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バイオエネルギーおよびバイオ精製用途に向けた非在来リグノセルロース原料の価値化

Valorization of non-traditional lignocellulosic feedstocks for bioenergy and biorefinery applications (原題)

Nikolaos Papamatthaiakis

Dissertationes Forestales📚 査読済 / ジャーナル2026-01-01#再生可能エネルギーOrigin: Global経営インパクト: 調達リスク対象セクター: power
DOI: 10.14214/df.399
原典: http://dissertationesforestales.fi/pdf/26017
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🤖 gxceed AI 要約

日本語

本論文は、ブラジル産の草本多年生エネルギー作物、コーヒー副産物、在来広葉樹を対象に、バイオエネルギー・バイオ精製への適合性を比較評価した。ペレット化、水熱液化(HTL)、燃焼特性の分析を通じ、非在来原料の燃料品質と付加価値製品の可能性を示す。地域条件に依存する比較データの不足を補い、原料ポートフォリオの多様化に貢献する。

English

This thesis evaluates non-traditional lignocellulosic feedstocks from Brazil—herbaceous energy crops, coffee by-products, and native hardwoods—for bioenergy and biorefinery use. It assesses pellet production, hydrothermal liquefaction (HTL), and combustion properties, showing improved energy content and value-added chemical potential. The work addresses scarce region-specific comparative data and supports feedstock portfolio diversification.

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依存や燃料調達リスクが課題であり、非在来原料の多様化は調達安定化やコスト低減に示唆を与える。ただし国内政策・開示制度との直接的な接続は薄い。

In the global GX context

Globally, this contributes to bioenergy feedstock diversification and circular bioeconomy discussions, relevant to corporate renewable procurement and decarbonization pathways. It offers empirical data for regions with similar tropical/subtropical biomass resources, though it does not directly engage TCFD/ISSB disclosure frameworks.

👥 読者別の含意

🔬研究者:非在来バイオマス原料の変換経路と燃料特性に関する比較データを提供する。

🏢実務担当者:バイオマス調達の多様化や副産物活用によるコスト・調達リスク低減の検討材料になる。

🏛政策担当者:バイオエネルギー原料の地域多様化と認証制度設計に関する基礎的知見を提供する。

📄 Abstract(原文)

​Biomass is considered an abundant renewable resource for energy production through established routes such as combustion, biochemical conversion, and industrial energy systems. These applications could benefit from diversified feedstocks and provide a clear understanding of how different conversion processes influence fuel quality and the potential of side-stream products. Emerging technologies and developing markets may enhance the effective valorization of newly introduced resources, maximize their uses and profitability, and reduce the environmental footprint. At present, comparative data on non-traditional lignocellulosic feedstocks under region-specific conditions are scarce, and such data could further support a better-established acceptance of bioenergy. This thesis evaluates herbaceous perennial energy crops, coffee by-products, and native hardwood species from Brazil, with emphasis on their suitability for bioenergy and biorefinery applications. In Paper I, giant knotweed (Fallopia sachalinensis var. Igniscum’) and Virginia mallow (Sida hermaphrodita) were assessed for their capacity for pellet production under Nordic conditions, combining field data and physical and chemical analyses. The results for bulk density, moisture, energy content, and elemental composition were in line with certification schemes, but mechanical durability and ash require further investigation. Paper II examined how hydrothermal liquefaction (HTL) could benefit coffee by-products by improving combustion properties and producing chemicals with potential and value-added applications. The hydrochars showed higher energy content than the raw materials, containing chemically complex oil fractions rich in fatty acids and alkaloids. Paper III evaluates native hardwood species from the Brazilian Cerrado - Caatinga transition zone, without prior evidence existing about their industrial energy applications. Forest inventory distribution data, dendrometry characteristics, and combustion-relevant fuel property measurements were used to identify species with favorable tree capacity and combustion properties. The thesis provides comparative information on non-traditional biomass resources and conversion routes, suggesting new additions in feedstock portfolios for bioenergy and biorefinery development.

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