Carbon emissions analysis of the pulp molding industry: a comparison of dry-press and wet-press production processes

IF 0.9 4区 农林科学 Q3 MATERIALS SCIENCE, PAPER & WOOD
Zhisheng Lv, Shaohong Jiang, Lingjun Wei, Hao Sun, Yuhui Liu, Jieyu Cui, Wanlu Zhang
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Abstract

Abstract An initial carbon emission calculation formula for the pulp molding industry was first proposed in accordance with the calculation guidelines provided by the Intergovernmental Panel on Climate Change (IPCC). The formula was primarily developed by utilizing the greenhouse gas accounting methods used in the pulp and paper industry and the life cycle assessment (LCA) theory. Carbon dioxide emissions coming into being during the production processes of dry-press and wet-press pulp molding were calculated individually, alongside the carbon emission factors throughout the lifecycle of the products. This study also delivers a comparative analysis of pulp molding products and similar cushion packaging materials. Moreover, the findings reveal that during the production phase, particularly in the formative stages of pulp molding, substantial carbon dioxide emissions would be produced, with dry-press pulp molding products exhibiting markedly higher carbon emission factors than their wet-press counterparts. The primary objective of achieving low-carbon transformation for the pulp molding industry was to reduce the carbon emissions caused by the forming process, primarily by improving the forming process and enhancing energy efficiency or utilizing clean energy.
纸浆成型工业的碳排放分析:干压和湿压生产过程的比较
摘要根据政府间气候变化专门委员会(IPCC)提供的计算指南,首次提出纸浆成型行业的初始碳排放计算公式。该公式主要是利用纸浆和造纸工业中使用的温室气体核算方法和生命周期评估(LCA)理论开发的。分别计算干压和湿压纸浆成型生产过程中产生的二氧化碳排放量,以及产品整个生命周期的碳排放系数。本研究也提供纸浆成型产品和类似的缓冲包装材料的比较分析。此外,研究结果表明,在生产阶段,特别是在纸浆成型的形成阶段,将产生大量的二氧化碳排放,其中干压纸浆成型产品的碳排放系数明显高于湿压纸浆成型产品。纸浆成型行业实现低碳转型的首要目标是减少成型过程中产生的碳排放,主要是通过改进成型工艺,提高能源效率或利用清洁能源。
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来源期刊
Nordic Pulp & Paper Research Journal
Nordic Pulp & Paper Research Journal 工程技术-材料科学:纸与木材
CiteScore
2.50
自引率
16.70%
发文量
62
审稿时长
1 months
期刊介绍: Nordic Pulp & Paper Research Journal (NPPRJ) is a peer-reviewed, international scientific journal covering to-date science and technology research in the areas of wood-based biomass: Pulp and paper: products and processes Wood constituents: characterization and nanotechnologies Bio-refining, recovery and energy issues Utilization of side-streams from pulping processes Novel fibre-based, sustainable and smart materials. The editors and the publisher are committed to high quality standards and rapid handling of the peer review and publication processes. Topics Cutting-edge topics such as, but not limited to, the following: Biorefining, energy issues Wood fibre characterization and nanotechnology Side-streams and new products from wood pulping processes Mechanical pulping Chemical pulping, recovery and bleaching Paper technology Paper chemistry and physics Coating Paper-ink-interactions Recycling Environmental issues.
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