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Research on Low-Carbon Operation Mechanism and Environmental Value Transformation of Waste Feed Resource Utilization Equipment under a Dual-Carbon Background

ダブルカーボン背景における廃飼料資源化利用設備の低炭素運転メカニズムと環境価値変換に関する研究 (AI 翻訳)

R. Zhao, Yu Zhang, J. Cao, X. H. Pang, Xun Zhang, P. C. Jin

Advanced Electromagnetics📚 査読済 / ジャーナル2026-08-13#省エネOrigin: CN経営インパクト: コスト削減対象セクター: agriculture
DOI: 10.7716/aem.v15i3.4049
原典: https://doi.org/10.7716/aem.v15i3.4049

🤖 gxceed AI 要約

日本語

廃飼料資源化設備の炭素フロー追跡モデルを構築し、含水率に基づく負荷追従制御と多機エネルギー効率再配分戦略を提案。実証で電力消費20%削減、炭素強度19.4%削減、環境価値の現在価値が投資の6.5%に相当することを示した。炭素削減を炭素資産に変換するライフサイクル価値経路を構築。

English

This study develops a carbon flow traceability model for waste feed resource utilization equipment, proposing moisture-based load-following control and a multi-machine energy efficiency redistribution strategy. Experiments show 20% energy reduction, 19.4% carbon intensity reduction, and environmental value equivalent to 6.5% of investment. It constructs a life-cycle value conversion path to turn carbon reductions into carbon assets.

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

日本の農業・食品廃棄物処理分野では、Scope 3排出削減やカーボン・クレジット活用が課題。本手法は設備単位の炭素管理と環境価値の可視化に有用で、J-クレジット制度やサプライチェーン排出量算定への応用が期待される。

In the global GX context

This paper offers a practical framework for equipment-level carbon accounting and environmental value monetization, relevant to global Scope 3 reporting and carbon credit mechanisms. The load-following control and energy redistribution strategies are applicable to waste treatment and bioenergy sectors, supporting ISSB-aligned disclosure with quantitative carbon intensity data.

👥 読者別の含意

🔬研究者:Provides a replicable methodology for equipment-level carbon flow modeling and optimization in waste treatment.

🏢実務担当者:Offers actionable strategies to reduce energy costs and carbon intensity in waste processing operations, with potential carbon credit revenue.

🏛政策担当者:Demonstrates how equipment-level efficiency improvements can contribute to national carbon reduction targets and circular economy policies.

📄 Abstract(原文)

Under the dual-carbon situation, the carbon emission intensity of the equipment for recovering resources from waste feed is high and it is difficult to obtain environmental value. Firstly, an equipment-level carbon flow traceability model is established to find the carbon hotspots; then, a time-varying load-following control method based on moisture content is proposed to realize the on-demand heating; secondly, a multi-machine energy efficiency redistribution strategy under time-of-use electricity pricing and carbon factor constraint is established; finally, a life-cycle value conversion path is constructed to convert the carbon reduction contribution into carbon asset. The experimental results show that the power consumption per ton under follow-up control is reduced from 42.4 kW·h·t-1 to 33.9 kW·h·t-1, representing a 20.0% energy reduction, while the integrated operational carbon intensity (including heat and power) is reduced by 19. 4%; the peak power and daily cost are reduced by 81.0% and 31.0% respectively after the implementation of energy efficiency redistribution strategy; the present value of implied environmental value is 12,800 yuan, which accounts for 6.5% of the investment. The conclusion shows that carbon reduction can be accumulated into carbon asset by opening up the conversion path; and dual-carbon synergy of equipment is improved. The near-infrared moisture measurement and load-following control provide an optical sensing basis for low-carbon equipment operation.

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