4.4 Review

Catalytic Hydrothermal Carbonization Treatment of Biomass for Enhanced Activated Carbon: A Review

期刊

WASTE AND BIOMASS VALORIZATION
卷 12, 期 5, 页码 2171-2186

出版社

SPRINGER
DOI: 10.1007/s12649-020-01134-x

关键词

Activated Carbon; Biochar; Catalyst; Hydrothermal Carbonization; Supercapacitors

资金

  1. Canadian Network for Research and Innovation in Machining Technology
  2. Natural Sciences and Engineering Research Council of Canada [RGPIN-2015-05093]
  3. Biomass Canada of BioFuelNet Canada Network [ASC-16]

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This review highlights the processing methods used to convert biomass waste into high-value activated carbon, with a focus on recent advances in catalytic HTC as a pretreatment method, showing that the use of catalysts can significantly enhance the performance of activated carbon.
Biomass for activated carbon production has had been gaining interest in a wide variety of applications such as water filtration, gas adsorption, and electrochemical devices as a renewable carbon source while meeting desired porosity, surface area, conductivity, and stability requirements. Activated carbon production has been extensively investigated, proving to provide high performance in applications including electrochemical devices. Hydrothermal carbonization (HTC) has shown potential as a pretreatment method for activated carbon production, especially when surface functionalization is desired. However, research into catalytic HTC is still limited. In this review, the processing methods used to convert biomass waste products into high value activated carbon are briefly reviewed, with a focus on recent progress in catalytic HTC as a pretreatment method to activated carbon. Areas of interest for catalytic HTC for activated carbon production are identified. Recent studies have found that the use of catalysts enhances the degree of carbonization, surface modification, and introduction of key heteroatoms significantly augmenting the performance of activated carbon. With further development of catalytic HTC technology, more competent carbon material for electrochemical devices can be produced cost-effectively and move towards meeting the ever-increasing demands of activated carbons for high-performance electrochemical devices. [GRAPHICS] .

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