Energia da biomassa de cana-de-açúcar sob influência de hidrogel e cobertura vegetal em dois sistemas de plantio

Detalhes bibliográficos
Ano de defesa: 2011
Autor(a) principal: Pinto, Luis Eduardo Vieira lattes
Orientador(a): Marques, Tadeu Alcides lattes
Banca de defesa: Moscardi, Flavio lattes, Santos, Haydée Siqueira lattes
Tipo de documento: Dissertação
Tipo de acesso: Acesso aberto
Idioma: por
Instituição de defesa: Universidade do Oeste Paulista
Programa de Pós-Graduação: Mestrado em Agronomia
Departamento: Ciências Agrárias
País: BR
Palavras-chave em Português:
Palavras-chave em Inglês:
Área do conhecimento CNPq:
Link de acesso: http://bdtd.unoeste.br:8080/tede/handle/tede/553
Resumo: Aiming to evaluate the interaction of hydrogel polymer and vegetation cover, in two planting systems (groove and windrow), the possible interference of the energy value of sugar cane biomass, at four dosages were used (0.0, 26.67, 53.33 and 80.00 kg of polymer per hectare) and four treatments with dry matter ratoon sugar cane, installed at the harvest of first cut in June 2009, and the concentrations (without leaves, in dose 0), dry leaves, at 5 t dry matter ha-1; green leaves at 10 t dry matter ha-1, and mixture of green leaves and dry leaves at 15 t dry matter ha-1. The experimental unit (plot) consisted of five rows with five meters long, with now spacing of 1.5 m (area of 37.5 m2). The experiment was located on the campus of UNOESTE II, and the soil was characterized as Sandy Red Yellow Distroferric, typical A moderate, middle-clay texture (Embrapa, 1999). The climate in the region is classified as Aw, with summer rainy season and dry season in winter. The cultivar used was RB 86 7515 planted in December 2007 and harvested in June 2009 (18 months), and the ratoon of this cultivar was used in this study. The experimental design was a factorial split plot (2x4), with two planting systems used in 2007 at crop installation process, with four doses of hydrogel polymer and four treatments with mulching. Evaluations were made regarding the calorific power of sugar cane during the months of August, September and October 2010, in addition to biomass productivity, levels of ATR and fiber of sugar cane for the month of August and top calorific power of straw in October 2010. All data were subjected to analysis of variance (ANOVA, p <0.05) and the means were compared by Scott-Knott (p <0.05) according to Gomes (1990). For the construction of graphs and statistical regressions the mathematical program Microcal Origin 6.0 was used. The results obtained show that planting systems not Groove terraces and promoted differences between themselves, when compared to the variables analyzed not experiment. The use of polymer the dose of 53,33 k ha-1 provided a higher biomass and bioenergy system per hectare.
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spelling Marques, Tadeu AlcidesCPF:###.###.###.##http://lattes.cnpq.br/1065390140881688Moscardi, FlavioCPF:###.###.###.##http://lattes.cnpq.br/9373780694098489Santos, Haydée SiqueiraCPF:###.###.###.##http://lattes.cnpq.br/2424637516943899CPF:###.###.###.##http://lattes.cnpq.br/8664051658272156Pinto, Luis Eduardo Vieira2016-07-18T17:51:08Z2012-08-172011-06-21PINTO, Luis Eduardo Vieira. Energy from biomass of sugar cane under the influence of vegetation cover and hydrogel in two planting systems. 2011. 78 f. Dissertação (Mestrado em Ciências Agrárias) - Universidade do Oeste Paulista, Presidente Prudente, 2011.http://bdtd.unoeste.br:8080/tede/handle/tede/553Aiming to evaluate the interaction of hydrogel polymer and vegetation cover, in two planting systems (groove and windrow), the possible interference of the energy value of sugar cane biomass, at four dosages were used (0.0, 26.67, 53.33 and 80.00 kg of polymer per hectare) and four treatments with dry matter ratoon sugar cane, installed at the harvest of first cut in June 2009, and the concentrations (without leaves, in dose 0), dry leaves, at 5 t dry matter ha-1; green leaves at 10 t dry matter ha-1, and mixture of green leaves and dry leaves at 15 t dry matter ha-1. The experimental unit (plot) consisted of five rows with five meters long, with now spacing of 1.5 m (area of 37.5 m2). The experiment was located on the campus of UNOESTE II, and the soil was characterized as Sandy Red Yellow Distroferric, typical A moderate, middle-clay texture (Embrapa, 1999). The climate in the region is classified as Aw, with summer rainy season and dry season in winter. The cultivar used was RB 86 7515 planted in December 2007 and harvested in June 2009 (18 months), and the ratoon of this cultivar was used in this study. The experimental design was a factorial split plot (2x4), with two planting systems used in 2007 at crop installation process, with four doses of hydrogel polymer and four treatments with mulching. Evaluations were made regarding the calorific power of sugar cane during the months of August, September and October 2010, in addition to biomass productivity, levels of ATR and fiber of sugar cane for the month of August and top calorific power of straw in October 2010. All data were subjected to analysis of variance (ANOVA, p <0.05) and the means were compared by Scott-Knott (p <0.05) according to Gomes (1990). For the construction of graphs and statistical regressions the mathematical program Microcal Origin 6.0 was used. The results obtained show that planting systems not Groove terraces and promoted differences between themselves, when compared to the variables analyzed not experiment. The use of polymer the dose of 53,33 k ha-1 provided a higher biomass and bioenergy system per hectare.Com o propósito de avaliar se a interação de polímeros hidroabsorventes e cobertura vegetal em dois sistemas de plantio (sulco e leira), viesse interferir no valor energético da biomassa de cana-de-açúcar, foram utilizadas as doses de (0,0; 26,67; 53,33 e 80,00 kg do polímero por hectare) e quatro tratamentos com cobertura vegetal, na soqueira de cana-de-açúcar, instalado quando da coleta do primeiro corte, em junho de 2009, sendo as concentrações (sem folhas, na dose 0 testemunha); folhas secas, na dose de 5 t de matéria seca ha-1; folhas verdes, na dose de 10 t de matéria seca ha-1; e mistura de folhas verdes mais folhas secas, na dose de 15 t de matéria seca ha-1. A unidade experimental (parcela) foi composta de cinco linhas com cinco metros de comprimento, sendo o espaçamento de 1,5 m (área de 37,5 m2). O experimento foi implantado no Campus II da UNOESTE, sendo que o solo do experimento foi caracterizado como Argissolo Vermelho-Amarelo Distroférrico, típico A moderado, textura médio-argilosa (Embrapa, 1999). O clima da região se classifica em Aw, sendo a estação chuvosa no verão e estação seca no inverno. O cultivar utilizado foi o RB 86 7515 plantado em dezembro de 2007 e colhido em junho 2009 (18 meses), a soqueira deste cultivar foi utilizada no presente estudo, o delineamento experimental utilizado foi o fatorial em parcelas subdivididas (2x4), sendo dois os sistemas de plantios utilizados, em 2007 quando do processo de instalação da cultura, quatro doses do polímero hidroabsorventes e quatro tratamentos com cobertura vegetal. Foram avaliados no experimento o poder calorífico superior da cana-de-açúcar nos meses de agosto, setembro e outubro de 2010, além da produtividade de biomassa, níveis de ATR e Fibra da cana-de-açúcar do mês de agosto e poder calorífico superior do palhiço no mês de outubro de 2010. Todos os dados foram submetidos à análise de variância (ANOVA, p<0,05) e ao teste de comparação de médias Scott-Knott (p<0,05) segundo Gomes (1990) e para a confecção dos gráficos e regressões estatísticas foi utilizado o programa matemático Microcal Origin 6.0. Os resultados obtidos demonstram que os sistemas de plantio leira e sulco não promoveram diferenças entre si, quando comparados em relação às variáveis analisadas no experimento. A utilização de polímero na dose de 53,33 kg ha-1 proporcionou uma maior produção de biomassa e bioenergia do sistema por hectare.Made available in DSpace on 2016-07-18T17:51:08Z (GMT). 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dc.title.por.fl_str_mv Energia da biomassa de cana-de-açúcar sob influência de hidrogel e cobertura vegetal em dois sistemas de plantio
dc.title.alternative.eng.fl_str_mv Energy from biomass of sugar cane under the influence of vegetation cover and hydrogel in two planting systems
title Energia da biomassa de cana-de-açúcar sob influência de hidrogel e cobertura vegetal em dois sistemas de plantio
spellingShingle Energia da biomassa de cana-de-açúcar sob influência de hidrogel e cobertura vegetal em dois sistemas de plantio
Pinto, Luis Eduardo Vieira
Saccharum
Bioenergia
Poder calorífico
Saccharum
Bioenergy
Calorific power
CNPQ::CIENCIAS AGRARIAS::AGRONOMIA
title_short Energia da biomassa de cana-de-açúcar sob influência de hidrogel e cobertura vegetal em dois sistemas de plantio
title_full Energia da biomassa de cana-de-açúcar sob influência de hidrogel e cobertura vegetal em dois sistemas de plantio
title_fullStr Energia da biomassa de cana-de-açúcar sob influência de hidrogel e cobertura vegetal em dois sistemas de plantio
title_full_unstemmed Energia da biomassa de cana-de-açúcar sob influência de hidrogel e cobertura vegetal em dois sistemas de plantio
title_sort Energia da biomassa de cana-de-açúcar sob influência de hidrogel e cobertura vegetal em dois sistemas de plantio
author Pinto, Luis Eduardo Vieira
author_facet Pinto, Luis Eduardo Vieira
author_role author
dc.contributor.advisor1.fl_str_mv Marques, Tadeu Alcides
dc.contributor.advisor1ID.fl_str_mv CPF:###.###.###.##
dc.contributor.advisor1Lattes.fl_str_mv http://lattes.cnpq.br/1065390140881688
dc.contributor.referee1.fl_str_mv Moscardi, Flavio
dc.contributor.referee1ID.fl_str_mv CPF:###.###.###.##
dc.contributor.referee1Lattes.fl_str_mv http://lattes.cnpq.br/9373780694098489
dc.contributor.referee2.fl_str_mv Santos, Haydée Siqueira
dc.contributor.referee2ID.fl_str_mv CPF:###.###.###.##
dc.contributor.referee2Lattes.fl_str_mv http://lattes.cnpq.br/2424637516943899
dc.contributor.authorID.fl_str_mv CPF:###.###.###.##
dc.contributor.authorLattes.fl_str_mv http://lattes.cnpq.br/8664051658272156
dc.contributor.author.fl_str_mv Pinto, Luis Eduardo Vieira
contributor_str_mv Marques, Tadeu Alcides
Moscardi, Flavio
Santos, Haydée Siqueira
dc.subject.por.fl_str_mv Saccharum
Bioenergia
Poder calorífico
topic Saccharum
Bioenergia
Poder calorífico
Saccharum
Bioenergy
Calorific power
CNPQ::CIENCIAS AGRARIAS::AGRONOMIA
dc.subject.eng.fl_str_mv Saccharum
Bioenergy
Calorific power
dc.subject.cnpq.fl_str_mv CNPQ::CIENCIAS AGRARIAS::AGRONOMIA
description Aiming to evaluate the interaction of hydrogel polymer and vegetation cover, in two planting systems (groove and windrow), the possible interference of the energy value of sugar cane biomass, at four dosages were used (0.0, 26.67, 53.33 and 80.00 kg of polymer per hectare) and four treatments with dry matter ratoon sugar cane, installed at the harvest of first cut in June 2009, and the concentrations (without leaves, in dose 0), dry leaves, at 5 t dry matter ha-1; green leaves at 10 t dry matter ha-1, and mixture of green leaves and dry leaves at 15 t dry matter ha-1. The experimental unit (plot) consisted of five rows with five meters long, with now spacing of 1.5 m (area of 37.5 m2). The experiment was located on the campus of UNOESTE II, and the soil was characterized as Sandy Red Yellow Distroferric, typical A moderate, middle-clay texture (Embrapa, 1999). The climate in the region is classified as Aw, with summer rainy season and dry season in winter. The cultivar used was RB 86 7515 planted in December 2007 and harvested in June 2009 (18 months), and the ratoon of this cultivar was used in this study. The experimental design was a factorial split plot (2x4), with two planting systems used in 2007 at crop installation process, with four doses of hydrogel polymer and four treatments with mulching. Evaluations were made regarding the calorific power of sugar cane during the months of August, September and October 2010, in addition to biomass productivity, levels of ATR and fiber of sugar cane for the month of August and top calorific power of straw in October 2010. All data were subjected to analysis of variance (ANOVA, p <0.05) and the means were compared by Scott-Knott (p <0.05) according to Gomes (1990). For the construction of graphs and statistical regressions the mathematical program Microcal Origin 6.0 was used. The results obtained show that planting systems not Groove terraces and promoted differences between themselves, when compared to the variables analyzed not experiment. The use of polymer the dose of 53,33 k ha-1 provided a higher biomass and bioenergy system per hectare.
publishDate 2011
dc.date.issued.fl_str_mv 2011-06-21
dc.date.available.fl_str_mv 2012-08-17
dc.date.accessioned.fl_str_mv 2016-07-18T17:51:08Z
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dc.identifier.citation.fl_str_mv PINTO, Luis Eduardo Vieira. Energy from biomass of sugar cane under the influence of vegetation cover and hydrogel in two planting systems. 2011. 78 f. Dissertação (Mestrado em Ciências Agrárias) - Universidade do Oeste Paulista, Presidente Prudente, 2011.
dc.identifier.uri.fl_str_mv http://bdtd.unoeste.br:8080/tede/handle/tede/553
identifier_str_mv PINTO, Luis Eduardo Vieira. Energy from biomass of sugar cane under the influence of vegetation cover and hydrogel in two planting systems. 2011. 78 f. Dissertação (Mestrado em Ciências Agrárias) - Universidade do Oeste Paulista, Presidente Prudente, 2011.
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