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Irradiation based clean and energy efficient thermochemical conversion of biowaste into paper

机译:基于辐射的清洁,节能的热化学转化方法,将生物废料转化为纸张

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The advancement in plastic and plastic based products in last two decades has imposed a serious threat to the environment. This has led to an increase in the demand for sustainable and biobased products. Paper and paper products are good alternatives to their plastic counterparts. A key element of paper industry is the raw material (wood, bamboo and nonwood agricultural residues such as bagasse, straws etc.) from which pulp is produced. The pulp is then utilized for production of paper. There are many pulping processes to prepare pulp of various qualities. For fine grade pulp, chemical pulping is used. The chemical pulp is produced by soda, kraft and sulphite pulping processes. However, for newsprint grade pulp, stone ground wood (SW), thermomechanical (TMP), chemi-thermomechanical (CTMP), chemi-mechanical (CMP) or refiner mechanical (RMP) corresponding pulping processes are employed. The method of pulp preparation (pulping process) consumes large amount of energy and chemicals. A new pulping process with electron irradiation using biowaste (bagasse) as a raw material is discussed in this work. Bagasse pulping process is found to reduce about 50% of energy consumption during pulping process. The process is referred to as 'ECTMP' (Energy Efficient Chemi-Thermo Mechanical Pulping). The paper produced from aforesaid method also reflected no loss of strength properties with respect of TMP reference pulps. Henceforth, preliminary calculation based on experimental results shows that the proposed bagasse ECTMP process explored the scope of energy savings of the order of 50%. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在过去的二十年中,塑料和塑料制品的发展对环境构成了严重威胁。这导致对可持续和生物基产品的需求增加。纸和纸制品是塑料制品的良好替代品。造纸工业的关键要素是生产纸浆的原料(木材,竹子和非木材农业残留物,例如蔗渣,稻草等)。然后将纸浆用于造纸。有许多制浆工艺来制备各种品质的纸浆。对于高级纸浆,使用化学制浆。化学纸浆是通过苏打,牛皮纸和亚硫酸盐制浆工艺生产的。但是,对于新闻纸级纸浆,采用相应的制浆工艺为石磨木(SW),热机械(TMP),化学热机械(CTMP),化学机械(CMP)或精炼机械(RMP)。纸浆的制备方法(制浆过程)消耗大量的能量和化学物质。在这项工作中讨论了一种新的制浆工艺,该工艺采用了以生物废料(甘蔗渣)为原料的电子辐照。发现蔗渣制浆过程在制浆过程中减少了约50%的能耗。该过程称为“ ECTMP”(节能化学热机械制浆)。用上述方法生产的纸相对于TMP参考纸浆也没有反映出强度性能的损失。今后,基于实验结果的初步计算表明,提出的甘蔗渣ECTMP工艺探索了50%量级的节能范围。 (C)2019 Elsevier Ltd.保留所有权利。

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