エネルギー浪費削減のためのシステム思考
Systems thinking to reduce energy waste (原題)
Nick Eyre, Jan Rosenow
🤖 gxceed AI 要約
日本語
エネルギー浪費は供給チェーン全体で相互依存的に発生するため、個別製品・工程ではなくシステム全体での分析が必要だと論じる。再生可能エネルギーによる大規模電化は発電・運輸・化石燃料処理での浪費を大幅に削減し、ヒートポンプによる環境エネルギー利用で効率が100%超にもなり得る。電化の最大化により、現行のエネルギーサービス水準を維持しつつ世界の一次エネルギー需要を半減できると示す。
English
Energy waste occurs interdependently across the whole supply chain, requiring system-level rather than point-of-use analysis. Large-scale electrification with renewables cuts waste in power generation, transport and fuel processing, while heat pumps raise efficiencies above 100%. Maximizing end-use electrification could halve global primary energy demand at current service levels, demanding a rethink of energy and policy analysis.
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
日本のGX政策(第7次エネルギー基本計画、GX推進法)は電化と省エネを柱とするが、本稿は電化を需要側の効率改善要因として再定義し、電力税制やトップランナー制度の対象見直しを示唆する。SSBJ開示でもエネルギー効率・電化投資の説明力向上に資する。
In the global GX context
Amid ISSB/CSRD-driven disclosure of transition plans, this paper reframes electrification as a demand-side efficiency lever, challenging supply-side-only framings. It informs policy design (electricity taxation, MEPS scope) and corporate transition-plan narratives on energy efficiency and electrification.
👥 読者別の含意
🔬研究者:Provides a systems-level framework linking electrification and efficiency across the energy chain, with implications for integrated assessment modeling.
🏢実務担当者:Supports prioritizing electrification of heating, vehicles and industrial processes in corporate energy and decarbonization strategies.
🏛政策担当者:Suggests reorienting electricity taxation and minimum energy performance standards toward large new electric loads to unlock efficiency gains.
📄 Abstract(原文)
Extended abstract 2-003-26 Energy efficiency is the avoidance of ‘energy waste’. Historical thinking about reducing energy waste has been focussed on individual products, processes and practices at the point of final energy use. However, energy is wasted at all stages of the chain to supply energy services, from resource acquisition through to final use. The energy waste at different stages is inter-dependent, and therefore a whole system analysis is required. This insight is critical when thinking about fundamental change in energy systems, in particular in the transition to zero-carbon system. Electrification is critical to the elimination of direct use of fossil fuels. The main changes in the energy system after large-scale electrification with renewables include big reductions in energy waste in power generation, transportation and fossil fuel processing. Waste reductions in buildings are smaller, but there is a major increase in the use of ambient energy (via heat pumps), which can be thought of as the opposite of waste, allowing efficiencies to rise (perhaps counterintuitively) to above 100%. Maximising electrification of end use therefore has efficiency effects across the energy chain. We show that it can halve global primary energy demand to provide the existing level of energy services. Electrification is therefore critical to future efficiency goals, as it will be the main ‘provider’ of energy efficiency improvement over the next two decades. This requires changes to both the way energy supply analysts typically think about electrification – as a supply side change – but also to its conceptualisation by energy demand analysts as something additional to energy efficiency. Research and policy have not yet adequately adapted to the changed reality. It has some important implications. For example, taxes on electricity tend to deter electrification and therefore energy efficiency, improving the energy efficiency of fossil fuel use is at best a short term option, perhaps even in some cases counterproductive, minimum energy performance standards should switch focus from lights and appliances to the new large electricity loads – heating, vehicles and industrial processes. Read full abstract. Download presentation.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.66506/essp.75first seen 2026-09-17 04:41:15
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