首页> 外文期刊>The Canadian Journal of Chemical Engineering >Energy and paper recycling: Modelling the time and energy requirements for low consistency batch repulping
【24h】

Energy and paper recycling: Modelling the time and energy requirements for low consistency batch repulping

机译:能源和纸张回收:对低浓度批次重新制浆的时间和能源需求进行建模

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

An analytical model for low-consistency repulping linking pulp material properties, consistency, temperature, and rotor and vat geometry is provided, which allows for accurate prediction of the time and energy required for repulping in both a 0.25 m(3) laboratory-scale repulper and a 15 m(3) industrial-scale repulper. The model assumes that all deflaking work is done by the repulper rotor in the rotor-swept volume by turbulence generated by the rotor and that no deflaking occurs in the rest of the vat. Rotor shaft power is split linearly between the breakup of waste paper and dissipation by turbulence. Comparing the model predictions and experimental data for different pulp types, vat fill levels, and pulp suspension consistencies yields a correlation of R-2=0.99 between all experimental results and the model predictions given the condition of fully turbulent (Reynolds-independent) repulper rotor operation. The efficiency of the laboratory repulper is reduced from that predicted by the model for very low vat fill levels. This is due to a loss of effectiveness of the baffles at these low levels as indicated by solid body motion of the suspension and reduced rotor power number. This indicates that thorough mixing is a requirement to maximize repulping efficiency. Repulping time and energy savings can be accomplished by increasing the suspension consistency and the rotor-swept volume/vat volume ratio by either increasing rotor size or reducing vat volume, all while ensuring complete mixing and circulation in the vat.
机译:提供了一种用于将纸浆材料的特性,稠度,温度以及转子和大桶的几何形状联系在一起的低稠度再粉碎的分析模型,该模型可以准确预测0.25 m(3)实验室规模的再粉碎机的再粉碎所需的时间和能量和15 m(3)工业规模的碎浆机。该模型假设,所有的除鳞工作都是由再粉碎机转子在转子扫过的容积中由转子产生的湍流完成的,并且在其余的大桶中都不会发生除鳞。转子轴功率在废纸破碎和湍流消散之间线性分配。比较不同纸浆类型,大桶填充量和纸浆悬浮液稠度的模型预测和实验数据,在给定完全湍动(独立于雷诺兹)的制浆机转子条件下,所有实验结果与模型预测之间的关系为R-2 = 0.99操作。对于非常低的桶填充水平,实验室再粉碎机的效率比模型预测的效率降低。这是由于如悬架的固体运动和减小的转子功率值所指示的那样,在这些低水平处的挡板的有效性丧失。这表明彻底混合是最大化再制浆效率的要求。再制浆时间和节能可通过增加转子尺寸或减小缸容积来增加悬浮液的稠度和转子清扫容积/缸容积比来实现,同时还要确保缸内的完全混合和循环。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号