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现行 ISO/TS 19870:2023
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Hydrogen technologies — Methodology for determining the greenhouse gas emissions associated with the production, conditioning and transport of hydrogen to consumption gate 氢技术——确定与氢气生产、调节和运输至消费门相关的温室气体排放量的方法
发布日期: 2023-11-30
ISO 14044要求明确定义LCA的目标和范围,并与预期应用保持一致。由于LCA的迭代性质,在研究过程中可能需要细化LCA范围。 本文件规定了可用于根据ISO 14067确定产品碳足迹(CFP)或氢产品部分CFP的方法。方法的目标和范围对应于下面给出的方法a)或b),ISO 14040:2006,A.2给出了生命周期评价的两种可能方法。 A)?一种将基本流程和潜在环境影响分配给特定产品系统的方法,通常作为对产品历史的描述。 b)?研究替代产品系统之间可能(未来)变化的环境后果的方法。方法a)和b)分别被称为归因和结果,补充信息可在ILCD手册中获得。[1] 从各种一次能源生产氢气有许多途径。本文件描述了应用于几种感兴趣的制氢途径的要求和评估方法:电解、蒸汽甲烷重整(具有碳捕获和储存)、联产和煤气化(具有碳捕获和储存)、自热重整(具有碳捕获和储存)、工业应用中作为副产品的氢气以及来自生物质废物作为原料的氢气。 本文件还考虑了由于将氢调节或转化为不同物理形式和化学载体而产生的温室气体排放:—?氢液化; —?氨作为氢载体的生产、运输和裂解; —?液态有机氢载体的氢化、运输和脱氢。 本文件考虑了由于氢和/或氢载体运输到消费门而产生的GHG排放。 本文件的未来修订可能会考虑额外的氢气生产、调节、转化和运输方法。 本文件适用于并包括供应链上的每一次交付,直到最终交付到消费门(见引言中的图2)。 本文件还以附件A至K的形式提供了与评估原则、系统边界和预期报告指标相关的附加信息,可通过ISO在线门户网站(https://standards.iso.org/iso/ts/19870/ed-1/en)访问。

ISO 14044 requires the goal and scope of an LCA to be clearly defined and be consistent with the intended application. Due to the iterative nature of LCA, it is possible that the LCA scope needs to be refined during the study.

This document specifies methodologies that can be applied to determine the carbon footprint of a product (CFP) or partial CFP of a hydrogen product in line with ISO 14067. The goals and scopes of the methodologies correspond to either approach a) or b), given below, that ISO 14040:2006, A.2 gives as two possible approaches to LCA.

a)An approach that assigns elementary flows and potential environmental impacts to a specific product system, typically as an account of the history of the product.

b)An approach that studies the environmental consequences of possible (future) changes between alternative product systems.

Approaches a) and b) have become known as attributional and consequential, respectively, with complementary information accessible in the ILCD handbook.[1]

There are numerous pathways to produce hydrogen from various primary energy sources. This document describes the requirements and evaluation methods applied to several hydrogen production pathways of interest: electrolysis, steam methane reforming (with carbon capture and storage), co-production and coal gasification (with carbon capture and storage), auto-thermal reforming (with carbon capture and storage), hydrogen as a co-product in industrial applications and hydrogen from biomass waste as feedstock.

This document also considers the GHG emissions due to the conditioning or conversion of hydrogen into different physical forms and chemical carriers:

hydrogen liquefaction;

production, transport and cracking of ammonia as a hydrogen carrier;

hydrogenation, transport and dehydrogenation of liquid organic hydrogen carriers (LOHCs).

This document considers the GHG emissions due to hydrogen and/or hydrogen carriers’ transport up to the consumption gate.

It is possible that future revisions of this document will consider additional hydrogen production, conditioning, conversion and transport methods.

This document applies to and includes every delivery along the supply chain up to the final delivery to the consumption gate (see Figure 2 in the Introduction).

This document also provides additional information related to evaluation principles, system boundaries and expected reported metrics in the form of Annexes A to K, that are accessible via the online ISO portal (https://standards.iso.org/iso/ts/19870/ed-1/en).

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发布单位或类别: 国际组织-国际标准化组织
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归口单位: ISO/TC 197/SC 1
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