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Sara Zanni
Alessandra Bonoli



Authors and WSEAS

Sara Zanni
Alessandra Bonoli


WSEAS Transactions on Environment and Development


Print ISSN: 1790-5079
E-ISSN: 2224-3496

Volume 14, 2018

Notice: As of 2014 and for the forthcoming years, the publication frequency/periodicity of WSEAS Journals is adapted to the 'continuously updated' model. What this means is that instead of being separated into issues, new papers will be added on a continuous basis, allowing a more regular flow and shorter publication times. The papers will appear in reverse order, therefore the most recent one will be on top.


Volume 14, 2018



Sustainability Assessment Applied to an Air Treatment Biotechnology: Methodology and Results of Life Cycle Assessment

AUTHORS: Sara Zanni, Alessandra Bonoli

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ABSTRACT: Life Cycle Assessment methodology has been applied to the sustainability evaluation of an environmental biotechnology in an eco-design perspective. This to avoid possible shifting of burdens among different environmental matrices possibly occurring when a remediation activity is performed. GHG Protocol and IMPACT 2002+ calculation methods have been applied. Results show that about 80% of the impact generated is to be attributed to energy consumption during the use phase, thus promoting an integration of the technology under study with renewable energy sources. In order to try and consider environmental benefit deriving from air treatment activity, an evaluation of the technology as carbon sink has been performed, comparing results obtained from impact assessment with specific reference. Results obtained suggest that a single bioreactor unit could act as carbon sink equivalent to a number of trees ranging from 43 (high growth rate species), to 268 (low growth rate species).

KEYWORDS: Sustainability, LCA, carbon sink, air treatment, biotechnology, bioreactor.

REFERENCES:

[1] UNI EN ISO 14040:2006. Environmental management -- Life cycle assessment -- Principles and framework.

[2] UNI EN ISO 14044:2006. Environmental management -- Life cycle assessment -- Requirements and guidelines.

[3] Bonoli A., Antonozzi L., Zanni S. Life Cycle Assessment (LCA) as a means of comparison between active and passive remediation technology for wastewater and contaminated soils. Environmental Engineering and Management Journal, Vol. 12(9), 2013, Supplement, S1-S4.

[4] Antonozzi L. Valutazione ambientale di tecnologie di bonifica per acquiferi contaminati attraverso la metodologia LCA, Ph.D. Thesis, Alma Mater Studiorum Università di Bologna, 2015.

[5] JRC IES Joint Research Centre, Institute for Environment and Sustainability of the European Commission, International Reference Life Cycle Data System (ILCD) Handbook e General Guide for Life Cycle Assessment and Detailed Guidance. Publications Office of the European Union. 2010.

[6] Bonoli A. and Zanni S. Bioremediation of radioactivity in contaminated environmental media, Book of Abstract ICEEM08, IASI, ECOZONE Publishing House (OAIMDD), 2015, Vol. 1, pp. 303 - 304 (8th International Conference on Environmental Engineering and Management).

[7] McNevin D., Bardford J., Biofiltration as an odour abatement strategy. Biochemical Engineering Journal, Vol. 5, 2000, pp.231 242.

[8] Bonoli, A. and Zanni, S. Indoor air quality in waste treatment: environmental issue and biotechnology application for air pollution containment, a case study. WSEAS Trans Environ Dev, 2014, Vol. 10.

[9] Frischknecht R., Jungbluth N. (Editors); Althaus H J, Doka G., Dones R., Heck T., Hellweg S., Hischier R., Nemecek T., Rebitzer G., Spielmann M., Wernet G., Ecoinvent: Overview and Methodology. Data v2.0. Swiss Centre for Life Cycle Inventories, 2007.

[10] Frischknecht, R.; Jungbluth, N.; Althaus, H.J.; Doka, G.; Dones, R.; Hischier, R.; Hellweg, S.; Humbert, S.; Margni, M.; Nemecek, T.; Spielmann, M., Implementation of Life Cycle Impact Assessment Methods: Data v2.0. Ecoinvent report No. 3, Swiss centre for Life Cycle Inventories, Dübendorf, Switzerland, 2007.

[11] WRI, Product Life Cycle Accounting and Reporting Standard. Review Draft for Stakeholder Advisory Group. The Greenhouse Gas Protocol Initiative, 2009.

[12] Proietti P., Sdringola P., Brunori A., Ilarioni L., Nasini L., Regni L., Pelleri F., Desideri U., Proietti S., Assessment of carbon balance in intensive and extensive tree cultivation systems for oak, olive, poplar and walnut plantation. Journal of Cleaner Production, Vol. 112, 2016, pp.2613-2624.

[13] Intergovernmental Panel on Climate Change (IPCC), Fourth Assessment Report - Climate Change 2007: Impacts, Adaptation and Vulnerability, 2007.

[14] Khan, G.S., Chaudhry A.K., Effect of spacing and plant density on the growth of poplar (Populus deltoids) trees under agro forestry system. Pak. J. Agri. Sci., Vol. 44(2), 2007.

WSEAS Transactions on Environment and Development, ISSN / E-ISSN: 1790-5079 / 2224-3496, Volume 14, 2018, Art. #8, pp. 76-86


Copyright © 2018 Author(s) retain the copyright of this article. This article is published under the terms of the Creative Commons Attribution License 4.0

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