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Lifecycle greenhouse gas emissions of thermal energy storage implemented in a paper mill for wind energy utilization

机译:Lifecycle温室气体排放热能储存在造纸厂中,用于风能利用

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摘要

Power generation by variable renewable energy (VRE) is expected to expand for decarbonization, although it is difficult to ensure stabilization of the energy demand due to fluctuations in the power output from VRE. To accelerate VRE implementation, wind-powered thermal energy systems (WTth-ES), which can provide dispatchable power using wind-thermal energy converter (WECth) and thermal energy storage (TES), have been proposed. In this study, we are tackling the installation of VRE, i.e., wind energy, by TES with WEC_(th) compared with wind turbine (WTP) in paper mills to demonstrate the applicability of TES in an industrial sector. Conventional and alternative energy systems in paper mills with TES were mathematically modeled and simulated to analyze the transmittable power output and the greenhouse gas (GHG) emissions by life cycle assessment. With the installation of TES and wind energy, transmittable power could be increased with GHG emissions reduction. However, their excess installation or unbalanced combination resulted in an increase in GHG emissions and a decrease in transmittable power. By comparing the cases, the combination of paper mill, TES, and WECth could convert thermal energy efficiently and mitigate fossil fuel consumption for multiple production of paper and power from the paper mill.
机译:可变可再生能源(VRE)的发电预计将扩大脱碳,尽管难以确保由于VRE的电力输出波动而稳定能量需求。为了加速VRE实现,已经提出了可以使用风热能量转换器(WECTH)和热能存储(TES)提供可调度功率的风力热能系统(WTTH-ES)。在这项研究中,与造纸厂中的风力涡轮机(WTP)相比,我们在与WEC_(TH)相比,通过与WEC_(TH)的TES进行解决,以证明TES在工业部门的适用性。使用TES的纸厂铣刀中的常规和替代能源系统在数学上建模和模拟,以通过生命周期评估分析可传输功率输出和温室气体(GHG)排放。随着TES和风能的安装,可以通过GHG排放来增加可传输功率。然而,它们的过度安装或不平衡组合导致温室气体排放量增加和可传输功率的降低。通过比较案例,造纸厂,TES和WECT的组合可以有效地转换热能,并减轻化石燃料消耗,以便从造纸厂生产纸张和电力。

著录项

  • 来源
    《Energy》 |2020年第15期|118056.1-118056.15|共15页
  • 作者单位

    Department of Chemical System Engineering The University of Tokyo 7-3-1 Hongo Bunkyo-ku Tokyo 113-8656 Japan;

    Presidential Endowed Chair for 'Platinum Society' Organization for Interdisciplinary Research Project The University of Tokyo 7-3-1 Hongo Bunkyo-ku Tokyo 113-8656 Japan;

    Department of Chemical System Engineering The University of Tokyo 7-3-1 Hongo Bunkyo-ku Tokyo 113-8656 Japan Presidential Endowed Chair for 'Platinum Society' Organization for Interdisciplinary Research Project The University of Tokyo 7-3-1 Hongo Bunkyo-ku Tokyo 113-8656 Japan Institute for Future Initiatives The University of Tokyo 7-3-1 Hongo Bunkyo-ku Tokyo 113-8654 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Life cycle greenhouse gas emission; Dispatchable power source; Paper production;

    机译:生命周期温室气体排放;调度电源;纸生产;

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