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制浆造纸工业综合能源系统优化改造规划以增强灵活性和碳减排能力
Optimal retrofit planning of pulp and paper industrial integrated energy system for enhancing flexibilities and carbon reduction capabilities
| 作者 | Suyang Zhou · Runfan Mou · Wei Gu · Zhi Wu · Aobo Guan · Wennan Zhuan |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 393 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 工商业光伏 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Improved carbon capture unit steam accumulator models for retrofitted PPIIES. |
语言:
中文摘要
摘要 制浆造纸工业(PPI)是一个传统的高能耗行业,具有较高的碳足迹。有前景的碳减排与储能技术已赋予PPI一定程度的环境可持续性。然而,在制浆造纸工业综合能源系统(PPIIES)的改造规划中考虑这些技术时,仍面临现有能源流与设备模型过于简化、以及缺乏对碳交易机制和生产过程调度考虑的挑战。为解决上述问题,本文提出了一种PPIIES的优化规划框架,该框架以详细的碳交易机制、碳减排设备和储热模型为特征,并深入挖掘了生产灵活性。具体而言,我们首先提出了适用于具有高中低蒸汽压力等级的改造型PPIIES的改进型碳捕集(CC)、蒸汽蓄能器(SA)和加压装置(PU)模型。随后,建立了嵌入欧盟排放配额(EUA)和核证减排量(CER)机制的PPIIES最优规划模型。最终,我们分析了在不同碳市场阶段下,典型技术组合与生产调度方案对PPIIES规划容量及经济性能的影响。结果表明,所提出的模型可使综合成本降低13%,碳排放减少36%。
English Abstract
Abstract Pulp and paper industry (PPI) is a traditional energy-intensive sector with a high carbon footprint. Promising carbon reduction and energy storage technologies have endowed PPI with a certain level of environmental sustainability . However, considering these technologies in the retrofit planning of pulp and paper industrial integrated energy system (PPIIES) is challenged by the currently oversimplified energy flow and equipment models as well as the lack of consideration of carbon trading mechanism and production process scheduling. To address this, this paper proposes an optimal planning framework for PPIIES characterized by detailed carbon trading, carbon reduction equipment, and heat storage model with in-depth exploration of production flexibilities. Specifically, we first propose the improved Carbon Capture (CC), Steam Accumulator (SA), and Pressurized Unit (PU) models for retrofitted PPIIES with high, medium, and low steam pressure levels. Then, a European Union Allowance (EUA) and Certified Emission Reduction (CER) embedded optimal planning model for PPIIES is established. Ultimately, we examine the planned capacity and economic performance of PPIIES across various carbon market periods with typical technology combinations and process scheduling options. Results demonstrate that the proposed model can reduce the integrated costs by 13 % and the carbon emission by 36 %.
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SunView 深度解读
该研究针对造纸工业综合能源系统改造,与阳光电源ST系列储能变流器及PowerTitan储能系统高度契合。论文提出的蒸汽蓄热器模型可启发我们开发热电联储解决方案,结合SG系列工商业光伏逆变器构建多能互补系统。碳交易机制模型可集成至iSolarCloud平台,为工业客户提供碳资产管理与能源优化调度服务。研究显示成本降低13%、碳排放减少36%,验证了储能+光伏在高耗能行业的经济性,为阳光电源拓展造纸、化工等工业园区综合能源服务提供理论支撑和市场机遇。