TECHNOLOGICAL INNOVATION DeNOX: A CONTRIBUTION FOR MITIGATION OF GREENHOUSE GAS

Authors

  • Vera Lucia Chaves ALONSO
  • Nelson ALONSO JUNIOR
  • Sergio Silva BRAGA JUNIOR

DOI:

https://doi.org/10.18011/bioeng2012v6n3p102-116

Keywords:

Gases, Environmental Management, Innovation

Abstract

The adoption of sustainable technological innovation is an important strategy to organizational competitiveness that every company should consider value, considering that the present needs should not compromise the ability to meet future generations so that they can evolve. (Brundtland Commission, 1987). Allied to this, also added to ethics and transparency to the management of business organizations in the context in which they operate. Accordingly, the chemical industry with net sales in 2010 of $ 130.2 billion, also has a strong representation in the environmental impact. However, this same industry has invested in research and development of cleaner technologies to mitigate GEES. Associated with the reduction of NOx, a gas formed during the production process at high temperatures, this study aims to present some aspects of DeNOx technology used in the production process as well as provide possible both environmental and economic benefits. With the adoption of this new technology, a case study was carried out in a chemical industry located in Guaratingueta, the state of Sao Paulo/Brazil.

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References

ABIQUIM- Associação Brasileira de Indústrias Químicas. disponível em: http://www.abiquim.org.br/pacto/default.asp

UMA GRANDE INDUSTRIA QUÍMICA S.A. A Pegada de Carbono: a economia de CO2 obtida pelos produtos da UMA GRANDE INDUSTRIA QUÍMICA excede em três vezes as emissões de gases de efeito estufa. Acessado em: de maio de 2011. Disponível em>http://www.uma grande industria química.com.br/100anos/mundo_uma grande industria química/Publieditorial+Valor+8.pdf

__________Raio X: Complexo Químico de Guaratinguetá. Acessado em: de maio de 2011. Disponível em>http://www.uma grande industria química.com.br/default.asp?id=3801

CHRISTENSEN, C.M. The Innovator´s Dilemma: When New Technologies Cause Great Firms to Fail. Harvard Business School Press, 1997.

CONAMA-CONSELHO NACIONAL DO MEIO AMBIENTE: Resolução

CONAMA . Disponível em http://www.siam.mg.gov.br/sla/download.pdf?idNorma=41

COBB, David et al. Application of selective catalytic reduction (SCR) technology for NOx reduction from refinery combustion sources. Environmental progress, v. 10, n. 1, p. 49-59, 1991.

ENVIRONMENTAL EUROPEAN AGENCY – EEA CORINAIR (CORe InventoriesAIR), 2011.Disponível em: http://www.eea.dk/locate

EPA – U.S.ENVIRONMENTAL PROTECTION AGENCY: Mudanças Climáticas. Acessado em junho de 2011. Disponível em http://www.epa.gov/climatechange/science/index.html

______________: INVENTORY OF U.S. GREENHOUSE GAS EMISSIONS AND SINKS:1990 – 2009APRIL 15, 2011. Acessado em 06/06/2011. Disponível em http://epa.gov/climatechange/emissions/downloads11/US-GHG-Inventory-2011-Complete_Report.pdf

FINEP – MANUAL DE OSLO. Acessado em maio de 2011. Disponível em http://www.finep.gov.br/dcom/brasil_inovador/arquivos/manual_de_oslo/cap3_01_introducao.html

GOLDEMBERG. J. Energia, meio ambiente e desenvolvimento. São Paulo: EDUSP. 1998 .

GERMAN CATALYSIS SOCIETY. Roadmap der Deutschen Katalyseforschung: eine Schlüsseltechnologie fur Nachhaltiges Wirtschaftswachstum, märz 2010. Disponível em http://www.gdch.de/strukturen/fg/gecats_roadmap.pdf

LACERDA, Marcelo. Pacto com a inovação. http://economia.ig.com.br

LOURENÇO, ÁLVAROAUGUSTO DE MATTOS .Otimização de sistema de pós-tratamento de gases deescape do tipo catalisadores seletivos em motores diesel /. --Campinas, SP:[s.n.], 2010.

Published

2012-11-30

How to Cite

ALONSO, V. L. C., JUNIOR, N. A., & JUNIOR, S. S. B. (2012). TECHNOLOGICAL INNOVATION DeNOX: A CONTRIBUTION FOR MITIGATION OF GREENHOUSE GAS. Revista Brasileira De Engenharia De Biossistemas, 6(3), 102–116. https://doi.org/10.18011/bioeng2012v6n3p102-116

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Section

Regular Section