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Microwave processing of oil palm wastes for bioenergy production and circular economy: Recent advancements, challenges, and future prospects. | LitMetric

Microwave processing of oil palm wastes for bioenergy production and circular economy: Recent advancements, challenges, and future prospects.

Bioresour Technol

Henan Province Forest Resources Sustainable Development and High-value Utilization Engineering Research Center, School of Forestry, Henan Agricultural University, Zhengzhou 450002, China; Higher Institution Centre of Excellence (HICoE), Institute of Tropical Aquaculture and Fisheries (AKUATROP), Universiti Malaysia Terengganu, 21030 Kuala Nerus, Terengganu, Malaysia; Automotive Development Centre (ADC), Institute for Vehicle Systems and Engineering (IVeSE), Universiti Teknologi Malaysia (UTM), Johor Bahru, 81310 Johor, Malaysia; Sustainability Cluster, School of Engineering, University of Petroleum & Energy Studies, Dehradun, Uttarakhand 248007, India. Electronic address:

Published: February 2023

AI Article Synopsis

  • The conversion of biomass, particularly oil palm waste, into valuable products and bioenergy is crucial for achieving sustainable circular bioeconomy and reducing carbon emissions.
  • Microwave technology offers an efficient method for processing this waste through techniques like torrefaction, gasification, and pyrolysis, yielding useful products like biochar, bio-oil, and syngas.
  • However, challenges such as insufficient life cycle assessments, limited understanding of microwave interaction with biomass, and the need for better insights into process efficiency and selectivity still need to be addressed for large-scale implementation.

Article Abstract

The valorization and conversion of biomass into various value-added products and bioenergy play an important role in the realization of sustainable circular bioeconomy and net zero carbon emission goals. To that end, microwave technology has been perceived as a promising solution to process and manage oil palm waste due to its unique and efficient heating mechanism. This review presents an in-depth analysis focusing on microwave-assisted torrefaction, gasification, pyrolysis and advanced pyrolysis of various oil palm wastes. In particular, the products from these thermochemical conversion processes are energy-dense biochar (that could be used as solid fuel, adsorbents for contaminants removal and bio-fertilizer), phenolic-rich bio-oil, and H-rich syngas. However, several challenges, including (1) the lack of detailed study on life cycle assessment and techno-economic analysis, (2) limited insights on the specific foreknowledge of microwave interaction with the oil palm wastes for continuous operation, and (3) effects of tunable parameters and catalyst's behavior/influence on the products' selectivity and overall process's efficiency, remain to be addressed in the context of large-scale biomass valorization via microwave technology.

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Source
http://dx.doi.org/10.1016/j.biortech.2022.128478DOI Listing

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