System for measuring the production CO2 in soil contaminated with soybean oil using the Arduino platform

Detalhes bibliográficos
Autor(a) principal: Jorge, Emanuele Nunes de Lima Figueiredo
Data de Publicação: 2017
Outros Autores: Farias, Claudio Miceli de, Costa, Gabriel Martins de Oliveira, França, Tiago Cruz de, Pereira, Mário Sérgio de Souza, Carvalho, Marcelo Dolores de, Thode Filho, Sérgio
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Revista Eletrônica em Gestão Educação e Tecnologia Ambiental (REGET)
Texto Completo: https://periodicos.ufsm.br/reget/article/view/29709
Resumo: Carbon dioxide (CO2), also known as carbonic gas, is a gaseous chemical compound. The process of the degradation  of vegetable oil in the soil produces CO2. There are methodologies that consist in determining the rate of CO2 released by microorganisms in the process of degradation of organic compounds by chemical analysis. However, it is not easy to measure the amount of CO2 released in this degradation process. Thus, the main objective of this work was to monitor in a continuous, quantitative and efficient way, through an automated and low cost system that uses the Arduino platform the amount of CO2 produced in the degradation of vegetable oil in a contaminated soil. The results show the mean values of CO2 capture as a function of the different periods of analysis. Thus, the development of work with automated systems that aid in agricultural environments becomes extremely important for the growth in the areas of Technological Innovation.
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spelling System for measuring the production CO2 in soil contaminated with soybean oil using the Arduino platformCarbon dioxide (CO2), also known as carbonic gas, is a gaseous chemical compound. The process of the degradation  of vegetable oil in the soil produces CO2. There are methodologies that consist in determining the rate of CO2 released by microorganisms in the process of degradation of organic compounds by chemical analysis. However, it is not easy to measure the amount of CO2 released in this degradation process. Thus, the main objective of this work was to monitor in a continuous, quantitative and efficient way, through an automated and low cost system that uses the Arduino platform the amount of CO2 produced in the degradation of vegetable oil in a contaminated soil. The results show the mean values of CO2 capture as a function of the different periods of analysis. Thus, the development of work with automated systems that aid in agricultural environments becomes extremely important for the growth in the areas of Technological Innovation.Universidade Federal de Santa Maria2017-10-30info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdfhttps://periodicos.ufsm.br/reget/article/view/2970910.5902/2236117029709Revista Eletrônica em Gestão, Educação e Tecnologia Ambiental; REGET, V. 21, 2017, SPECIAL EDITION: FEDERAL INSTITUTE OF EDUCATION, SCIENCE AND TECHNOLOGY OF RIO DE JANEIRO – IFRJ – RJ; 01-07Revista Eletrônica em Gestão, Educação e Tecnologia Ambiental; REGET, V. 21, 2017, EDIÇÃO ESPECIAL: INSTITUTO FEDERAL DE EDUCAÇÃO, CIÊNCIA E TECNOLOGIA DO RIO DE JANEIRO – IFRJ – RJ; 01-072236-11702236-1170reponame:Revista Eletrônica em Gestão Educação e Tecnologia Ambiental (REGET)instname:Universidade Federal de Santa Maria (UFSM)instacron:UFSMenghttps://periodicos.ufsm.br/reget/article/view/29709/pdfCopyright (c) 2017 Electronic Journal of Management, Education and Environmental Technology (REGET)info:eu-repo/semantics/openAccessJorge, Emanuele Nunes de Lima FigueiredoFarias, Claudio Miceli deCosta, Gabriel Martins de OliveiraFrança, Tiago Cruz dePereira, Mário Sérgio de SouzaCarvalho, Marcelo Dolores deThode Filho, Sérgio2019-03-14T12:19:39Zoai:ojs.pkp.sfu.ca:article/29709Revistahttps://periodicos.ufsm.br/regetPUBhttps://periodicos.ufsm.br/reget/oaimarcelobdarosa@gmail.com||reget.ufsm@gmail.com2236-11702236-1170opendoar:2019-03-14T12:19:39Revista Eletrônica em Gestão Educação e Tecnologia Ambiental (REGET) - Universidade Federal de Santa Maria (UFSM)false
dc.title.none.fl_str_mv System for measuring the production CO2 in soil contaminated with soybean oil using the Arduino platform
title System for measuring the production CO2 in soil contaminated with soybean oil using the Arduino platform
spellingShingle System for measuring the production CO2 in soil contaminated with soybean oil using the Arduino platform
Jorge, Emanuele Nunes de Lima Figueiredo
title_short System for measuring the production CO2 in soil contaminated with soybean oil using the Arduino platform
title_full System for measuring the production CO2 in soil contaminated with soybean oil using the Arduino platform
title_fullStr System for measuring the production CO2 in soil contaminated with soybean oil using the Arduino platform
title_full_unstemmed System for measuring the production CO2 in soil contaminated with soybean oil using the Arduino platform
title_sort System for measuring the production CO2 in soil contaminated with soybean oil using the Arduino platform
author Jorge, Emanuele Nunes de Lima Figueiredo
author_facet Jorge, Emanuele Nunes de Lima Figueiredo
Farias, Claudio Miceli de
Costa, Gabriel Martins de Oliveira
França, Tiago Cruz de
Pereira, Mário Sérgio de Souza
Carvalho, Marcelo Dolores de
Thode Filho, Sérgio
author_role author
author2 Farias, Claudio Miceli de
Costa, Gabriel Martins de Oliveira
França, Tiago Cruz de
Pereira, Mário Sérgio de Souza
Carvalho, Marcelo Dolores de
Thode Filho, Sérgio
author2_role author
author
author
author
author
author
dc.contributor.author.fl_str_mv Jorge, Emanuele Nunes de Lima Figueiredo
Farias, Claudio Miceli de
Costa, Gabriel Martins de Oliveira
França, Tiago Cruz de
Pereira, Mário Sérgio de Souza
Carvalho, Marcelo Dolores de
Thode Filho, Sérgio
description Carbon dioxide (CO2), also known as carbonic gas, is a gaseous chemical compound. The process of the degradation  of vegetable oil in the soil produces CO2. There are methodologies that consist in determining the rate of CO2 released by microorganisms in the process of degradation of organic compounds by chemical analysis. However, it is not easy to measure the amount of CO2 released in this degradation process. Thus, the main objective of this work was to monitor in a continuous, quantitative and efficient way, through an automated and low cost system that uses the Arduino platform the amount of CO2 produced in the degradation of vegetable oil in a contaminated soil. The results show the mean values of CO2 capture as a function of the different periods of analysis. Thus, the development of work with automated systems that aid in agricultural environments becomes extremely important for the growth in the areas of Technological Innovation.
publishDate 2017
dc.date.none.fl_str_mv 2017-10-30
dc.type.driver.fl_str_mv info:eu-repo/semantics/article
info:eu-repo/semantics/publishedVersion
format article
status_str publishedVersion
dc.identifier.uri.fl_str_mv https://periodicos.ufsm.br/reget/article/view/29709
10.5902/2236117029709
url https://periodicos.ufsm.br/reget/article/view/29709
identifier_str_mv 10.5902/2236117029709
dc.language.iso.fl_str_mv eng
language eng
dc.relation.none.fl_str_mv https://periodicos.ufsm.br/reget/article/view/29709/pdf
dc.rights.driver.fl_str_mv Copyright (c) 2017 Electronic Journal of Management, Education and Environmental Technology (REGET)
info:eu-repo/semantics/openAccess
rights_invalid_str_mv Copyright (c) 2017 Electronic Journal of Management, Education and Environmental Technology (REGET)
eu_rights_str_mv openAccess
dc.format.none.fl_str_mv application/pdf
dc.publisher.none.fl_str_mv Universidade Federal de Santa Maria
publisher.none.fl_str_mv Universidade Federal de Santa Maria
dc.source.none.fl_str_mv Revista Eletrônica em Gestão, Educação e Tecnologia Ambiental; REGET, V. 21, 2017, SPECIAL EDITION: FEDERAL INSTITUTE OF EDUCATION, SCIENCE AND TECHNOLOGY OF RIO DE JANEIRO – IFRJ – RJ; 01-07
Revista Eletrônica em Gestão, Educação e Tecnologia Ambiental; REGET, V. 21, 2017, EDIÇÃO ESPECIAL: INSTITUTO FEDERAL DE EDUCAÇÃO, CIÊNCIA E TECNOLOGIA DO RIO DE JANEIRO – IFRJ – RJ; 01-07
2236-1170
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