Sustainability Impact Assessment of Waste to Energy Technologies in Iran

Publish Year: 1398
نوع سند: مقاله ژورنالی
زبان: English
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شناسه ملی سند علمی:

JR_JEHSD-4-4_005

تاریخ نمایه سازی: 21 آذر 1400

Abstract:

Introduction: Current energy sources are coming to end and one of the main priorities of the country’s management is the energy recovery from renewable energy. Considerable quantity of municipal solid waste (MSW) is one of the most serious urban pollution sources. Impact assessment matrix is a new and fast tool for Environmental Impact Assessment (EIA). Materials and Methods: In this regard, renewable energy like waste-to-energy was investigated. Environmental assessment method was performed to evaluate the environmental impacts of common Waste to Energy (WTE) technologies by Wooten and Rau matrix. Most available WTE technologies (anaerobic digestion, sanitary landfill with gas recovery, waste incineration, and gasification) were environmentally assessed and compared. Results: Results showed that anaerobic digestion could be most environmental friendly WTE technology for production of renewable energy from organic waste and could be considered. Furthermore, executives as green minded managements can improve the quality of waste management by finding new solutions. Other technologies such as landfill by gas recovery and gasification will be ranked second and third in terms of environmental effect. Conclusion: Results showed that performing anaerobic digestion technology will produce less environmental impact in long term. Then landfilling by gas recovery and gasification technologies will be ranked second and third in terms of environmental effect.

Authors

Fahimeh Teimouri

Environmental Science and Technology Research Center, Department of Environmental Health Engineering, School of Public Health, Shahid Sadoughi University of Medical Sciences, Yazd, Iran.

Ali Asghar Ebrahimi

Environmental Science and Technology Research Center, Department of Environmental Health Engineering, School of Public Health, Shahid Sadoughi University of Medical Sciences, Yazd, Iran.

Mahrokh Jalili

Environmental Science and Technology Research Center, Department of Environmental Health Engineering, School of Public Health, Shahid Sadoughi University of Medical Sciences, Yazd, Iran.

Hamid Reza Alaghehbandan

Isfahan Scientific and Research Park, Isfahan, Iran.

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  • Nicoletti G, Arcuri N, Nicoletti G. Technical and environmental comparison ...
  • Nizami A, Shahzad K, Rehan M, et al. Developing waste ...
  • Mohammadi A, Omid M. Economical analysis and relation between energy ...
  • Sawayama S, Minowa T, Yokoyama S-Y. Possibility of renewable energy ...
  • Bhattacharya M, Paramati SR, Ozturk I. The effect of renewable ...
  • Ghasemian M, Poursafa P, Amin MM, et al. Environmental impact ...
  • Boyle W. Energy recovery from sanitary landfills-a review. Microb energy ...
  • Yi S, Jang YC, An AK. Potential for energy recovery ...
  • Nabavi-Pelesaraei A, Bayat R, Hosseinzadeh-Bandbafha A, et al. Prognostication of ...
  • Damghani AM, Savarypour G, Zand E. Municipal solid waste management ...
  • East AM, Asia E. Municipal Solid Waste Growing. Gary Gardner. ...
  • Nasrullah M, Vainikka P, Hannula J, et al. Elemental balance ...
  • Arena U, Mastellone ML, Perugini F. The environmental performance of ...
  • Mata-Alvarez J, Mace S, Llabres P. Anaerobic digestion of organic ...
  • Hajjari M, Tabatabaei M, Aghbashlo M, et al. A review ...
  • Nejat P, Jomehzadeh F, Taheri MM, et al. A global ...
  • Watson RT, Boudreau MC, Chen AJ. Information systems and environmentally ...
  • Vaughan A. China tops WHO list for deadly outdoor air ...
  • Dehghan A, Khanjani N, Bahrampour A, et al. The relation ...
  • Singh RP, Nachtnebel HP. Analytical hierarchy process (AHP) application for ...
  • Yay ASE. Application of life cycle assessment (LCA) for municipal ...
  • Therivel R. Strategic environmental assessment in action. Routledge. ۲۰۱۲;۸(۲):۱۳۷-۹ ...
  • Kydd J, Pearce R, Stockbridge M. The economic analysis of ...
  • Crites RW, Middlebrooks EJ, Bastian RK. Natural wastewater treatment systems. ...
  • Kapepula K-M, Colson G, Sabri K, et al. A multiple ...
  • Fytili D, Zabaniotou A. Utilization of sewage sludge in EU ...
  • Arafat HA, Jijakli K, Ahsan A. Environmental performance and energy ...
  • Duijm NJ, Markert F. Assessment of technologies for disposing explosive ...
  • Monavari M. Environmental impact assessment model of municipal landfills. First ...
  • Haight M. Assessing the environmental burdens of anaerobic digestion in ...
  • Evangelisti S, Lettieri P, Borello D, et al. Life cycle ...
  • Cremiato R, Mastellone ML, Tagliaferri C, et al. Environmental impact ...
  • Pardo G, Moral R, del Prado A. A modelling framework ...
  • Jensen MB, Møller J, Scheutz C. Assessment of a combined ...
  • Anderson DC, Harold THI. Container for storing and transporting recyclable ...
  • Porter M. America’s green strategy. Scientific American. ۱۹۹۶; ۲۶۴(۴): ۳۳. ...
  • نمایش کامل مراجع