Reproducing the organic matter model of anthropogenic dark earth of Amazonia and testing the ecotoxicity of functionalized charcoal compounds

Detalhes bibliográficos
Autor(a) principal: Linhares, Carolina Rodrigues
Data de Publicação: 2012
Outros Autores: Lemke, Jasmin, Auccaise, Ruben, Duó, Daniele Avilez, Ziolli, Roberta Lourenço, Kwapinski, Witold, Novotny, Etelvino Henrique
Tipo de documento: Artigo
Idioma: eng
por
Título da fonte: Pesquisa Agropecuária Brasileira (Online)
Texto Completo: https://seer.sct.embrapa.br/index.php/pab/article/view/10026
Resumo: The objective of this work was to obtain organic compounds similar to the ones found in the organic matter of anthropogenic dark earth of Amazonia (ADE) using a chemical functionalization procedure on activated charcoal, as well as to determine their ecotoxicity. Based on the study of the organic matter from ADE, an organic model was proposed and an attempt to reproduce it was described. Activated charcoal was oxidized with the use of sodium hypochlorite at different concentrations. Nuclear magnetic resonance was performed to verify if the spectra of the obtained products were similar to the ones of humic acids from ADE. The similarity between spectra indicated that the obtained products were polycondensed aromatic structures with carboxyl groups: a soil amendment that can contribute to soil fertility and to its sustainable use. An ecotoxicological test with Daphnia similis was performed on the more soluble fraction (fulvic acids) of the produced soil amendment. Aryl chloride was formed during the synthesis of the organic compounds from activated charcoal functionalization and partially removed through a purification process. However, it is probable that some aryl chloride remained in the final product, since the ecotoxicological test indicated that the chemical functionalized soil amendment is moderately toxic.
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spelling Reproducing the organic matter model of anthropogenic dark earth of Amazonia and testing the ecotoxicity of functionalized charcoal compoundsReproducing the organic matter model of anthropogenic dark earth of Amazonia and testing the ecotoxicity of functionalized charcoal compoundsDaphnia similis; biochar; chemical oxidation; fractionation of humic substances; nuclear magnetic resonance; pyrogenic carbonDaphnia similis; “biochar”; oxidação química; fracionamento de substâncias húmicas; ressonância magnética nuclear; carbono pirogênico The objective of this work was to obtain organic compounds similar to the ones found in the organic matter of anthropogenic dark earth of Amazonia (ADE) using a chemical functionalization procedure on activated charcoal, as well as to determine their ecotoxicity. Based on the study of the organic matter from ADE, an organic model was proposed and an attempt to reproduce it was described. Activated charcoal was oxidized with the use of sodium hypochlorite at different concentrations. Nuclear magnetic resonance was performed to verify if the spectra of the obtained products were similar to the ones of humic acids from ADE. The similarity between spectra indicated that the obtained products were polycondensed aromatic structures with carboxyl groups: a soil amendment that can contribute to soil fertility and to its sustainable use. An ecotoxicological test with Daphnia similis was performed on the more soluble fraction (fulvic acids) of the produced soil amendment. Aryl chloride was formed during the synthesis of the organic compounds from activated charcoal functionalization and partially removed through a purification process. However, it is probable that some aryl chloride remained in the final product, since the ecotoxicological test indicated that the chemical functionalized soil amendment is moderately toxic. The objective of this work was to obtain organic compounds similar to the ones found in the organic matter of anthropogenic dark earth of Amazonia (ADE) using a chemical functionalization procedure on activated charcoal, as well as to determine their ecotoxicity. Based on the study of the organic matter from ADE, an organic model was proposed and an attempt to reproduce it was described. Activated charcoal was oxidized with the use of sodium hypochlorite at different concentrations. Nuclear magnetic resonance was performed to verify if the spectra of the obtained products were similar to the ones of humic acids from ADE. The similarity between spectra indicated that the obtained products were polycondensed aromatic structures with carboxyl groups: a soil amendment that can contribute to soil fertility and to its sustainable use. An ecotoxicological test with Daphnia similis was performed on the more soluble fraction (fulvic acids) of the produced soil amendment. Aryl chloride was formed during the synthesis of the organic compounds from activated charcoal functionalization and partially removed through a purification process. However, it is probable that some aryl chloride remained in the final product, since the ecotoxicological test indicated that the chemical functionalized soil amendment is moderately toxic.Pesquisa Agropecuaria BrasileiraPesquisa Agropecuária BrasileiraFAPERJ, CNPq, CAPESFAPESP, CNPq, CAPESLinhares, Carolina RodriguesLemke, JasminAuccaise, RubenDuó, Daniele AvilezZiolli, Roberta LourençoKwapinski, WitoldNovotny, Etelvino Henrique2012-06-15info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdfapplication/pdfhttps://seer.sct.embrapa.br/index.php/pab/article/view/10026Pesquisa Agropecuaria Brasileira; v.47, n.5, maio 2012: 3rd International Biochar Conference; 693-698Pesquisa Agropecuária Brasileira; v.47, n.5, maio 2012: 3rd International Biochar Conference; 693-6981678-39210100-104xreponame:Pesquisa Agropecuária Brasileira (Online)instname:Empresa Brasileira de Pesquisa Agropecuária (Embrapa)instacron:EMBRAPAengporhttps://seer.sct.embrapa.br/index.php/pab/article/view/10026/6917https://seer.sct.embrapa.br/index.php/pab/article/view/10026/7436https://seer.sct.embrapa.br/index.php/pab/article/downloadSuppFile/10026/5341https://seer.sct.embrapa.br/index.php/pab/article/downloadSuppFile/10026/5342https://seer.sct.embrapa.br/index.php/pab/article/downloadSuppFile/10026/5343https://seer.sct.embrapa.br/index.php/pab/article/downloadSuppFile/10026/5344https://seer.sct.embrapa.br/index.php/pab/article/downloadSuppFile/10026/5345info:eu-repo/semantics/openAccess2012-08-02T14:12:05Zoai:ojs.seer.sct.embrapa.br:article/10026Revistahttp://seer.sct.embrapa.br/index.php/pabPRIhttps://old.scielo.br/oai/scielo-oai.phppab@sct.embrapa.br || sct.pab@embrapa.br1678-39210100-204Xopendoar:2012-08-02T14:12:05Pesquisa Agropecuária Brasileira (Online) - Empresa Brasileira de Pesquisa Agropecuária (Embrapa)false
dc.title.none.fl_str_mv Reproducing the organic matter model of anthropogenic dark earth of Amazonia and testing the ecotoxicity of functionalized charcoal compounds
Reproducing the organic matter model of anthropogenic dark earth of Amazonia and testing the ecotoxicity of functionalized charcoal compounds
title Reproducing the organic matter model of anthropogenic dark earth of Amazonia and testing the ecotoxicity of functionalized charcoal compounds
spellingShingle Reproducing the organic matter model of anthropogenic dark earth of Amazonia and testing the ecotoxicity of functionalized charcoal compounds
Linhares, Carolina Rodrigues
Daphnia similis; biochar; chemical oxidation; fractionation of humic substances; nuclear magnetic resonance; pyrogenic carbon
Daphnia similis; “biochar”; oxidação química; fracionamento de substâncias húmicas; ressonância magnética nuclear; carbono pirogênico
title_short Reproducing the organic matter model of anthropogenic dark earth of Amazonia and testing the ecotoxicity of functionalized charcoal compounds
title_full Reproducing the organic matter model of anthropogenic dark earth of Amazonia and testing the ecotoxicity of functionalized charcoal compounds
title_fullStr Reproducing the organic matter model of anthropogenic dark earth of Amazonia and testing the ecotoxicity of functionalized charcoal compounds
title_full_unstemmed Reproducing the organic matter model of anthropogenic dark earth of Amazonia and testing the ecotoxicity of functionalized charcoal compounds
title_sort Reproducing the organic matter model of anthropogenic dark earth of Amazonia and testing the ecotoxicity of functionalized charcoal compounds
author Linhares, Carolina Rodrigues
author_facet Linhares, Carolina Rodrigues
Lemke, Jasmin
Auccaise, Ruben
Duó, Daniele Avilez
Ziolli, Roberta Lourenço
Kwapinski, Witold
Novotny, Etelvino Henrique
author_role author
author2 Lemke, Jasmin
Auccaise, Ruben
Duó, Daniele Avilez
Ziolli, Roberta Lourenço
Kwapinski, Witold
Novotny, Etelvino Henrique
author2_role author
author
author
author
author
author
dc.contributor.none.fl_str_mv FAPERJ, CNPq, CAPES
FAPESP, CNPq, CAPES
dc.contributor.author.fl_str_mv Linhares, Carolina Rodrigues
Lemke, Jasmin
Auccaise, Ruben
Duó, Daniele Avilez
Ziolli, Roberta Lourenço
Kwapinski, Witold
Novotny, Etelvino Henrique
dc.subject.por.fl_str_mv Daphnia similis; biochar; chemical oxidation; fractionation of humic substances; nuclear magnetic resonance; pyrogenic carbon
Daphnia similis; “biochar”; oxidação química; fracionamento de substâncias húmicas; ressonância magnética nuclear; carbono pirogênico
topic Daphnia similis; biochar; chemical oxidation; fractionation of humic substances; nuclear magnetic resonance; pyrogenic carbon
Daphnia similis; “biochar”; oxidação química; fracionamento de substâncias húmicas; ressonância magnética nuclear; carbono pirogênico
description The objective of this work was to obtain organic compounds similar to the ones found in the organic matter of anthropogenic dark earth of Amazonia (ADE) using a chemical functionalization procedure on activated charcoal, as well as to determine their ecotoxicity. Based on the study of the organic matter from ADE, an organic model was proposed and an attempt to reproduce it was described. Activated charcoal was oxidized with the use of sodium hypochlorite at different concentrations. Nuclear magnetic resonance was performed to verify if the spectra of the obtained products were similar to the ones of humic acids from ADE. The similarity between spectra indicated that the obtained products were polycondensed aromatic structures with carboxyl groups: a soil amendment that can contribute to soil fertility and to its sustainable use. An ecotoxicological test with Daphnia similis was performed on the more soluble fraction (fulvic acids) of the produced soil amendment. Aryl chloride was formed during the synthesis of the organic compounds from activated charcoal functionalization and partially removed through a purification process. However, it is probable that some aryl chloride remained in the final product, since the ecotoxicological test indicated that the chemical functionalized soil amendment is moderately toxic.
publishDate 2012
dc.date.none.fl_str_mv 2012-06-15
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dc.language.iso.fl_str_mv eng
por
language eng
por
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dc.publisher.none.fl_str_mv Pesquisa Agropecuaria Brasileira
Pesquisa Agropecuária Brasileira
publisher.none.fl_str_mv Pesquisa Agropecuaria Brasileira
Pesquisa Agropecuária Brasileira
dc.source.none.fl_str_mv Pesquisa Agropecuaria Brasileira; v.47, n.5, maio 2012: 3rd International Biochar Conference; 693-698
Pesquisa Agropecuária Brasileira; v.47, n.5, maio 2012: 3rd International Biochar Conference; 693-698
1678-3921
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