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Two-step accelerated mineral carbonation and decomposition analysis for the reduction of CO2 emission in the eco-industrial parks

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15 Scopus citations

Abstract

Carbon dioxide (CO2) emissions are a leading contributor to the negative effects of global warming. Globally, research has focused on effective means of reducing and mitigating CO2 emissions. In this study, we examined the efficacy of eco-industrial parks (EIPs) and accelerated mineral carbonation techniques in reducing CO2 emissions in South Korea. First, we used Logarithmic Mean Divisia Index (LMDI) analysis to determine the trends in carbon production and mitigation at the existing EIPs. We found that, although CO2 was generated as byproducts and wastes of production at these EIPs, improved energy intensity effects occurred at all EIPs, and we strongly believe that EIPs are a strong alternative to traditional industrial complexes for reducing net carbon emissions. We also examined the optimal conditions for using accelerated mineral carbonation to dispose of hazardous fly ash produced through the incineration of municipal solid wastes at these EIPs. We determined that this technique most efficiently sequestered CO2 when micro-bubbling, low flow rate inlet gas, and ammonia additives were employed.

Original languageEnglish
Pages (from-to)1411-1422
Number of pages12
JournalJournal of Environmental Sciences (China)
Volume26
Issue number7
DOIs
StatePublished - Jul 2014

Bibliographical note

Funding Information:
The authors were supported by the Global COE Program , “Global Center of Excellence for Mechanical Systems Innovation” and by the Ministry of Education, Culture, Sports, Science, and Technology , Grant-in-Aid for Scientific Research (A). We are deeply obliged to these organizations.

Keywords

  • Accelerated mineral carbonation
  • EIPs
  • LMDI analysis

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