학술논문

Energy harvesting from tropical biomasses in Wallacea region: scenarios, technologies, and perspectives
Document Type
Review Paper
Source
Biomass Conversion and Biorefinery: Processing of Biogenic Material for Energy and Chemistry. :1-19
Subject
Tropical biomass
Geographic information system
Wallacea
Machine learning
Conversion technology
Language
English
ISSN
2190-6815
2190-6823
Abstract
Wallacea attracts much attention from researchers because it is a meeting point between Asia and Australia with rich biodiversity. Therefore, bioenergy source identification in this region is crucial to better understanding biomass potential and utilization. On the other hand, national bioenergy development usually refers to government policies, including granting permits to use forest land, especially on unproductive land. Thus, balanced utilization of tropical forests as an energy source is required. It must consider several aspects comprehensively, including its function in protecting the surrounding landscape, contributing to food security, and creating economic opportunities for communities around forest areas. This paper addresses biomass utilization in the Wallacea region aligned with Indonesian policy targets for bioenergy generation to achieve the net zero emission target by 2060. The study is carried out by limiting the scope of the area and relying on international databases and the nation’s potential targeting biomass research. In addition, the recent development of conversion technologies is adjusted based on available biomass types, including geographic information systems for potential biomass analysis. The analysis and data synchronization are presented in charts, graphs, and tables. In the early section, the potential of biomass in the Wallacea is explained. The following section discusses several scenarios, routes, and utilization technology options for biomass utilization. Various studies that have been conducted are presented in this section, including machine learning adoptions to model and optimize biomass conversion processes. Furthermore, challenges and opportunities are discussed by looking at various factors, such as accessibility, socio-economics, life cycle assessment, and environmental issues.