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A methodology for integrating the biomass balance approach into life cycle assessment with an application in the chemicals sector

机译:一种将生物质平衡方法与化学品行业的应用集成生物量平衡方法的方法论

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Driven by the need to reduce greenhouse gas emissions and dependence on fossil resources, the chemical and other industries are gradually starting to develop bio-based products. For the introduction of bio-feedstocks in existing production pathways in a cost-effectiveway, a simplified approach based on mass balance has been proposed. This concept is known as the biomass balance (BMB) approach and the resulting products are called BMB products. They do not necessarily contain biomass material but can contribute to sustainable sourcing and production of bio-based products in the supply chain without any performance loss in comparison to the same products derived from fossil resources. The aim of the study is to show how the BMB approach can be used in life cycle assessment (LCA) while following the requirements set out in the ISO 14040 and 14044 standards. To demonstrate that, the proposed BMB approach has been used to estimate life cycle environmental impacts of a polymer product, which can be produced using fossil or bio-feedstocks. For the polymer derived from bio-feedstocks, bio-naphtha and biogas are considered as replacement to naphtha and its impacts are compared with the fossil-based alternative. The paper demonstrates that the BMB approach provides a quick and pragmatic method for establishing the biomass content in chemical and related products while incentivising the industry to continue increasing the proportion of bio-based products in their product portfolio. It also shows that the environmental performance of BMB products is highly dependent on the particular bio-feedstock used, the way it is sourced and on key modelling assumptions, including the assumptions on biogenic carbon uptake in the bio-feedstocks. Crown Copyright (C) 2019 Published by Elsevier B.V. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
机译:由于减少温室气体排放和依赖化石资源的必要性,化学和其他行业逐渐开始开发生物的产品。为了在成本介绍道中引入现有生产途径中的生物原料,提出了一种基于质量平衡的简化方法。该概念被称为生物量平衡(BMB)方法,所得产品称为BMB产品。它们不一定含有生物质材料,但可以促进供应链中的生物基产品的可持续采购和生产,而没有任何性能损失,与来自化石资源的相同产品相比。该研究的目的是展示在ISO 14040和14044标准中规定的要求之后,如何在生命周期评估(LCA)中使用BMB方法。为了证明,所提出的BMB方法已用于估计聚合物产品的生命周期环境影响,这可以使用化石或生物原料生产。对于衍生自生物原料的聚合物,Bio-Qophtha和沼气被认为是对石脑油的替代品,并将其撞击与化石的替代方案进行比较。本文表明,BMB方法提供了一种用于在化学和相关产品中建立生物质含量的快速和务实的方法,同时激发工业,继续增加其产品组合中生物的产品比例。它还表明,BMB产品的环境性能高度依赖于所用的特定生物原料,其源于和关键建模假设,包括生物原料中生物碳吸收的假设。皇冠版权(c)2019由elestvier b.v发布。这是CC By-NC-ND许可下的一个开放式访问文章(http://creativecommons.org/licenses/by-nc-nd/4.0/)。

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