向气候中和过渡的行业生命周期评估的时间差方法综述

IF 5.4 3区 环境科学与生态学 Q2 ENGINEERING, ENVIRONMENTAL
Ladislaus Lang-Quantzendorff, Martin Beermann
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引用次数: 0

摘要

向气候中和的行业转型需要对现有生产过程进行多方面的调整,其中包括使用可再生能源载体的新技术。设计用于评价静态过程的既定生命周期评价方法(LCA)在应用于变化的系统时达到了极限。我们对用于评估向气候中性过渡的转变过程的时变LCA方法进行了系统的文献综述。仔细研究,可以发现三种主要类型的动力学:过渡动力学、过程动力学和动态影响评估。过渡动态表示生产的逐渐变化。过程动力学考虑了过程的持续时间和它们之间的时间依赖性。动态影响评估表明生物圈如何对动态排放作出反应。所回顾的文献提供了几个前瞻性LCA处理场景集成或新兴技术的事前观察的例子。这些通常只是暂时地区分转换。相比之下,一些动态LCA的方法论论文涵盖了所有三种类型的动态。这些指标包括过程之间的绝对变化和相对时间依赖性,以及温室气体动态影响评估的指标。总之,文献使用术语动态和前瞻性LCA重叠的研究领域,这两者都是高度相关的评估转换系统。然而,这些方法大多单独应用于与明确的脱碳目标无关的用例中。为了协调这两个概念,我们在综合动态和前瞻性LCA中确定了有希望的构建模块,以评估向气候中性生产的过渡路径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Time-differentiating methods for life cycle assessment of the industry transition toward climate neutrality: A review

Time-differentiating methods for life cycle assessment of the industry transition toward climate neutrality: A review

The industry transition toward climate neutrality requires manifold adaptations of present production processes, which include novel technologies using renewable energy carriers. The established method of life cycle assessment (LCA), designed to evaluate static processes, reaches its limits when applied to changing systems. We have conducted a systematic literature review on time-differentiating LCA methods for assessing transforming processes in their transition toward climate neutrality. On closer examination, three major types of dynamics emerge: transition dynamics, process dynamics, and dynamic impact assessment. Transition dynamics represent the gradual modification of the production. Process dynamics take into account the duration of processes and their temporal dependency on each other. Dynamic impact assessment demonstrates how the biosphere reacts to dynamic emissions. The reviewed literature delivered several examples of prospective LCA dealing with scenario integration or ex ante observations of emerging technologies. These typically differentiate only the transition temporally. By contrast, some methodology papers for dynamic LCA cover all three types of dynamics. Those comprise absolute changes and relative time dependence between processes, as well as metrics for the dynamic impact assessment of greenhouse gases. In conclusion, literature uses the terms dynamic and prospective LCA for overlapping research areas, both of which are highly relevant for evaluating a transforming system. However, methods are mostly applied separately in use cases also not related to an explicit decarbonization target. Aiming for harmonization of both concepts, we identified promising building blocks in a combined dynamic and prospective LCA to assess transition paths toward climate-neutral production.

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来源期刊
Journal of Industrial Ecology
Journal of Industrial Ecology 环境科学-环境科学
CiteScore
11.60
自引率
8.50%
发文量
117
审稿时长
12-24 weeks
期刊介绍: The Journal of Industrial Ecology addresses a series of related topics: material and energy flows studies (''industrial metabolism'') technological change dematerialization and decarbonization life cycle planning, design and assessment design for the environment extended producer responsibility (''product stewardship'') eco-industrial parks (''industrial symbiosis'') product-oriented environmental policy eco-efficiency Journal of Industrial Ecology is open to and encourages submissions that are interdisciplinary in approach. In addition to more formal academic papers, the journal seeks to provide a forum for continuing exchange of information and opinions through contributions from scholars, environmental managers, policymakers, advocates and others involved in environmental science, management and policy.
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