Biomass Briquetting Technology for Sustainable Energy Solutions: Innovations in Forest Biomass Utilization DOI Creative Commons
Kamil Roman, Emilia Grzegorzewska

Energies, Год журнала: 2024, Номер 17(24), С. 6392 - 6392

Опубликована: Дек. 19, 2024

This article aims to provide a comprehensive review of the use logging residues in manufacturing briquettes, and demonstrate their potential as renewable energy source. Technical aspects briquetting are examined, including wood properties, particle size, moisture content, process temperature. Forest residues, such branches treetops, have high with calorific values reaching up 20 MJ∙kg−1 after briquetting. Densifying these increases density (achieving 1120 kg∙m−3) reduces waste greenhouse gas emissions. Briquetting processes were analyzed economically environmentally, studies showing that production costs can be reduced by 25% when using locally sourced residues. recommends optimizing improve briquette durability quality. Future research directions focused on developing cost-effective technologies tailored for small- medium-sized businesses identified study. Rural disadvantaged regions could benefit from advancements paper advocates improved collaboration international organizations standardize quality, promoting market acceptance trade. Technology has advance systems achieve global climate goals.

Язык: Английский

Review of Lignocellulosic Biomass Pretreatment Using Physical, Thermal and Chemical Methods for Higher Yields in Bioethanol Production DOI Open Access

Alicja Woźniak,

Ksawery Kuligowski, Lesław Świerczek

и другие.

Sustainability, Год журнала: 2025, Номер 17(1), С. 287 - 287

Опубликована: Янв. 2, 2025

The increasing demand for renewable energy sources has led to significant interest in second-generation biofuels derived from lignocellulosic biomass and waste materials. This review underscores the pivotal role of valorization meeting global needs, mitigating greenhouse gas emissions, fostering a circular bioeconomy. Key pretreatment methods—including steam explosion, pressure treatment, chemical pretreatment—are analyzed their ability enhance accessibility cellulose hemicellulose enzymatic saccharification. Advances cellulolytic enzyme development fermentation strategies, such as use genetically engineered microorganisms capable fermenting both hexoses pentoses, are discussed detail. Furthermore, potential biorefinery systems is explored, highlighting capacity integrate into biofuel production alongside high-value bioproducts. Case studies recent trends bioethanol biogas examined, providing insights current state research its industrial applications. While hold considerable promise sustainable emissions reduction, challenges related cost optimization, process scalability, technological barriers must be addressed enable large-scale implementation. serves comprehensive foundation bridging gap between laboratory application, emphasizing need continued innovation interdisciplinary collaboration technologies.

Язык: Английский

Процитировано

2

Understanding Biomass Valorization through Electrocatalysis: Transformation of Glycerol and Furan Derivatives DOI Creative Commons
Ana Gutiérrez‐Blanco, Carmen Mejuto

The Journal of Physical Chemistry Letters, Год журнала: 2025, Номер unknown, С. 2785 - 2792

Опубликована: Март 7, 2025

Electrochemical conversion of underutilized biomass provides a green approach for their valorization into high-value-added products, which constitutes mild, safe, and procedure. Moreover, the use an electrochemical pathway in contrast to classical routes (thermo or biochemical) offers several advantages terms product selectivity, safety, catalyst stability, reusability. The highly variable number tunable conditions reaction broad space improvement until optimum ones are achieved, including substrates, curent voltage, electrodes, electrolytes, cell set-up. present Perspective aims provide informative overview waste furan derivatives byproducts biofuel refineries (glycerol) by reviewing essential aspects this field. We cover fundamentals organic transformations, emphasizing different parameters consider during these procedures. highlight potential methods suggest new directions more sustainable research.

Язык: Английский

Процитировано

0

Furfural production: A review on reaction mechanism and conventional production process DOI Creative Commons
Yanke Wang, Mingkai Li,

Zeping Wang

и другие.

Industrial Crops and Products, Год журнала: 2025, Номер 230, С. 121103 - 121103

Опубликована: Май 1, 2025

Язык: Английский

Процитировано

0

Formic acid as a catalyst in furfural production by simultaneous extraction processes via steam stripping and biphasic systems. DOI

Kritsana Namhaed,

Thibaut Triquet, Patrick Cognet

и другие.

Process Safety and Environmental Protection, Год журнала: 2025, Номер unknown

Опубликована: Апрель 1, 2025

Язык: Английский

Процитировано

0

Biomass Briquetting Technology for Sustainable Energy Solutions: Innovations in Forest Biomass Utilization DOI Creative Commons
Kamil Roman, Emilia Grzegorzewska

Energies, Год журнала: 2024, Номер 17(24), С. 6392 - 6392

Опубликована: Дек. 19, 2024

This article aims to provide a comprehensive review of the use logging residues in manufacturing briquettes, and demonstrate their potential as renewable energy source. Technical aspects briquetting are examined, including wood properties, particle size, moisture content, process temperature. Forest residues, such branches treetops, have high with calorific values reaching up 20 MJ∙kg−1 after briquetting. Densifying these increases density (achieving 1120 kg∙m−3) reduces waste greenhouse gas emissions. Briquetting processes were analyzed economically environmentally, studies showing that production costs can be reduced by 25% when using locally sourced residues. recommends optimizing improve briquette durability quality. Future research directions focused on developing cost-effective technologies tailored for small- medium-sized businesses identified study. Rural disadvantaged regions could benefit from advancements paper advocates improved collaboration international organizations standardize quality, promoting market acceptance trade. Technology has advance systems achieve global climate goals.

Язык: Английский

Процитировано

0