When Biomass Electricity Demand Prompts Thinnings in Southern US Pine Plantations: A Forest Sector Greenhouse Gas Emissions Case Study
バイオマス電力需要が米国南部の松林の間伐を促す場合:森林部門の温室効果ガス排出に関するケーススタディ (AI 翻訳)
Thomas Buchholz, John Gunn, Benktesh D. Sharma
🤖 gxceed AI 要約
日本語
英国のバイオマス発電需要が米国南部のペレット産業を拡大させ、その炭素影響をLCAで評価。間伐を考慮した森林炭素貯留の変化を組み込み、GHG排出パリティが40年以上かかることを示した。
English
This study conducts a life cycle assessment of wood pellets from southern US pine plantations for UK electricity, incorporating thinning-induced forest carbon stock changes. It finds GHG emission parity exceeds 40 years, even with high sawmill residue shares, highlighting the long carbon payback of biomass electricity.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本ではバイオマス発電のFIT導入が進むが、輸入ペレットの炭素収支や持続可能性が課題。本研究成果は、日本が海外由来バイオマスを利用する際のLCA評価や調達基準の参考となる。
In the global GX context
This study provides critical evidence for global bioenergy carbon accounting, relevant to EU and UK sustainability criteria and the ongoing debate on biomass carbon debt. It informs ISSB-aligned disclosure of Scope 3 emissions from biomass supply chains.
👥 読者別の含意
🔬研究者:Provides a rigorous LCA framework integrating forest carbon dynamics, useful for bioenergy carbon accounting research.
🏢実務担当者:Highlights the long carbon payback of biomass, informing procurement decisions and sustainability reporting.
🏛政策担当者:Informs bioenergy sustainability criteria and carbon accounting rules under climate policy.
📄 Abstract(原文)
Increasing demand for woody biomass-derived electricity in the UK and elsewhere has resulted in a rapidly expanding wood pellet manufacturing industry in the southern US. Since this demand is driven by climate concerns and an objective to lower greenhouse gas (GHG) emissions from the electricity sector, it is crucial to understand the full carbon consequences of wood pellet sourcing, processing, and utilization. We performed a comparative carbon life cycle assessment (LCA) for pellets sourced from three mills in the southern US destined for electricity generation in the UK. The baseline assumptions included GHG emissions of the UK’s 2018 and 2025 target electricity grid mix and feedstock supplied primarily from non-industrial private forest (NIPF) pine plantations augmented with a fraction of sawmill residues. Based on regional expert input, we concluded that forest management practices on the NIPF pine plantations would include timely thinning harvest treatments in the presence of pellet demand. The LCA analysis included landscape carbon stock changes based on USDA Forest Service Forest Vegetation Simulator using current USDA Forest Service Forest Inventory and Analysis data as the starting condition of supply areas in Arkansas, Louisiana and Mississippi. We found that GHG emission parity (i.e., the time when accumulated carbon GHG emissions for the bioenergy scenario equal the baseline scenario) is more than 40 years for pellets produced at each individual pellet mill and for all three pellet mills combined when compared to either the UK’s 2018 electricity grid mix or the UK’s targeted electricity grid mix in 2025. The urgency to mitigate climate change with near-term actions as well as increasing uncertainty with longer-term simulations dictated a focus on the next four decades in the analysis. Even at 50% sawmill residues, GHG emission parity was not reached during the 40 years modeled. Results are most likely conservative since we assume a high share of sawmill residues (ranging from 20 to 50%) and did not include limited hardwood feedstocks as reported in the supply chain which are generally associated with delayed GHG emission parity because of lower growth rates.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.3389/ffgc.2021.642569first seen 2026-08-02 17:43:25
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