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Eco-design of a low-cost adsorbent produced from waste cherry kernels

  • Djordje Vukelic
  • , Nikola Boskovic
  • , Boris Agarski
  • , Jelena Radonic
  • , Igor Budak
  • , Sabolc Pap
  • , Maja Turk Sekulic

Résultats de recherche: ArticleRevue par des pairs

85 Citations (Scopus)
184 Téléchargements (Pure)

Résumé

Industrial wastewater polluted with heavy metals presents significant ecological and health risks. Such wastewater can be efficiently decontaminated with activated carbon. Waste cherry kernels are a low-cost material used to produce non-conventional activated carbon. This research applies life cycle assessment, comparative adsorption study, and cost analysis to achieve an eco-design-based process to produce activated carbon from waste cherry kernels. The results from three analyses of commercial activated carbon and a low-cost adsorbent made from waste cherry kernels were compared. Producing activated carbon from waste cherry kernels had major environmental impacts associated with consumption of electricity and phosphoric acid. For the human toxicity impact category, characterization results were 3.91E-07 and 1.17E-07 disability-adjustment life years for electricity and phosphoric acid consumption, respectively. Endpoint results from all categories showed that alternative activated carbon has the lowest total environmental impact, a total of 585 mPt, whilst the largest impact, 739 mPt, is due to commercial activated carbon. The adsorption study showed that activated carbon produced from waste cherry kernels had heavy metal removal rates of 79–95% and 90–92% for Pb2+ and Cd2+, respectively. On the other hand, with a removal rate of 84–88%, commercial activated carbon showed better results for Ni2+. The cost analysis results indicated that activated carbon produced from waste cherry kernels is more than six times cheaper than commercial activated carbon and can provide savings of 229 US$/kg. The practical applications of activated carbon made from waste cherry kernels are the same as those of commercial activated carbon, and include use in air and water purification filters for heavy metals, hydrocarbons, and organic contaminants.
langue originaleEnglish
Pages (de - à)1620-1628
Nombre de pages8
journalJournal of Cleaner Production
Volume174
Date de mise en ligne précoce14 nov. 2017
Les DOIs
étatPublished - 1 févr. 2018

SDG des Nations Unies

Ce résultat contribue à ou aux Objectifs de développement durable suivants

  1. Good health and well being
    Good health and well being
  2. Clean water and sanitation
    Clean water and sanitation
  3. Affordable and clean energy
    Affordable and clean energy
  4. Industry innovation and infrastructure
    Industry innovation and infrastructure
  5. Responsible consumption and production
    Responsible consumption and production

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