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A comprehensive review on the factors affecting thermochemical conversion efficiency of algal biomass to energy.
Das, Pritam; V P, Chandramohan; Mathimani, Thangavel; Pugazhendhi, Arivalagan.
Affiliation
  • Das P; Mechanical Engineering Department, National Institute of Technology Warangal, Warangal, Telangana 506004, India.
  • V P C; Mechanical Engineering Department, National Institute of Technology Warangal, Warangal, Telangana 506004, India. Electronic address: vpcm80@nitw.ac.in.
  • Mathimani T; Department of Energy and Environment, National Institute of Technology Tiruchirappalli, Tiruchirappalli 620 015, Tamil Nadu, India.
  • Pugazhendhi A; Innovative Green Product Synthesis and Renewable Environment Development Research Group, Faculty of Environment and Labour Safety, Ton Duc Thang University, Ho Chi Minh City, Viet Nam. Electronic address: arivalagan.pugazhendhi@tdtu.edu.vn.
Sci Total Environ ; 766: 144213, 2021 Apr 20.
Article in En | MEDLINE | ID: mdl-33418252
ABSTRACT
Algae are one of the most viable feedstock options that can be converted into different bioenergies viz., bioethanol, biobutanol, biodiesel, biomethane, biohydrogen, etc. owing to their renewable, sustainable and economic credibility features. Algal biomass to fuel biorefining process is generally classified into three categories as chemical, biochemical and thermochemical methods. The present article aims to provide a state-of-the-art review on the factors affecting the thermochemical conversion process of algal biomass to bioenergy. Further, reaction conditions of each techniques (torrefaction, pyrolysis, gasification and hydrothermal process) influence biochar, bio-oil and syngas yield were discussed. Reaction parameters or factors such as reactor temperature, residence time, pressure, biomass load/feedstock composition, catalyst addition and carrier gas flow affecting process efficiency in terms of product yield and quality were spotlighted and extensively discussed with copious literature. It also presents the novel insights on production of solid (char), liquid (bio-oil) and gaseous (syngas) biofuel through torrefaction, pyrolysis and gasification, respectively. It is found that the energy intensive drying was more efficient mode involved in thermochemical process for wet algal biomass. However other modes of thermochemical process were having unique feature on improving the product yield and quality. Among the various factors, reaction temperature and residence time were relatively more important factors which affected the process efficiency. The other factors signposted in this review will lay a roadmap to researchers to choose an optimal thermochemical conditions for high quality end product. Lastly, the perspectives and challenges in thermochemical conversion algae biomass to biofuels were also discussed.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Biofuels / Gases Language: En Journal: Sci Total Environ Year: 2021 Document type: Article Affiliation country: India

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Biofuels / Gases Language: En Journal: Sci Total Environ Year: 2021 Document type: Article Affiliation country: India