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Gasification biochar from horticultural waste: An exemplar of the circular economy in Singapore

  • Srishti Arora
  • , Janelle Jung
  • , Ming Liu
  • , Xian Li
  • , Abhimanyu Goel
  • , Jialing Chen
  • , Shuang Song
  • , Carly Anderson
  • , Dexiang Chen
  • , Ken Leong
  • , Song Hau Lim
  • , Siew Lee Fong
  • , Subhadip Ghosh
  • , Alexander Lin
  • , Harn Wei Kua
  • , Hugh T W Tan
  • , Yanjun Dai
  • , Chi-Hwa Wang

Research output: Contribution to journalArticlepeer-review

44 Citations (Scopus)

Abstract

Organic waste, the predominant component of global solid waste, has never been higher, resulting in increased landfilling, incineration, and open dumping that releases greenhouse gases and toxins that contribute to global warming and environmental pollution. The need to create and adopt sustainable closed-loop systems for waste reduction and valorization is critical. Using organic waste as a feedstock, gasification and pyrolysis systems can produce biooil, syngas, and thermal energy, while reducing waste mass by as much as 85–95% through conversion into biochar, a valuable byproduct with myriad uses from soil conditioning to bioremediation and carbon sequestration. Here, we present a novel case study detailing the circular economy of gasification biochar in Singapore's Gardens by the Bay. Biochar produced from horticultural waste within the Gardens was tested as a partial peat moss substitute in growing lettuce, pak choi, and pansy, and found to be a viable substitute for peat moss. At low percentages of 20–30% gasification biochar, fresh weight yields for lettuce and pak choi were comparable to or exceeded those of plants grown in pure peat moss. The biochar was also analyzed as a potential additive to concrete, with a 2% biochar mortar compound found to be of suitable strength for non-structural functions, such as sidewalks, ditches, and other civil applications. These results demonstrate the global potential of circular economies based on local biochar creation and on-site use through the valorization of horticultural waste via gasification, generating clean, renewable heat or electricity, and producing a carbon-neutral to -negative byproduct in the form of biochar. They also indicate the potential of scaled-up pyrolysis or gasification systems for a circular economy in waste management.

Original languageEnglish
Article number146573
Pages (from-to)1-10
JournalScience of the Total Environment
Volume781
Early online date19 Mar 2021
DOIs
Publication statusPublished - 10 Aug 2021

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy
  2. SDG 8 - Decent Work and Economic Growth
    SDG 8 Decent Work and Economic Growth
  3. SDG 12 - Responsible Consumption and Production
    SDG 12 Responsible Consumption and Production

Keywords

  • Vegetable production
  • Peat moss substitution
  • Gasification
  • Concrete additive
  • Environmental Sciences
  • Environmental Sciences & Ecology
  • Biochar
  • Circular economy

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