バイオエネルギーの原料としての農業廃棄物
Agricultural Waste as a Feedstock for Bioenergy (原題)
Abdullah Al Ragib, Mehedi Hasan, Ronak Shahbandinejad, Janusz Kozinski, Sudip K. Rakshit, Kang Kang
🤖 gxceed AI 要約
日本語
農業廃棄物(作物残渣、加工副産物、家畜バイオマス、食品廃棄物)をバイオエネルギー原料として評価した書籍章。バイオガス、固体バイオ燃料、バイオ水素、バイオジェット燃料等の用途と、GHG削減・土壌健全性・循環経済への寄与を論じる。季節性や物流、前処理、競合用途といった課題と、統合バイオ精製・デジタル化スマートシステムの展望を示す。
English
A book chapter assessing agricultural waste—crop residues, processing by-products, livestock biomass, food waste—as bioenergy feedstock. It reviews availability, physicochemical traits, and energy potential, covering biogas, solid biofuels, biohydrogen, bio-jet fuel, and biocarbon, alongside GHG mitigation and circular-economy benefits. Challenges (seasonality, logistics, pretreatment, competing uses) and advances in integrated biorefineries and digitalized systems are discussed.
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
日本では農業系バイオマスの利活用は地域循環共生圏や再エネ政策と連動するが、本稿は開示・会計枠組みには直接触れず、SSBJや有報対応への示唆は限定的。ただしScope 3排出削減やサプライチェーン脱炭素に関心を持つ企業にとって、農業由来原料の調達・活用の基礎知識を提供する。
In the global GX context
While not directly addressing TCFD/ISSB disclosure, this chapter informs the bioeconomy and circular-economy dimensions of corporate decarbonization strategies, relevant to Scope 3 reductions and sustainable feedstock sourcing. It adds to global scholarship on agricultural residue valorization as a transition pathway, though it lacks disclosure-infrastructure specificity.
👥 読者別の含意
🔬研究者:農業廃棄物のエネルギー利用可能性と技術・政策課題を俯瞰する基礎文献として有用。
🏢実務担当者:バイオマス調達やScope 3削減を検討する企業が、原料の種類・制約・活用オプションを把握するのに役立つ。
🏛政策担当者:農業廃棄物のエネルギー転換を促す政策設計や循環経済施策の参考になる。
📄 Abstract(原文)
The increasing global demand for renewable resources and clean energy highlights the urgent need to transition from fossil fuels toward sustainable alternatives. Agricultural waste, generated in vast quantities worldwide as crop residues, processing by-products, livestock biomass, and food waste, represents an abundant and underutilized renewable feedstock for bioenergy production. This chapter explores the availability, physicochemical characteristics, and energy potential of agricultural residues, discussing their potential role in mitigating greenhouse gas emissions, enhancing soil health, and reducing pollution through circular economy pathways. Current applications, including biogas, solid biofuels, biohydrogen, bio-jet fuels, and advanced biocarbon materials, demonstrate the versatility of these resources, while policy incentives, regulatory frameworks, and sustainability standards highlight the enabling role of governance. Key challenges remain, particularly regarding seasonal availability, logistics, pretreatment, and competing uses; however, advancements in integrated biorefineries, co-valorization strategies, and digitalized smart systems are paving the way forward. Collectively, this chapter addresses the role of agricultural waste as both a challenge and an opportunity, with overall focus on its potential as an essential contributor to sustainable energy transitions and a cornerstone of future low-carbon economies.
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.1002/9783527855209.ch1first seen 2026-09-10 04:40:45
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