Quantifica??o das emiss?es de CO2 na constru??o de unidades residenciais unifamiliares com diferentes materiais

Detalhes bibliográficos
Ano de defesa: 2016
Autor(a) principal: Cunha, Iasminy Borba da lattes
Orientador(a): Andrade, Jairo Jos? de Oliveira lattes
Banca de defesa: Não Informado pela instituição
Tipo de documento: Dissertação
Tipo de acesso: Acesso aberto
Idioma: por
Instituição de defesa: Pontif?cia Universidade Cat?lica do Rio Grande do Sul
Programa de Pós-Graduação: Programa de P?s-Gradua??o em Engenharia e Tecnologia de Materiais
Departamento: Faculdade de Engenharia
País: Brasil
Palavras-chave em Português:
Área do conhecimento CNPq:
Link de acesso: http://tede2.pucrs.br/tede2/handle/tede/6884
Resumo: This study aimed to quantify the carbon dioxide emissions during the process of construction of twenty single-family residential units, each with a total area of 42.89 m?. Quantification was performed by using Energy Life Cycle Analysis (ELCA), a simplified way to conduct an analysis of environmental impacts. The ELCA was based on the methodology proposed by Tavares (2006), which uses the Embedded Energy (EE) to quantify the emissions of CO2 in the main materials used for construction, i.e: Steel, aggregates, red ceramic, lime and cement. The use of these materials in the construction of the studied units will emit 60,157.00 kilograms of CO2 into the atmosphere. Due to this high rate of emission, the replacement material was proposed using ceramic blocks in sealing, instead of alternative materials of soilcement blocks and concrete blocks. The replacement was proposed in order to verify if these materials have lower carbon dioxide emissions, so they could make the buildings less impactful to the environment. The use of concrete blocks is not advantageous because it would increase CO2 emissions by 1873.29 kg. Meanwhile, the use of soil-cement blocks would reduce CO2 emissions by 8.018,00 kg, thus making the construction of the units an activity with less environmental impact. This would occur because the soil-cement block during manufacture, does not pass through the burning process, making it a sustainable material.
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spelling Andrade, Jairo Jos? de Oliveira783.772.424-00http://buscatextual.cnpq.br/buscatextual/visualizacv.do?id=K4791655A8015.790.990-50http://buscatextual.cnpq.br/buscatextual/visualizacv.do?id=K4486050A0Cunha, Iasminy Borba da2016-08-10T11:40:07Z2016-04-29http://tede2.pucrs.br/tede2/handle/tede/6884This study aimed to quantify the carbon dioxide emissions during the process of construction of twenty single-family residential units, each with a total area of 42.89 m?. Quantification was performed by using Energy Life Cycle Analysis (ELCA), a simplified way to conduct an analysis of environmental impacts. The ELCA was based on the methodology proposed by Tavares (2006), which uses the Embedded Energy (EE) to quantify the emissions of CO2 in the main materials used for construction, i.e: Steel, aggregates, red ceramic, lime and cement. The use of these materials in the construction of the studied units will emit 60,157.00 kilograms of CO2 into the atmosphere. Due to this high rate of emission, the replacement material was proposed using ceramic blocks in sealing, instead of alternative materials of soilcement blocks and concrete blocks. The replacement was proposed in order to verify if these materials have lower carbon dioxide emissions, so they could make the buildings less impactful to the environment. The use of concrete blocks is not advantageous because it would increase CO2 emissions by 1873.29 kg. Meanwhile, the use of soil-cement blocks would reduce CO2 emissions by 8.018,00 kg, thus making the construction of the units an activity with less environmental impact. This would occur because the soil-cement block during manufacture, does not pass through the burning process, making it a sustainable material.O presente trabalho teve por objetivo, quantificar as emiss?es de di?xido de carbono, durante o processo de constru??o de vinte unidades residenciais unifamiliares com ?rea total de 42,89 m?. A quantifica??o foi realizada, atrav?s da An?lise do Ciclo de Vida Energ?tico (ACVE), uma forma simplificada de conduzir uma an?lise de impactos ambientais. A ACVE foi baseada, na metodologia proposta por Tavares (2006), que utiliza a Energia Embutida (EE) para quantificar as emiss?es de CO2, dos principais materiais empregados pela constru??o civil: a?o, agregados, cer?mica vermelha, cal e cimento. A utiliza??o desses materiais na constru??o das unidades estudadas ir? emitir 60.157,00 kg de CO2 na atmosfera. Devido, a esse alto ?ndice de emiss?o, foi proposta a substitui??o dos blocos cer?micos que ser?o utilizados na veda??o, por materiais alternativos: blocos de solo-cimento e blocos de concreto. A substitui??o foi proposta a fim de verificar, se esses materiais n?o possuem uma emiss?o de di?xido de carbono inferior, pois assim poderia tornar as constru??es menos impactante ao meio ambiente. O emprego dos blocos de concreto n?o ? vantajosa, pois aumentaria em 1.873,29 kg a emiss?o de CO2. Enquanto isso, a utiliza??o dos blocos de solo-cimento, iria reduzir 8.018,00kg, tornando assim a constru??o das unidades, uma atividade com menor impacto ambiental. Isso ocorreria, pois o bloco de solo-cimento, durante a fabrica??o n?o passam pelo processo de queima tornando-o um material sustent?vel.Submitted by Setor de Tratamento da Informa??o - BC/PUCRS (tede2@pucrs.br) on 2016-08-10T11:40:07Z No. of bitstreams: 1 DIS_IASMINY_BORBA_DA_CUNHA_COMPLETO.pdf: 2360792 bytes, checksum: 37c772cd5bd9992d78d84a08175739cb (MD5)Made available in DSpace on 2016-08-10T11:40:07Z (GMT). No. of bitstreams: 1 DIS_IASMINY_BORBA_DA_CUNHA_COMPLETO.pdf: 2360792 bytes, checksum: 37c772cd5bd9992d78d84a08175739cb (MD5) Previous issue date: 2016-04-29application/pdfhttp://tede2.pucrs.br:80/tede2/retrieve/165942/DIS_IASMINY_BORBA_DA_CUNHA_COMPLETO.pdf.jpgporPontif?cia Universidade Cat?lica do Rio Grande do SulPrograma de P?s-Gradua??o em Engenharia e Tecnologia de MateriaisPUCRSBrasilFaculdade de EngenhariaMATERIAIS DE CONSTRU??OCIMENTOSUSTENTABILIDADEDI?XIDO DE CARBONOENGENHARIA DE MATERIAISENGENHARIASQuantifica??o das emiss?es de CO2 na constru??o de unidades residenciais unifamiliares com diferentes materiaisQuantification of CO2 emissions in the construction of single-family residential units with different materialsinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/masterThesis-7432719344215120122600600600-6557705727614397854518971056484826825info:eu-repo/semantics/openAccessreponame:Biblioteca Digital de Teses e Dissertações da PUC_RSinstname:Pontifícia Universidade Católica do Rio Grande do Sul (PUCRS)instacron:PUC_RSTHUMBNAILDIS_IASMINY_BORBA_DA_CUNHA_COMPLETO.pdf.jpgDIS_IASMINY_BORBA_DA_CUNHA_COMPLETO.pdf.jpgimage/jpeg4426http://tede2.pucrs.br/tede2/bitstream/tede/6884/5/DIS_IASMINY_BORBA_DA_CUNHA_COMPLETO.pdf.jpg72e0a5b31328f9069ee2f66baade1bbaMD55TEXTDIS_IASMINY_BORBA_DA_CUNHA_COMPLETO.pdf.txtDIS_IASMINY_BORBA_DA_CUNHA_COMPLETO.pdf.txttext/plain212694http://tede2.pucrs.br/tede2/bitstream/tede/6884/4/DIS_IASMINY_BORBA_DA_CUNHA_COMPLETO.pdf.txtdce2955a417c50494eb17f46b766866aMD54LICENSElicense.txtlicense.txttext/plain; charset=utf-8610http://tede2.pucrs.br/tede2/bitstream/tede/6884/3/license.txt5a9d6006225b368ef605ba16b4f6d1beMD53ORIGINALDIS_IASMINY_BORBA_DA_CUNHA_COMPLETO.pdfDIS_IASMINY_BORBA_DA_CUNHA_COMPLETO.pdfapplication/pdf2360792http://tede2.pucrs.br/tede2/bitstream/tede/6884/2/DIS_IASMINY_BORBA_DA_CUNHA_COMPLETO.pdf37c772cd5bd9992d78d84a08175739cbMD52tede/68842016-08-10 12:00:36.528oai:tede2.pucrs.br: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Biblioteca Digital de Teses e Dissertaçõeshttp://tede2.pucrs.br/tede2/PRIhttps://tede2.pucrs.br/oai/requestbiblioteca.central@pucrs.br||opendoar:2016-08-10T15:00:36Biblioteca Digital de Teses e Dissertações da PUC_RS - Pontifícia Universidade Católica do Rio Grande do Sul (PUCRS)false
dc.title.por.fl_str_mv Quantifica??o das emiss?es de CO2 na constru??o de unidades residenciais unifamiliares com diferentes materiais
dc.title.alternative.eng.fl_str_mv Quantification of CO2 emissions in the construction of single-family residential units with different materials
title Quantifica??o das emiss?es de CO2 na constru??o de unidades residenciais unifamiliares com diferentes materiais
spellingShingle Quantifica??o das emiss?es de CO2 na constru??o de unidades residenciais unifamiliares com diferentes materiais
Cunha, Iasminy Borba da
MATERIAIS DE CONSTRU??O
CIMENTO
SUSTENTABILIDADE
DI?XIDO DE CARBONO
ENGENHARIA DE MATERIAIS
ENGENHARIAS
title_short Quantifica??o das emiss?es de CO2 na constru??o de unidades residenciais unifamiliares com diferentes materiais
title_full Quantifica??o das emiss?es de CO2 na constru??o de unidades residenciais unifamiliares com diferentes materiais
title_fullStr Quantifica??o das emiss?es de CO2 na constru??o de unidades residenciais unifamiliares com diferentes materiais
title_full_unstemmed Quantifica??o das emiss?es de CO2 na constru??o de unidades residenciais unifamiliares com diferentes materiais
title_sort Quantifica??o das emiss?es de CO2 na constru??o de unidades residenciais unifamiliares com diferentes materiais
author Cunha, Iasminy Borba da
author_facet Cunha, Iasminy Borba da
author_role author
dc.contributor.advisor1.fl_str_mv Andrade, Jairo Jos? de Oliveira
dc.contributor.advisor1ID.fl_str_mv 783.772.424-00
dc.contributor.advisor1Lattes.fl_str_mv http://buscatextual.cnpq.br/buscatextual/visualizacv.do?id=K4791655A8
dc.contributor.authorID.fl_str_mv 015.790.990-50
dc.contributor.authorLattes.fl_str_mv http://buscatextual.cnpq.br/buscatextual/visualizacv.do?id=K4486050A0
dc.contributor.author.fl_str_mv Cunha, Iasminy Borba da
contributor_str_mv Andrade, Jairo Jos? de Oliveira
dc.subject.por.fl_str_mv MATERIAIS DE CONSTRU??O
CIMENTO
SUSTENTABILIDADE
DI?XIDO DE CARBONO
ENGENHARIA DE MATERIAIS
topic MATERIAIS DE CONSTRU??O
CIMENTO
SUSTENTABILIDADE
DI?XIDO DE CARBONO
ENGENHARIA DE MATERIAIS
ENGENHARIAS
dc.subject.cnpq.fl_str_mv ENGENHARIAS
description This study aimed to quantify the carbon dioxide emissions during the process of construction of twenty single-family residential units, each with a total area of 42.89 m?. Quantification was performed by using Energy Life Cycle Analysis (ELCA), a simplified way to conduct an analysis of environmental impacts. The ELCA was based on the methodology proposed by Tavares (2006), which uses the Embedded Energy (EE) to quantify the emissions of CO2 in the main materials used for construction, i.e: Steel, aggregates, red ceramic, lime and cement. The use of these materials in the construction of the studied units will emit 60,157.00 kilograms of CO2 into the atmosphere. Due to this high rate of emission, the replacement material was proposed using ceramic blocks in sealing, instead of alternative materials of soilcement blocks and concrete blocks. The replacement was proposed in order to verify if these materials have lower carbon dioxide emissions, so they could make the buildings less impactful to the environment. The use of concrete blocks is not advantageous because it would increase CO2 emissions by 1873.29 kg. Meanwhile, the use of soil-cement blocks would reduce CO2 emissions by 8.018,00 kg, thus making the construction of the units an activity with less environmental impact. This would occur because the soil-cement block during manufacture, does not pass through the burning process, making it a sustainable material.
publishDate 2016
dc.date.accessioned.fl_str_mv 2016-08-10T11:40:07Z
dc.date.issued.fl_str_mv 2016-04-29
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dc.publisher.none.fl_str_mv Pontif?cia Universidade Cat?lica do Rio Grande do Sul
dc.publisher.program.fl_str_mv Programa de P?s-Gradua??o em Engenharia e Tecnologia de Materiais
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dc.publisher.department.fl_str_mv Faculdade de Engenharia
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