提高到大约相同的程度。草酸处理,然后进行微波和生物预处理,亮度和散射系数的降低最少。与对照TMP相比,生物预处理TMP的纤维负载量提高了手抄纸的强度。纤维加载和草酸预处理纸浆的直接加载产生相似的手抄纸强度。

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