4.7 Review

Recent advances and viability in sustainable thermochemical conversion of sludge to bio-fuel production

Journal

FUEL
Volume 316, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.fuel.2022.123351

Keywords

Sludge; Hydrothermal Liquefaction; Pyrolysis; Gasification; Bio-fuel

Funding

  1. RUDN University Strategic Academic Leadership Program
  2. [GEU/Seedgrant/04/2021]

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Thermochemical methods offer a promising solution for managing sludge by converting it into bio-fuel through processes such as pyrolysis, gasification, and hydrothermal liquefaction. This review highlights the working mechanisms of these processes, their efficiency in sludge conversion, and the potential challenges and future prospects. Hydrothermal liquefaction has shown to be more efficient than other thermochemical technologies in producing high yields of bio-fuel from sludge.
Thermochemical methods are regarded as promising approach for managing sludge, that can achieve resources and energy recovery, volume reduction followed by efficient elimination of microorganisms. This review highlights an extensive description of the implementation of thermochemical technologies involving pyrolysis, gasification and hydrothermal liquefaction for valorisation of sludge into bio-fuel thus reducing the issues related to surplus generation and accumulation of sludge in environment affecting human health followed by rapid depletion of energy resources. The paper addresses working mechanism of thermochemical processes, their implementation for sludge conversion to bio-fuel and common factors affecting the process efficiency. Various studies have proved possible potential of thermochemical techniques for conversion of sludge to bio-fuel obtaining a high yield of bio-fuel and syngas. However, few technical challenges are still there that requires further studies and understanding for a better commercialization on industrial-scale and subsequently the future perspectives have also been analysed. Data collected from existing studies revealed that hydrothermal liquefaction has the efficiency to be proved better than other thermochemical technologies for proper valorisation of sludge resulting in high bio-fuel yield.

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