Please use this identifier to cite or link to this item: https://rima.ufrrj.br/jspui/handle/20.500.14407/10565
Full metadata record
DC FieldValueLanguage
dc.contributor.authorSimões, Bruna Faria
dc.date.accessioned2023-12-22T01:39:35Z-
dc.date.available2023-12-22T01:39:35Z-
dc.date.issued2015-02-26
dc.identifier.citationSIMÕES, Bruna Faria. Ensaios ecotoxicológicos como auxílio na determinação de valores orientadores para cobre e chumbo. 2015. 49 f. Dissertação (Mestrado em Agronomia - Ciência do Solo) - Instituto de Agronomia, Universidade Federal Rural do Rio de Janeiro, Seropédica, 2015.por
dc.identifier.urihttps://rima.ufrrj.br/jspui/handle/20.500.14407/10565-
dc.description.abstractA contaminação de solos por metais pesados requer que haja medidas compensatórias e de prevenção. O CONAMA (2009) estabeleceu valores orientadores que determinam as concentrações de substâncias do solo que não causam alteração nas funções básicas exercida pelo solo. Um dos instrumentos que pode auxiliar na determinação desses valores são os ensaios ecotoxicológicos. Este estudo verificou as concentrações de chumbo e cobre que causam alteração no desenvolvimento da Eisenia andrei e no Folsomia candida e comparou os resultados obtidos com os valores propostos pelo CONAMA (2009). Foram utilizados três solos de diferentes características físicas e químicas enontrados no Estado do Rio de Janeiro. Os metais Cobre e Chumbo foram adicionados ao solo em diferentes concentrações. Foram feitos ensaios de fuga, letalidade e reprodução para Eisenia andrei e reprodução e letalidade para Folsomia candida. No ensaio de cobre com Eisenia andrei foi encontrado valor de CE50 para Planossolo e Argissolo de 28 e 61 mg.kg-1, respectivamente, para Latossolo não foi possível calcular. Também foi obtido para o mesmo metal uma CL50 para Planossolo, Latossolo e Argissolo de 435, 690 e 691 mg.kg-1, respectivamente. No ensaio com chumbo, utilizando E. andrei, uma CE50 para Planossolo e Argissolo de 14 e 54 mg.kg-1, respectivamente, não sendo possível calcular esse valor para Latossolo. Foi calculado uma CL50, com o mesmo metal, para Planossolo, Latossolo e Argissolo de 437, 1825, 1869 mg.kg- 1, respectivamente. Diferentemente o Folsomia candida apresentou para o cobre no Planossolo, Latossolo e Argissolo CE50 117, 299, 138, mg.kg-1 , respectivamente. Nos ensaios com chumbo para o Folsomia candida, foi encontrado uma CE50 552 e 782 mg.kg-1 para Planossolo e Argissolo respectivamente. Não foi possível calcular os resultados para o Latossolo. No Planossolo contaminado com chumbo a Folsomia candida teve uma CL50 762 mg.kg-1, nos outros solos não foi possível calcular esse valor. Em cada solo foi obtido um valor de CE50 diferente. A Eisenia andrei foi mais sensível aos metais que o Folsomia candida. A sensibilidade dos organismos à contaminação foi maior no Planossolo, apresentando valores de CE50 e CL50 mais baixos em todos os ensaios. As concentrações de metais que causam alteração na fauna do solo diferem das concentrações sugeridas pelo CONAMA (2009).por
dc.description.sponsorshipCNPq - Conselho Nacional de Desenvolvimento Científico e Tecnológicopor
dc.formatapplication/pdf*
dc.languageporpor
dc.publisherUniversidade Federal Rural do Rio de Janeiropor
dc.rightsAcesso Abertopor
dc.subjectFolsomia cândidapor
dc.subjectEisenia Andreipor
dc.subjectContaminação do Solopor
dc.subjectEisenia Andreieng
dc.subjectFolsomia cândidaeng
dc.subjectEcotoxicologyeng
dc.titleEnsaios ecotoxicológicos como auxílio na determinação de valores orientadores para cobre e chumbopor
dc.title.alternativeAssay as ecotoxicological aid in the determination of guiding values for copper and leadeng
dc.typeDissertaçãopor
dc.description.abstractOtherThe heavy metal contamination of soils requires compensatory and preventive measures. CONAMA (2009) established soil screen levels (valor’s guides) which determine the soil concentrations of substances that causes no change in its function. One of the tools that can help in determining these values are the ecotoxicological tests. This study tested metal concentrations that cause change in Eisenia andrei and Folsomia candida and compared the results with the values proposed by CONAMA (2009). It was used three soils of different physical and chemical characteristics located on the state of Rio de Janeiro. The copper and lead were added in soils at different concentrations. Were made Avoidance tests, mortality and reproduction to Eisenia andrei and reproduction and mortality for Folsomia candida. To Eisenia andrei was found for Planossolo and Argissolo an EC50 value 28 and 61 mg.kg-1, respectively, Latossolo could not be calculated. For same metal it got for Planossolo, Latossolo and Argissolo LC50 435, 690 and 691 mg.kg-1, respectively. To lead it was found for Planossolo and Argissolo an EC50 14 and 54 mg.kg-1, respectively, it was not possible to calculate for Latossolo, and LC50 for Planossolo, Latossolo and Argissolo of 437, 1825, 1869 mg.kg-1, respectively. Unlike the Folsomia candida presented an EC50 for copper in Planossolo, Latossolo and Argissolo of 117, 299, 138, mg.kg-1, respectively. In tests with lead for Folsomia candida, was found an EC50 of 552, 782 mg.kg-1 for Planossolo and Argissolo respectively. Could not calculate the results for the Latossolo. In Planossolo contaminated by lead Folsomia candida had a LC50 762 mg.kg-1, the other soils could not be calculated. Each soil was obtained a different EC50 value. The Eisenia Andrei was more sensitive to the metal than Folsomia candida. The Planossolo was the most restrictive soil to contamination, with EC50 and LC50 values lower in all tests. The concentrations of metals that cause changes in soil fauna are different from concentrations suggested by CONAMA (2009).eng
dc.contributor.advisor1Mazur, Nelson
dc.contributor.advisor1ID385.266.467-53por
dc.contributor.advisor1Latteshttp://lattes.cnpq.br/6933810980587122por
dc.contributor.advisor-co1Correia, Maria Elizabeth Fernandes
dc.contributor.referee1Niemeyer, Julia Carina
dc.contributor.referee2Amaral Sobrinho, Nelson Moura Brasil do
dc.creator.ID134.831.607-10por
dc.creator.Latteshttp://lattes.cnpq.br/8543835723819761por
dc.publisher.countryBrasilpor
dc.publisher.departmentInstituto de Agronomiapor
dc.publisher.initialsUFRRJpor
dc.publisher.programPrograma de Pós-Graduação em Agronomia - Ciência do Solopor
dc.relation.referencesALLOWAY,B.J. The Science of the Total Environment Chapter 4: Metal Availability. Elsevier Science Publishers B.V., Amsterdam. Printed in The Netherlands, 75, 1988, 41-69p. AMARAL SOBRINHO, N. M. B.; BARRA, C. M.; LÃ, O. R. Química dos metais pesados no solo. In: Química e Mineralogia do Solo, Parte II – Aplicações, 685p. MELO, V. F. E ALLEONI, L. R. F. (eds.), SBCS, Viçosa, 2009. AMORIM, M.J.B. ROMBKE, J. SCHEFFCZYK, A. SOARES, A.M.V.M. Enchytraeus albidus and Enchytraeus luxuriosus using the herbicide Phenmedipham. Chemosphere v61 . 2005. 1102–1114p ANDRADE, A. M. S. Estudo sobre a biologia de Macrothrix elegans Sars (1901) (Crustacea: Anomopoda) e uma avaliação sobre sua sensibilidade ao dicromato de potássio (K2Cr2O7). Instituto de Biologia, Salvador, BA, UFBA, 2003. 49p. ANDREIA, M. M. O uso de minhocas como bioindicadores de contaminação de solos. Acta Zoológica Mexicana (n.s.), Número Especial 2: 2010. 95-107p. ANDREIA, M.M. Biodindicadores ecotoxicológicos de Agrotoxicos. São Paulo, Instituto Biologico. (Instituto Biologico, Comunicado Técnico, 83) 2008. ANTONIOLLI, Z.I., RENDIN, M., SOUZA, E.L., POCOJESKI, E. Metais Pesados, Agrotóxicos e Combustíveis: Efeito na População de Colêmbolos no Solo. Ciência Rural, Santa Maria, v.43, n.6, jun, 2013. 992-998p. BARCELOUX, D.G. Copper. Clinical Toxicology, 37(2):217 .1999 BEYER, W.N., CROMARTIE, E.J., A survey of Pb, Cu, Zn, Cd, Cr, As and Se in earthworms and soil from diverse sites. Environ. Monit. Assess. 8, 1987. 27-36p. BIANCHI, M. O. CORREIA, M.E.F. RESENDE A.S. CAMPELLO E.F.C. Importancia dos estudos ecotoxicológicos com invertebrados do solo. Embrapa Agrobiologia, Série documentos 266. 32p. 2010 BIANCHI, M. O. Ensaios Ecotoxicológicos como Ferramenta para Avaliação do Impacto Ambiental de Resíduos de Mineração Sobre o Solo. 2013. 141f. Tese (Doutorado em Agronomia, Ciência do Solo). Instituto de Agronomia, Departamento de Solos, Universidade Federal Rural do Rio de Janeiro, Seropédica, RJ, BRADHAM, K.D. DAYTON, E.A. BASTA, N.T. SCHRODER, J. PAYTON, M. Effect of soil properties on lead bioavailability and toxicity to earthworms. Environmental Toxicology and Chemistry, Vol. 25, No. 3, 2006. 769–775p. BRUUS PEDERSEN, M. VAN GESTEL, C.A.M. and ELMEGAARD, N. effects of copper on reproduction of two Collembolan species exposed through soil, food, and water. Environmental Toxicology and Chemistry, Vol. 19, No. 10, 2000. . 2579–2588p. 42 BURROWS, L.A., EDWARDS, C.A. The use of integrated soil microcosms to predict effects of pesticides on soil ecosystems. European Journal of Soil Biology, 38. 2002. 245-249p. CARVALHO, A. E. F.; LEONEL, L. F.; MATSUBARA, K. G.; SILVA, E. M. F.; SASAKI, T. H.; MONZANE, P. V. G. Avaliação ecotoxicológica de ecossistemas aquáticos da bacia hidrográfica do rio Itaqueri (Itirapina/Brotas, SP): uma análise espacial. In: VI Congresso de Meio Ambiente da AUGM, São Carlos. Anais de Eventos da Ufscar, v.5. 2009. COMPANHIA AMBIENTAL DO ESTADO DE SÃO PAULO, CETESB, FIT (Ficha de Informação Toxicológica), Chumbo e seus compostos. 2012a COMPANHIA AMBIENTAL DO ESTADO DE SÃO PAULO CETESB, FIT (Ficha de Informação Toxicológia) Cobre e seus compostos. 2012b. COMPANHIA AMBIENTAL DO ESTADO DE SÃO PAULO CETESB, Relatório de estabelecimento de Valores Orientadores para Solos e Águas Subterrâneas no Estado de São Paulo. / Dorothy C. P. Casarini, Claudio Luiz Dias, Alfredo Carlos Cardoso Rocca, Mara Magalhães Gaeta Lemos, Edson Rogério Batello, Juliana Gaiba de Almeida, Andreia Capeleti, Marisa Cury, Ana Cristina Truzzi - -São Paulo, Biblioteca, 2001 COMPANHIA AMBIENTAL DO ESTADO DE SÃO PAULO CETESB, Valores Orientadores para Solos e Águas Subterrâneas no Estado de São Paulo. São Paulo: CETESB; 2005. Disponível em < http://www.cetesb.sp.gov.br/Solo/relatorios/ tabela_valores_2005.pdf>. Acesso em 15 de julho de 2012 CHAVES, L. H. G.; BRITO, M. E. B.;CARVALHO, A. P.; DANIEL, R.; RIBEIRO, S.; SANTOS, R. T. Adsorção de cobre em amostras de Plintossolo do Estado do Piauí, com diferentes características. R. Bras. Eng. Agríc. Ambiental, v.13, n.3, 2009. 226–232p. CIKUTOVIC, M.A., FITZPATRICK, L.C., VENABLES, B.J., GOVEN, A.J. Sperm count in earthworms (Lumbricus terrestris) as a biomarker for environmental toxicology: effects of cadmium and chlordane. Environ. Pollut. 81, 1993. 123-125p. CONSELHO NACIONAL DE MEIO AMBIENTE , CONAMA, Resolução CONAMA Nº 420 de dezembro de 2009. Disponivel em : http://www.mma.gov.br/port/conama/legiabre.cfm?codlegi=620. Acessado em 22 de junho de 2012. CORP, N., MORGAN, A.J., Accumulation of heavy metals from polluted soils by the earthworm, Lumbricus rubellus: can laboratory exposure of ‘control’ worms reduce biomonitoring problems? Environ. Pollut. 74. 1991. 39-52p. COSTA, C. R.; OLIVI, P.; BOTTA, C. M. R.; ESPÍNDOLA, E. L. G.. A toxicidade em Ambientes Aquáticos: discussão e métodos de Avaliação. Quim. Nova, Vol. 31, No. 7, 2008. 1820-1830p. COX, D.W. Disorders of copper transport. British Medical Bulletin, 55(3),1999. 544–555p. 43 CROUA, Y. MOIA, C. Rapid communication: The relative sensitivity of growth and reproduction in the springtail, Folsomia candida, exposed to xenobiotics in the laboratory: An indicator of soil toxicity, Ecotoxicology and Environmental Safety 64, 2006. 115–121p. DEMUYNCK, S. GRUMIAUX, F. MOTTIER, V. SCHIKORSKI, D. LEMIÈRE, S. LEPRÊTRE, A. Cd/zn exposure interactions on metallothionein response in eisenia fetida(annelida, oligochaeta). Comparative biochemistry and physiology, part c 145, 2007. 658–668p. DIDDEN, W.A.M. Ecology of terrestrial Enchytraeidae. Pedobiologia 37, 2–29; 1993 ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY, Author Information pack 14 Mar 2012 www.elsevier.com/locate/ecoenv, 2012 EMBRAPA, Centro de Pesquisas de Solos. Manual de métodos de análise de solo. 2. ed. atual. Rio de Janeiro, 212p. (EMBRAPA CNPS. Documentos; 1) 1997. ENVIRONMENTAL PROTECTION AGENCY, EPA, Effect of pH, DIC, orthophosphate and sulfate on drinking water cuprosolvency.Washington, DC, US Environmental Protection Agency, Office of Research and Development (EPA/600/R-95/085). 1995. ENVIRONMENTAL PROTECTION AGENCY , EPA, Office of solid waste and emergency response, 168p. mais apêndices. (EPA/540/R-95/128, 1996. ENVIRONMENTAL PROTECTION AGENCY , EPA, Thecnical background document for soil screening guidance. Draft review. Washington DC :EPA, pi. (EPA/540/R-94/106), 1994. EUROPEAN COMMUNITY, Council Directive 91/689/EEC of 12 December 1991 on hazardous waste. Official Journal of the European Communities. L. Legis 1991; 377: 0020 – 0027, 1991. EUROPEAN COMMUNITY. Commission Decision 94/3/EC of 20 December 1993 establishing a list of wastes pursuant to Article 1a of Council Directive 75/442/EEC on waste. Official Journal of the European Communities. L, Legis 1993; 005: 0015 – 33 [07/01/1994].1993. EUROPEAN COMMUNITY. Council Decision 94/904/EC of 22 December 1994 establishing a list of hazardous waste pursuant to Article 1 (4) of Council Directive 91/689/EEC on hazardous waste. Official Journal of the European Communities. L, Legis 1994; 356: 0014 – 22 [31/12/1994], 1994. FIERA, C. Biodiversity of Collembola in urban soils and their use as bioindicators for pollution. Pesq. agropec. bras., Brasília, v.44, n.8, ago. 2009. 868-873p. FITZPATRICK, L.C., MURATTI-ORTIZ, J.F., VENABLES, B.J., GOVEN, A.J., Comparative toxicity in earthworms Eisenia fetida and Lumbricus terrestri sex-posed to cadmium nitrate using artificial soil and filter paper protocols. Bull. Environ. Contam. Toxicol. 57, 1996. 63-68p 44 HOFFMAN DJ, RATTER BA, BURTON GA JR, CAIRNS J JR: Handbook of Ecotox-icology. Boca Raton, FL: Lewis/CRC, 1995 HOPKIN, S.P. Biology of the Springtails (Insecta: Collembola). Oxford University Press, Oxford, United Kingdom. 1997 IAP. Instituto Ambiental do Paraná. Manual de metodos para avaliação da toxicidade. Curitiba, 101p, 1997. IOM. Dietary reference intakes for vitamin A, vitamin K, arsenic, boron, chromium, copper, iodine, iron, manganese, molybdenum, nickel, silicon, vanadium and zinc. A report of the Panel on Micronutrients, Subcommittees on Upper Reference Levels of Nutrients and of Interpretation and Use of Dietary Reference Intakes, and the Standing Committee on the Scientific Evaluation of Dietary Reference Intakes. Food and Nutrition Board, Institute of Medicine. Washington, DC, National Academy Press. 2001. ISO. Soil quality - Avoidance test for determining the quality of soils and effects of chemicals on behaviour - Part 2: Test with Collembolans (Folsomia candida) ISO 17512-2, International Stadard Organization, Geneva, 2008. ISO. Soil quality – avoidance test for testing the quality of soils and the of chemicals – test with earthworms (Eisenia andrei). International Standard Organization Guideline No. 17512-1. 2006. ISO. Soil quality – Effects of pollutants on earthworms (Eisenia andrei). Part 2. Determination of Effects on Reproduction. ISO 11268-2, International Standard Organization, Geneva. 1997. ISO. Soil quality — effects of pollutants on Enchytraeidae (Enchytraeus sp.). Determination of effects on reproduction and survival. Switzerland: Geneva; ISO 16387, 2003. ISO. Soil quality – Inhibition of reproduction of Collembola (Folsomia candida) by soil pollutants. ISO 11267, International Standard Organization, Geneva. 1998. JANSCH, S. AMORIM, M.J.B. ROMBKE, J. Identification of the ecological requirements of important terrestrial ecotoxicological test species. Environ Rev13, 2005. 63-68p. JANSSEN, R.P.T., POSTHUMA, L., BAERSELMAN, R., DEN HOLLANDER, H.A., VAN VEEN, R.P.M., PEIJNENBURG, W.J.G.M. Equilibrium partitioning of heavy metals in Dutch field soils. II. Prediction of metal accumulation in earthworms. Environ. Toxicol. Chem. 16, 1997. 2479-2488p. JOOSSE, E.N.G., VERHOEFF, S.C. Lead tolerance in Collembola. Pedobiologia 25, 1983. 11–18p. KABATA-PENDIAS, A. PENDIAS, H. Trace elements in soil and plants. 3 Ed. Boca Raton, CRC Press 2001, 413p. KENDALL RJ, LACHER TE JR (eds):Wildlife Toxicology and Population Mod-eling. Integrated Studies of Agroecosystems.Chelsea, MI: Lewis, 1994. 45 KHALIL, M.A., ABDEL-LATEIF, H.M., BAYOUMI, B.M., VAN STRAALEN, N.M., Analysis of separate and combined effects of heavy metals on the growth of Aporrectodea caliginosa (Oligochaeta; Annelida), using the toxic approach. Appl. Soil Ecol. 4. 1996. 213- 219p. LANDNER, L., LINDESTROM L. Copper in society and in the environment.Vasteras, Swedish Environmental Research Group (MFG) (SCDA S-721 88), 1999. LANGDON, C.J., HODSON, M.E., ARNOLD, R.E., BLACK, S., Survival, Pb-uptake and behaviour of three species of earthworm in Pb treated soils determined using an OECD-style toxicity test and a soil avoidance test. Environmental Pollution, 138, 2005. 368-375p. LANGDON, C.J., PIEARCE, T.G., MEHARG, A.A., SEMPLE, K.T., Resistance to copper toxicity in populations of the earthworms Lumbricus rubellus and Dendrodrilus rubidus from contaminated mine wastes. Environmental Toxicology Chemistry 20 (10). 2001. 2336-2341p LIMA, A.C. Ordem Collembola, 45-53. Insetos do Brasil. Rio de Janeiro, Editora Escola Nacional de Agronomia, 470p. 1938 LIU, X. CHENGXIAO, H. ZHANG, S. Effects on earthworm activity on fertility and heavy metals bioavaibility in sewage sludge. Enviroment International, Amsterdam, v 31, 2005. 874-879p. LOCK, K. COLIN R. JANSSEN, and. DECOEN, W. M. Multivariate test designs to assess the influence of zinc and cadmium bioavailability in soils on the toxicity to enchytraeus albidus. Environmental Toxicology and Chemistry, Vol. 19, No. 11, 2000. 2666–2671p. LOCK, K., JANSSEN, C.R., Cadmium toxicity for terrestrial invertebrates: taking soil parameters affecting the bioavailability into account. Ecotoxicology 10. 2001. 315-322p. LOUREIRO, S.. SOARES, A.M.V.M. NOGUEIRA, A.J.A. Terrestrial avoidance behaviour tests as screening tool to assess soil contamination. Environmental Pollution, 138. 2005. 121- 131p. LUKKARI, T. AATSINKI, M. VAISANEN, A. HAIMI, J.toxicity of copper and zinc assessed with three Different earthworm tests. Applied soil ecology, 30. 2005. 133–146P LUZA SC, SPEISKY HC. Liver copper storage and transport during development: implications for cytotoxicity. American Journal of Clinical Nutrition, 63, 1996. 812–820p. MA, W., EDELMAN, T., VAN BEERSUM, I., JANS, T. Uptake of cadmium, zinc, lead, copper by earthworms near a zinc-smelting complex: influence of soil pH and organic matter. Bull. Environ. Contam. Toxicol. v30, 1983, 424-427p. MA, W.C., Toxicity of copper to lumbricid earthworms in sandy agricultural soils amended with Cu-enriched organic waste materials. Ecol. Bull. 39, 1988. 53-56p. MARTINEZ, C.E. MOTTO, H.L. Solubility of lead, zinc and copper added to mineral soils. Environmental Pollution, v107. 2000. 153-158p. 46 MARTINS, S. C. Adsorção e dessorção de Cu em solos com aplicação de lodo de esgoto e calda bordalesa. 2005. Dissertação (Mestrado em Agronomia – Solos e Nutrição de Plantas). Escola Superior de Agricultura Luiz de Queiroz, Piracicaba. MATTIAZZO-PREZOTTO, M.E. Comportamento de cobre, cádmio, cromo, níquel e zinco adicionados a solos de clima tropical em diferentes valores de pH. Piracicaba, SP, 1994. 197p. Tese (Livre Docência) -Escola Superior de Agricultura Luiz de Queiroz, Universidade de São Paulo, 1994. MORGAN, J.E., MORGAN, A.J., Earthworms as biological monitors of cadmium, copper, lead and zinc in metalliferous soils. Environ. Pollut. 54. 1988. 123-138p. NAHMANI, J. HODSON, M.E. BLACK, S.. A review of studies performed to assess metal uptake by earthworms. Environmental Pollution 145, 2007. 402-424p. NATAL-DA-LUZ, T. OJEDA, G. PRATAS, J. VAN GESTEL, C.A.M. SOUSA, J.P. Toxicity to eisenia andrei and folsomia candida of a metal mixture applied to soil directly or via an organic matrix. Ecotoxicology and Environmental Safety, 74. 2011b. 1715–1720p. NATAL-DA-LUZ, T. ROMBKER, J. SOUSA, J.P. Avoidance tests in site-specific risk assessment—influence of soil properties on the avoidance response of Collembola and Earthworms. Environmental Toxicology and Chemistry, Vol. 27, No. 5, 2008. 1112–1117p. NATAL-DA-LUZ, T.M.F. Integrated evaluation ofthe ecotoxicological risk of using sewage sludges in agriculture and in soil restoration. 2011a. Departamento de Ciências da Vida. Faculdade de Ciências e Tecnologia, Universidade de Coimbra. NEUHAUSER, E.F., LOEHR, R.C., MILLIGAN, D.L., MALECKI, M.R. Toxicity of metals to the earthworm Eisenia fetida. Biol. Fertil. Soils 1, 1985. 149-152p. NIEMEYER J. C., MOREIRA-SANTOS, M., NOGUEIRA M.A., CARVALHO, G.M., RIBEIRO, R., DA SILVA, E.M., SOUSA, J.P. Environmental risk assessment of a metal-contaminated area in the Tropics. Tier I: screening phase. Journal Soil Sediments, 2010. NURSITA, A.I. SINGH, B. LEES. E. the effects of cadmium, copper, lead, and zinc on the growth and reproduction of proisotoma minuta tullberg (Collembola). Ecotoxicology and Environmental Safety, 60. 2005. 306–314p. ORGANIZATION FOR ECONOMIC COOPERATION AND DEVELOPMENT, OECD - Guia para Testes Químicos – Proposal for a new guideline 220: Enchytraeidae Reproduction Test, Draft document, 2004b. ORGANIZATION FOR ECONOMIC COOPERATION AND DEVELOPMENT, OECDGUIDELINE FOR TESTING OF CHEMICALS. Earthworm reproduction test, 222. 2004a ORGANIZATION FOR ECONOMIC COOPERATION AND DEVELOPMENT, OECDGUIDELINE FOR TESTING OF CHEMICALS. Earthworm, Acute Toxicity Tests. 207. 1984 47 PEIJNENBURG, W.J.G.M., BAERSELMAN, R., DE GROOT, A.C., JAGER, T., POSTHUMA, L., VAN VEEN, R.P.M. Relating environmental availability to bioavailability: soil type dependent metal accumulation in the oligochaeta Eisenia andrei. Ecotoxicol. Environ. Safety 44, 1999. 294-310p. PETERSEN, H. General aspects of Collembolan ecology at the turn of the millennium. Pedobiologia. v46. 2002. 246-260p. PONGE J. F.; GILLET, S.; DUBS, F.; FEDOROFF, E.; HAESE, L.; SOUZA, J. P.; LAVELLE, P. Collembolan communities as bioindicators of kind use intensify cation. Soil Biol. Biochem., v.35, 2003. 813-826p. POSTHUMA, L., HOGERVORST, R.F., VAN STRAALEN, N.M., Adaptation to soil pollution by cadmium excretion in natural populations Orchesella cincta (L.) (Collembola). Arch. Contam. Toxicol. 22. 1992. 146–156p. RIZZO, A.C.L. SISINNO, C. BULUS, M. SAFADI, R. FONTES, A. MOREIRA, J. Ensaios ecotoxicológicos como um instrumento de complementação da avaliação de áreas contaminadas: resultados preliminares em áreas contaminadas por hidrocarbonetos. CT2004-088-00 – Comunicação Técnica ao III Seminário Nacional de Saúde e Ambiente, , Rio de Janeiro, 2004. 146–156p. ROMBKE, J. Ecotoxicological laboratory tests with enchytraeids: A review. Pedobiologia v47, 2003. 607–616p. RÖMBKE, J., KNACKER, T., FÖRSTER, B., MARCINKOWSKI, A. Comparison of effects of two pesticides on soil or-ganisms in laboratory tests, microcosms and in the field. In: Donker, M., Eijsackers, H., Heimbach, F. (eds) Eco-toxicology of soil organisms. Lewis Publ., Chelsea, Michigan. 1994. 229–240p. SAMPLE, B.E., BEAUCHAMP, J.J., EFROYMSON, R.A., SUTER, G.W., ASHWOOD, T.L. Development and Validation of Bioaccumulation Models for Earth-worms. Environmental Restoration Program. Lockweed Martin, Tennessee. 1998. SANDIFER R.D. & HOPKIN, S.P. Effects of Temperature on the Relative Toxicities of Cd, Cu, Pb, and Zn to Folsomia candida (Collembola). Ecotoxicology and environmental safety, v37. 1997. 125–130p. SAUTTER, K. D. USHIWATA, C. T. KOBIYAMA, M. MACHADO, G. E. SANTOS, H. R. Influência do lodo de esgoto doméstico sobre a mesofauna edáfica. Rev. Set. Ciênc. Agr., v.13, 1994. 199-203p. SHEPPARD, M. I.; THIBAULT, D. H. Desorption and extraction of selected heavy metal from soils. Soil Sci. Soc.Am. J., v56.1992. 415- 423p. SIEKIERSKA, E., URBANSKA-JASIK, D. Cadmium effect on the ovarian struc-ture in earthworm Dendrobaena veneta (Rosa). Environ. Pollut. 120. 2002. 289-297p. SISINNO, C. L. S. BULUS, M. R. M. RIZZO, C. MOREIRA, J.C. Ensaio de Comportamento com Minhocas (Eisenia fetida) para Avaliação de Áreas Contaminadas: Resultados 48 Preliminares para Contaminação por Hidrocarbonetos. J. Braz. Soc. Ecotoxicol.,v. 1, n. 2, 2006. 1-4p. SMIT, C.E., VAN GESTEL, C.A.M., Effects of soil type, percolation, and ageing on bioaccumulation and toxicity of zinc for the springtail Folsomia candida. Environ. Toxicol. Chem. v17. 1998. 1132–1141p. SPOSITO, G. The chemistry of soils. New York: Oxford University Press,.234p 1989. SPOSITO, G. The chemistry of soils. New York: Oxford University Press.234p. 2008. SPURGEON, D. J. HOPKIN S. P. JONES D. T., Effects of Cadmium, Copper, Lead and Zinc on Growth, Reproduction and Survival of the Earthworm Eisenia fetida (savigny): Assessing the Environmental Impact of Point-source Metal Contamination in Terrestrial Ecosystems, Environmental Pollution v84, 1994. 123-130p. SPURGEON, D.J., HOPKIN, S.P. Effects of metal-contaminated soils on the growth, sexual development, and early cocoon production of the earth-worm Eisenia fetida, with particular reference to zinc. Ecotoxicol. Environ. Saf. v35. 1996. 86-95p. SPURGEON, D.J., HOPKIN, S.P. Extrapolation of the laboratory based OECD earthworm toxicity test to metal-contaminated field sites. Ecotoxicology 4, 1995. 190-205p. SPURGEON, D.J., HOPKIN, S.P., The development of genetically inherited resistance to zinc in laboratory selected generations of the earthworm Eisenia fetida. Environ. Pollut. v109, 2000. 193-201p. THOMAS JM, SKALSKI JR, CLINE JF, MCSHANE MC, SIMPSON JC, MILLER WE, PETERSON SA, CALLAHAN CA, GREENE JC,. Characterization of chemical waste site contamination and determination of its extent using bioassays. Environmental Toxicology and Chemistry 5, 1986: 487 – 501p. TRUHAUT R: Ecotoxicology: objectives, principles and perspectives. Ecotox-icol Environ Saf 1. 1977. 151–173p. VAN GESTEL C.A.M., HENSBERGEN, P.J., Interaction of Cd and Zn toxicity for Folsomia candida Willem (Collembola: Isotomidae) in relation to bioavailability in soil. Environ. Toxicol. Chem. v16, 1997. 1177–1186p. VAN GESTEL CAM, RADEMAKER MCJ, VAN STRAALEN NM. Capacity controlling parameters and their impact on metal toxicity. In Salomons W, Stigliani WM, eds, Biogeodynamics of Pollutants in Soils and Sediments. Springer-Verlag, New York, NY, USA. 1995. 171–192p. VAN GESTEL, C. A. M, DIRWN-VAN BREEMEN, E. M., BAERSELMAN, R. EMANS, H.J.B., JANSSEN, J.A.M., POSTUMA, R., VAN VLIET, P.J.M. Comparison of Sublethal and Lethal Criteria for Nine Different Chemicals in Standardized Toxicity Tests Using the Earthworm Eisenia Andrei. Ecotoxicology and Environmental safety 23, 1992. 206-220p. 49 VAN GESTEL, C. A. M.; WEEKS, J. M. Recommendations of the 3rd International Workshop on Earthworm Ecotoxicology, Aarhus, Denmark, August 2001. Ecotoxicology and Environmental Safety, v. 57, 2004. 100–105p. VAN GESTEL, M., VAN DIS, W.A., DIRVEN-VAN BREEMEN, E.M., SPARENBURG, P.M., BAERSELMAN, R., Influence of cadmium copper and pentachlorophe-nol on growth and sexual development of Eisenia andrei(Oligochaeta, Annelida). Biol. Fertil. Soils 12. 1991. 117-121p. VROM, Ministry of Housing Intervention values and target values: soil quality standads. The Hague : VROM, 1994, 19p. WHO (World Health Organization) Copper in Drinking-water. Background document for development of WHO Guidelines for Drinking-water Quality. World Health Organization, 2004. WHO. (World Health Organization). Lead in Drinking-water. Background document for development of WHO Guidelines for Drinking-water Quality. World Health Organization, WHO/SDE/WSH/03.04/09/Rev/1, 2011. WU, B., LIU, Z. XU, Y., LI, D., LI, M. Combined toxicity of cadmium and lead on th earthworm Eisenia fetida (Annelida, Oligochaeta), Ecotoxicology and Environmental Safety, v81, 2012. 122–126p. ZHEN LI, L. ZHOU, D.M. WANG, P. ALLEN, H.E. SAUVÉ, S. Predicting Cd partitioning in spiked soils and bioaccumulation in the earthworm Eisenia fetida. Applied Soil Ecology, v42, 2009. 118–123p.por
dc.subject.cnpqAgronomiapor
dc.thumbnail.urlhttps://tede.ufrrj.br/retrieve/64303/2015%20-%20Bruna%20Faria%20Sim%c3%b5es%202.pdf.jpg*
dc.originais.urihttps://tede.ufrrj.br/jspui/handle/jspui/4457
dc.originais.provenanceSubmitted by Sandra Pereira (srpereira@ufrrj.br) on 2021-03-21T20:58:38Z No. of bitstreams: 1 2015 - Bruna Faria Simões 2.pdf: 1109546 bytes, checksum: f2c42a93cd18b5b368cd829c085a0a19 (MD5)eng
dc.originais.provenanceMade available in DSpace on 2021-03-21T20:58:38Z (GMT). No. of bitstreams: 1 2015 - Bruna Faria Simões 2.pdf: 1109546 bytes, checksum: f2c42a93cd18b5b368cd829c085a0a19 (MD5) Previous issue date: 2015-02-26eng
Appears in Collections:Mestrado em Agronomia - Ciência do Solo

Se for cadastrado no RIMA, poderá receber informações por email.
Se ainda não tem uma conta, cadastre-se aqui!

Files in This Item:
File Description SizeFormat 
2015 - Bruna Faria Simões 2.pdf2015 - Bruna Faria Simões1.08 MBAdobe PDFThumbnail
View/Open


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.