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一种提升高耗能行业CO2吸附生命周期评估可比性与可靠性的方法论框架
A suggested methodological framework to enhance comparability and reliability for life cycle assessment of CO2 adsorption in energy-intensive industries
| 作者 | Yipeng Yao · Marie-Eve Dupre · Guy De Weirel |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 397 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 可靠性分析 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Systematic review of LCA methodologies for CCS adsorption technology in energy-intensive industries. |
语言:
中文摘要
摘要 在众多二氧化碳捕集技术中,吸附法捕集作为一种新兴且具有前景的技术,表现出操作灵活性高、污染物排放低以及能耗低的特点,预计将在碳捕集与封存系统中发挥关键作用。尽管生命周期评估(LCA)已成为评估该技术环境影响的共识性方法,但LCA在应用中的方法学异质性限制了研究成果之间的可比性和可信度。本研究系统回顾了2006年至2025年间发表的31项LCA研究,从目标与范围界定、清单分析、影响评估和结果解释四个方面考察其方法学上的共性与差异。以当前LCA方法学标准与指南为基准,分析了CO2吸附技术LCA方法学中存在的挑战与改进空间,并据此提出了一套方法论框架。研究发现,现有LCA方法在某些方面存在共性(如功能单位),但在其他方面仍存在显著差异(如系统边界、生命周期阶段及工艺阶段的对齐方式)。此外,与现有的标准和指南相比,当前的方法学应用仍存在明显不足,例如缺乏数据质量评价以及未对显著性水平进行分类。为此,本文提出了一个基于所需额外投入程度的三级递进式改进框架——即轻微努力、中等努力和重大努力三个层级。该框架旨在系统性地提升LCA研究的可比性和可靠性。本研究有助于建立统一的LCA应用规范,为未来CO2吸附技术的环境评估提供方法学指导。
English Abstract
Abstract Among the various CO 2 capture technologies, adsorption capture appears to be an emerging and promising technology characterised by operational flexibility, low pollutant emissions , and low energy consumption. It is expected to be crucial in carbon capture and storage systems . Whilst Life Cycle Assessment (LCA) has emerged as the consensus methodology for evaluating the environmental impacts of this technology, methodological heterogeneity in LCA applications has limited the comparability and credibility of research findings. This study systematically reviews 31 LCA studies published between 2006 and 2025, examining methodological commonalities and differences across four aspects: goal and scope definition, inventory analysis, impact assessment and interpretation. Current LCA methodological standards and guidelines were used as benchmarks to analyse the challenges and opportunities in CO 2 adsorption LCA methodology and to propose a methodological framework. The findings reveal that commonalities (e.g., functional unit) and differences (e.g., system boundary, life cycle stages and process stage alignments) exist among LCA methodologies. Moreover, compared to existing standards and guidelines, current methodological applications demonstrate notable gaps (e.g., the lack of data quality evaluation and the classification of significance levels). Consequently, we propose a hierarchical improvement framework comprising three levels based on required additional effort levels— minor, moderate, and major efforts. This framework aims to systematically enhance the comparability and reliability of LCA studies. This work contributes to establishing common LCA application protocols and provides methodological guidance for future environmental assessments of CO 2 adsorption technologies.
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SunView 深度解读
该CO2吸附全生命周期评估方法框架对阳光电源储能系统(ST系列PCS、PowerTitan)及光伏逆变器(SG系列)的碳足迹评估具有重要指导意义。研究提出的分层改进框架可应用于优化我司产品从制造、运输到运维全周期的环境影响评估体系,特别是在系统边界定义、数据质量评价方面提供标准化方法。结合iSolarCloud平台的运维数据,可建立更可靠的储能系统碳减排量化模型,增强产品环保竞争力,支撑双碳目标下的绿色能源解决方案认证与市场推广。