Technological Mapping for the Development of a System for Assessing Environmental Impacts Based on the Leopold Matrix

Authors

DOI:

https://doi.org/10.9771/cp.v14i3.42966

Keywords:

Environmental Impact Assessment, Leopold Matrix, Decision Making.

Abstract

Environmental conservation is a world priority and, in addition to being a vital factor, has become a legal issue, with laws for project designers with activities potentially impacting the environment. The legislation requires a careful environmental impacts assessment to be carried out, including the preparation of specific technical reports, which detail the analysis made by specialist professionals. The objective of this work is to elaborate a Technological Roadmap from the survey of patent families, software records and published works referring to the assessment of environmental impacts based on the Leopold Matrix. The survey is made on several search platforms and its results are compiled and analyzed. The conclusion indicates the feasibility of the environmental impacts assessment system with benefits for all agents involved in projects, making information available in a precise, complete and fast way, providing the necessary support for decision making.

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Author Biographies

Roberto Tenório Figueiredo, Petrolina College, Petrolina, PE, Brazil

He is a doctoral candidate in Agroecology and Territorial Development. He holds a Master's degree in Computing from the Federal University of Pernambuco, a degree in Computer Science from the Catholic University of Pernambuco (2001), where he obtained a university degree and a Specialization in Software Engineering from the Faculty of Petrolina, where he also obtained a university degree. He is currently an assistant professor at the Faculty of Applied and Social Sciences of Petrolina. Has experience in Computer Science, with emphasis on Electronic Games, Operating Systems and Formal Languages.

Vivianni Marques Leite dos Santos, Federal University of the São Francisco Valley, Petrolina, PE, Brazil

Chemical Engineer MSc Chemical Engineering DSc Chemistry Coordinator and Professor of the PROFNIT/UNIVASF - Professional Master in Intellectual Property and Technology Transfer for Innovation. Member Professor - Doctorate in agroecology and territorial development Professor of the Collegiate of Production Engineering Coordinator of the Laboratory of Chemical Processes vivianni.santos@univasf.edu.br vivianni@pq.cnpq.br vivianni.santos@gmail.com nit@univasf.edu.br nit.univasf@gmail.com profnit@univasf.edu.br

Jorge Luis Cavalcanti Ramos, Federal University of the São Francisco Valley, Petrolina, PE, Brazil

Graduated in Electrical Engineering from the University of Pernambuco (1992), with a specialization in Informatics in Education from the Federal University of Lavras-MG (2001). He holds a master's degree (2006) and a doctorate (2016) in Computer Science from the Federal University of Pernambuco (UFPE). He was a professor, coordinator of the Computer Science course and director of a Center at FACAPE. He is Adjunct Professor of the Computer Engineering Course at the Federal University of Vale do São Francisco (UNIVASF), where he has served as Dean of Education. He is a professor of the Professional Masters in Public Administration (PROFIAP) and the Professional Doctorate in Agroecology and Territorial Development (PPGADT) also at UNIVASF. He has experience in the areas of Computer-Mediated Distance Learning (e-learning), Educational Data Mining and IT applied to public management. He is a researcher at the Laboratory of Analytical Evidence in Educational Technologies - EVANTE (http://evante.com.br) and member of the organizing committee of the Educational Data Science Workshop (WCDE/SBC).

References

AKTOUF, O. Governança e pensamento estratégico: uma crítica a Michel Porter. RAE – Revista de Administração de Empresa, São Paulo, v. 42, n. 3, p. 43-57, 2002. ISSN 2178-938X.

ARAZ, Khachatrian; LEWIS, S. Snow; SUDHENDU, Rai. System for assessing environmental impact of processing print jobs. A1. Data da 1ª Prioridade: 16 jun. 2011. US20110145085.

BATISTA, Ivaniza S. et al. Avaliação de Impactos Ambientais. In: XVII SIMPÓSIO BRASILEIRO DE GEOGRAFIA FÍSICA APLICADA, Campinas, 2017, p. 7.188-7.199. Anais [...]. Campinas, 2017.

BORSCHIVER, S.; SILVA, A. L. R. Technology roadmap: Planejamento Estratégico para alinhar Mercado-Produto-Tecnologia. Rio de Janeiro: Interciência, 2016.

BRASIL. Constituição da República Federativa do Brasil. Brasília, DF: Senado Federal, 1988.

BRASIL. Lei n. 6.938, de 31 de agosto de 1981. Dispõe sobre a Política Nacional do Meio Ambiente, seus fins e mecanismos de formulação e aplicação, e dá outras providências. Disponível em: http://www.planalto.gov.br/ccivil_03/leis/l6938.htm. Acesso em: 6 maio 2021.

CAPES/MEC. Portal de Periódicos CAPES/MEC. Portal de Periódicos CAPES/MEC, 2020. Disponível em: https://www.periodicos.capes.gov.br/. Acesso em: 2 abr. 2020.

CHRISTOPHER. Scofield. Assessing environmental impact of vehicle transit. Data da 1ª Prioridade: 27 fev. 2015. EP3113998.

CONAMA – CONSELHO NACIONAL DO MEIO AMBIENTE. Resolução do Conselho Nacional do Meio Ambiente N. 001. Diário Oficial da União, Brasília, DF, 17 fev. 1986.

DAGNINO, Ricardo de Sampaio; CARPI JUNIOR, Salvador. Risco Ambiental: Conceitos e Aplicações. Climatologia e Estudos da Paisagem, Rio Claro, v. 2, n. 2, p. 50, 2007. ISSN 1980-654X.

DEZHONG, Ma; KAI, Wang. Intelligent electric energy meter failure mechanism and condition monitoring system and method. Data da 1ª Prioridade: 27 ago. 2019. CN110531302.

ECONSERVATION. Avaliação dos Impactos Ambientais. Vitória: Econservation, Estudos e Projetos Ambientais., 2017. (RT ECV 057/17).

ELSEVIER. Scopus. Scopus Preview, 2020. Disponível em: https://www.scopus.com/. Acesso em: 2 abr. 2020.

ENRÍQUEZ-DE-SALAMANCA, Álvaro. Stakeholders' manipulation of Environmental Impact Assessment. Environmental Impact Assessment Review, Amsterdã, v. 68, p. 10-18, jan. 2018. ISSN 0195-9255.

FRITZ, F. Ebner. Method and system for assessing environmental impact of a processing device. A1. Data da 1ª Prioridade: 18 abr. 2013. US20130096893.

GALHARTE, Caroline Alves; CRESTANA, Silvio. Avaliação de Impactos Ambientais da integração lavoura-pecuária: Estudo de Caso da inovação tecnológica da EMBRAPA. 2007. 121p. Dissertação (Mestrado) – Escola de Engenharia de São Carlos, São Carlos, 2007.

GOVERNO DIGITAL. Software Público, 2020. Disponível em: https://www.gov.br/governodigital/pt-br/software-publico. Acesso em: 2 abr. 2020.

HIDEKI, Noda et al. Environmental impact assessment system and environmental impact assessment method. Data da 1ª Prioridade: 6 set. 2005. JP2007072708A.

HIDEKI, Noda; TAKENORI, Kobayashi. Environmental impact assessment system, environmental impact assessment method and environmental impact assessment program. Data da 1ª Prioridade: 24 mar. 2010. JP2011203832A.

INPI – INSTITUTO NACIONAL DA PROPRIEDADE INDUSTRIAL. Site do Instituto Nacional da Propriedade Industrial/Ministério da Economia, 2020. Disponível em: <http://www.inpi.gov.br/>. Acesso em: abr. 2020.

JAY, Stephen et al. Environmental impact assessment: Retrospect and prospect. Environmental Impact Assessment Review, Amsterdã, p. 287-300, maio de 2007.

JINXIU, Yang et al. Method for analyzing whether water-bearing strata are polluted by hydraulic fracturing or not by aid of gas and liquid mixed tracers. A. Data da 1ª Prioridade: 30 nov. 2018. CN108915674.

JOSIMOVIC, B.; PETRIC, J.; MILIJIC, S. The Use of the Leopold Matrix in Carrying Out the EIA for Wind Farms in Serbia. Energy and Environment Research, Richmond Hill, v. 4, n. 1, 2014. ISSN 1927-0577.

JUAN, Li. Interactive control method and device, electronic equipment and storage medium. Data da 1ª Prioridade: 7 maio 2019. CN110053629A.

KAZUYA, Matsumura; OSAMU, Mito. Environmental impact assessment system, environmental impact assessment program and recording medium. Data da 1ª Prioridade: 09 mar. 2010. JP2011186798A.

KOICHI, Shobatake. Information search method, information search program, and information search system. Data da 1ª Prioridade: 28 set. 2015. JP2017068362A.

LIU, Yang. Hospital environmental influence factor assessment method. Data da 1ª Prior.:12 jul. 2019. CN110348738A.

MARAÑÓN, Alina González; MULGADO, Israel Palacios; RODRÍGUEZ, Arelis Ábalos. Impacto ambiental del vertido de residuales en la cuenca hidrográfica Guaos-Gascón de Santiago de Cuba. Revista Cubana de Química, Santiago de Cuba, v. 32, n. 1, 2020.

MMA – MINSTÉRIO DO MEIO AMBIENTE. Caderno de Licenciamento Ambiental. Brasília, DF: MMA. 2009.

PANU, Pasanen. Computer implemented method for generating sustainable performance and environmental impact assessment for target system. Data da 1ª Prioridade: 8 jun. 2017. US20180357144A1.

PETRINA, Raitt. A computing device, computer implemented method and computer readable storage medium for the generation of hierarchical data structure environmental impact assessment reports. Data da 1ª Prioridade: 30 set. 2014. WO201649697A1.

PIMENTEL, G.; PIRES, S. H. Metodologias de avaliação de impacto ambiental: aplicações e seus limites. Revista de Administração Pública, Rio de Janeiro, p. 56-68, 1992.

QUESTEL. Orbit Intelligence. Orbit Intelligence. [2020]. Disponível em: https://www.orbit.com/. Acesso em: 2 abr. 2020.

SANGUINETTO, Evandro. Avaliação de Impactos Ambientais (AIA), Avaliação Ambiental Estratégica (AAE) e Sustentabilidade em Minas Gerais. Revista Labor & Engenho, Campinas, v. 5, n. 3, p. 100-120, 2011. ISSN 2176-8846.

SATORU, Ishida. Environmental impact assessment system. Data da 1ª Prioridade: 17 mai. 2004. JP2005327182A.

SATORU, Ishida; SASAKI, Tasayo; MIYUKI, Kawada. Environmental impact assessment method and environmental impact assessment apparatus. Data da 1ª Prioridade: 28 fev. 2003. JP2004265012A.

SCIELO. SciELO – Scientific Electronic Library Online. SciELO – Scientific Electronic Library Online, 2020. Disponível em: https://scielo.org/. Acesso em: 2 abr. 2020.

SHINSUKE, Iihashi; YUICHIRO, Takei; TOMOMI, Nagao. Environmental impact assessment system and method. Data da 1ª Prioridade: 3 jun. 2014. JP2015228196A.

STAMM, Hugo Roger. Método para Avaliação de Impacto Ambiental (AIA) em projetos de grande porte: Estudo de caso de uma usina termelétrica. 2003. 284p. Tese (Doutorado em Engenharia de Produção) – Programa de Pós-Graduação em Engenharia de Produção, Universidade Federal de Santa Catarina, Florianópolis, 2003.

TOMOMI, Nagao et al. Ict solution environmental impact assessment system and method. Data da 1ª Prioridade: 10 ago. 2012. JP2014035725A.

WEIJUN, Wang et al. Equivalent conversion evaluation method for full-life-cycle environmental cost of project. Data da 1ª Prioridade: 28 out. 2016. CN106408214A.

Published

2021-07-01

How to Cite

Figueiredo, R. T., Santos, V. M. L. dos, & Ramos, J. L. C. (2021). Technological Mapping for the Development of a System for Assessing Environmental Impacts Based on the Leopold Matrix. Cadernos De Prospecção, 14(3), 914. https://doi.org/10.9771/cp.v14i3.42966

Issue

Section

Prospecções Tecnológicas de Assuntos Específicos