Journal of Industrial and Engineering Chemistry, Год журнала: 2025, Номер unknown
Опубликована: Май 1, 2025
Язык: Английский
Journal of Industrial and Engineering Chemistry, Год журнала: 2025, Номер unknown
Опубликована: Май 1, 2025
Язык: Английский
Fermentation, Год журнала: 2025, Номер 11(2), С. 62 - 62
Опубликована: Фев. 1, 2025
Renewable energy sources, such as biofuels, represent promising alternatives to reduce dependence on fossil fuels and mitigate climate change. Their production through enzymatic hydrolysis has gained relevance by converting agro-industrial waste into fermentable sugars residual oils, which are essential for the generation of bioethanol biodiesel. The fungus Aspergillus stands out a key source enzymes, including cellulases, xylanases, amylases, lipases, crucial breakdown biomass oils produce fatty acid methyl esters (FAME). This review examines current state these technologies, highlighting significance in conversion energy-rich materials. While process holds significant potential, it faces challenges high costs associated with final processing stages. Agro-industrial is proposed an resource support circular economy, thereby eliminating reliance non-renewable resources processes. Furthermore, advanced pretreatment technologies—including biological, physical, physicochemical methods, well use ionic liquids—are explored enhance efficiency. Innovative genetic engineering strains enzyme encapsulation, promise optimize sustainable biofuel addressing advancing this technology towards large-scale implementation.
Язык: Английский
Процитировано
3Food Bioscience, Год журнала: 2025, Номер unknown, С. 106111 - 106111
Опубликована: Фев. 1, 2025
Язык: Английский
Процитировано
1Опубликована: Янв. 1, 2025
Язык: Английский
Процитировано
0Catalysis Surveys from Asia, Год журнала: 2025, Номер unknown
Опубликована: Апрель 29, 2025
Язык: Английский
Процитировано
0Materials, Год журнала: 2025, Номер 18(11), С. 2476 - 2476
Опубликована: Май 25, 2025
This study aims to delve into the application potential of immobilized lipases in catalytic synthesis isoamyl acetate. Through a comparative analysis various immobilization methods, including physical adsorption, encapsulation, covalent binding, and crosslinking, along with utilization nanomaterials, such as magnetic nanoparticles, mesoporous silica SBA-15, organic frameworks (COFs) carriers, systematically evaluates their enhancing effects on lipase performance. Additionally, solvent engineering strategies, encompassing introduction solvents, supercritical fluids, ionic liquids, deep eutectic are employed intensify enzymatic process. These approaches effectively improve mass transfer efficiency, activate enzyme molecules, safeguard structural stability, thereby significantly elevating efficiency yield Consequently, this research provides solid scientific rationale technical support for industrial production flavor ester compounds.
Язык: Английский
Процитировано
0Energy Conversion and Management, Год журнала: 2025, Номер 340, С. 119989 - 119989
Опубликована: Май 27, 2025
Язык: Английский
Процитировано
0Journal of Industrial and Engineering Chemistry, Год журнала: 2025, Номер unknown
Опубликована: Май 1, 2025
Язык: Английский
Процитировано
0