Armazenamento de pedúnculo de cajueiro em atmosfera controlada com a aplicação de 1-MCP

Detalhes bibliográficos
Ano de defesa: 2020
Autor(a) principal: Costa, Thays Correa lattes
Orientador(a): Brackmann, Auri lattes
Banca de defesa: Both, Vanderlei, Oster, Andréia Hansen
Tipo de documento: Dissertação
Tipo de acesso: Acesso aberto
Idioma: por
Instituição de defesa: Universidade Federal de Santa Maria
Centro de Ciências Rurais
Programa de Pós-Graduação: Programa de Pós-Graduação em Agronomia
Departamento: Agronomia
País: Brasil
Palavras-chave em Português:
Palavras-chave em Inglês:
Área do conhecimento CNPq:
Link de acesso: http://repositorio.ufsm.br/handle/1/23395
Resumo: The transport over long distances and marketing of fresh cashew peduncles has been hampered due to their short postharvest life at room temperature (approximately 48 hours). Due to this problem, storage techniques have been studied in order to delay senescence and improve post-harvest quality. Thus, this study aimed to evaluate the effect of storage in controlled atmosphere with low levels of O2 and high CO2 in the quality maintenance of cashew tree peduncles. The dissertation consists of two experiments. For the first experiment with fruits from Petrolina - PE, the effect of CA and application of 1-MCP was evaluated. The treatments applied were: [1] Control (RA 3 °C); [2] RA + 1-MCP; [3] 3.0 kPa O2 + 3.0 kPa CO2 [4] 3.0 kPa O2 + 3.0 kPa CO2 + 1-MCP; [5] 3.0 kPa O2 + 5.0 kPa CO2; [6] 3.0 kPa O2 + 5.0 kPa CO2 + 1-MCP; [7] 3.0 kPa O2 + 10.0 kPa CO2; [8] 3.0 kPa O2 + 10.0 kPa CO2 + 1-MCP. In the second experiment, with fruits from the municipality of Cascavel-CE, the following treatments were evaluated: [1] Control (RA 5 °C); [2] 3.0 kPa O2 + 8.0 kPa CO2; [3] 3.0 kPa O2 + 12.0 kPa CO2; [4] 3.0 kPa O2 + 16.0 kPa CO2; [5] 1.5 kPa O2 + 8.0 kPa CO2. In the first experiment (2018), the storage condition with 3.0 kPa O2 + 10.0 kPa CO2 irrespective of 1-MCP treatment, was more efficient in maintaining the quality of the fruits, by reducing the mass loss, reducing the decay incidence, kept greater firmness of pulp and percentage and more healthy fruit. Chilled storage (RA) isolated or combined with 1-MCP did not delay the incidence of rot in Clone CCP 76. The period in which the fruits were stored was not sufficient to cause changes in the soluble solid content, titratable acidity and juice color. In the second experiment, in 2019, in storage in CA for a period of 15 days, the fruits showed less loss of mass, greater pulp firmness and 100% of healthy fruit. When stored in CA for 30 days, the fruits maintained greater pulp firmness and low decay incidence. Taking into account the physical-chemical analyzes at harvest and after 30 days of storage at 3.0 ± 0.1 ºC and 93 ± 0.3% RH, the results suggest that the use of CA with high partial pressures of CO2 maintains the postharvest shelf life of the early dwarf cashew clone CCP 76.
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spelling 2021-12-21T16:58:48Z2021-12-21T16:58:48Z2020-02-18http://repositorio.ufsm.br/handle/1/23395The transport over long distances and marketing of fresh cashew peduncles has been hampered due to their short postharvest life at room temperature (approximately 48 hours). Due to this problem, storage techniques have been studied in order to delay senescence and improve post-harvest quality. Thus, this study aimed to evaluate the effect of storage in controlled atmosphere with low levels of O2 and high CO2 in the quality maintenance of cashew tree peduncles. The dissertation consists of two experiments. For the first experiment with fruits from Petrolina - PE, the effect of CA and application of 1-MCP was evaluated. The treatments applied were: [1] Control (RA 3 °C); [2] RA + 1-MCP; [3] 3.0 kPa O2 + 3.0 kPa CO2 [4] 3.0 kPa O2 + 3.0 kPa CO2 + 1-MCP; [5] 3.0 kPa O2 + 5.0 kPa CO2; [6] 3.0 kPa O2 + 5.0 kPa CO2 + 1-MCP; [7] 3.0 kPa O2 + 10.0 kPa CO2; [8] 3.0 kPa O2 + 10.0 kPa CO2 + 1-MCP. In the second experiment, with fruits from the municipality of Cascavel-CE, the following treatments were evaluated: [1] Control (RA 5 °C); [2] 3.0 kPa O2 + 8.0 kPa CO2; [3] 3.0 kPa O2 + 12.0 kPa CO2; [4] 3.0 kPa O2 + 16.0 kPa CO2; [5] 1.5 kPa O2 + 8.0 kPa CO2. In the first experiment (2018), the storage condition with 3.0 kPa O2 + 10.0 kPa CO2 irrespective of 1-MCP treatment, was more efficient in maintaining the quality of the fruits, by reducing the mass loss, reducing the decay incidence, kept greater firmness of pulp and percentage and more healthy fruit. Chilled storage (RA) isolated or combined with 1-MCP did not delay the incidence of rot in Clone CCP 76. The period in which the fruits were stored was not sufficient to cause changes in the soluble solid content, titratable acidity and juice color. In the second experiment, in 2019, in storage in CA for a period of 15 days, the fruits showed less loss of mass, greater pulp firmness and 100% of healthy fruit. When stored in CA for 30 days, the fruits maintained greater pulp firmness and low decay incidence. Taking into account the physical-chemical analyzes at harvest and after 30 days of storage at 3.0 ± 0.1 ºC and 93 ± 0.3% RH, the results suggest that the use of CA with high partial pressures of CO2 maintains the postharvest shelf life of the early dwarf cashew clone CCP 76.O transporte a longas distâncias e comercialização in natura de pedúnculos de cajueiro tem sido dificultada devido à sua curta vida pós-colheita em temperatura ambiente (aproximadamente 48 horas). Novas técnicas de armazenamento têm sido estudadas a fim de retardar a senescência, manter a qualidade e permitir a ampliação da vida pós-colheita e consequentemente comercializar em mercados consumidores distantes da área de produção do cajueiro. Desta forma, o presente trabalho teve como objetivo avaliar o efeito do armazenamento em atmosfera controlada com baixos níveis de O2 e altos de CO2 sobre a manutenção da qualidade de pedúnculos de cajueiro. A dissertação é composta de dois experimentos. Para o primeiro experimento, pedúnculos oriundos do município de Petrolina - PE, foi avaliado o efeito da AC e aplicação de 1-MCP. Os tratamentos aplicados foram: [1] Controle (AR/3 °C); [2] AR + 1-MCP; [3] 3,0 kPa O2 + 3,0 kPa CO2 [4] 3,0 kPa O2 + 3,0 kPa CO2 + 1-MCP; [5] 3,0 kPa O2 + 5,0 kPa CO2; [6] 3,0 kPa O2 + 5,0 kPa CO2 + 1-MCP; [7] 3,0 kPa O2 + 10,0 kPa CO2; [8] 3,0 kPa O2 + 10,0 kPa CO2 + 1-MCP. No segundo experimento pedúnculos oriundos do município de Cascavel-CE, foram avaliados os seguintes tratamentos: [1] Controle (AR); [2] 3,0 kPa O2 + 8,0 kPa CO2; [3] 3,0 kPa O2 + 12 kPa CO2; [4] 3,0 kPa O2 + 16 kPa CO2; [5] 1,5 kPa O2 + 8,0 kPa CO2. No primeiro experimento (2018), a condição de armazenamento 3,0 kPa O2 + 10,0 kPa CO2, independente da aplicação de 1-MCP foi mais eficiente na manutenção da qualidade dos pedúnculos, pela redução da perda de massa, menor incidência de podridões, maior firmeza de polpa e porcentagem de pedúnculos sadios. O armazenamento refrigerado (AR) isolado ou combinado com 1-MCP não retardou a incidência de podridões no Clone CCP 76. O período em que os pedúnculos foram armazenadas não foi suficiente para ocasionar alterações nas variáveis sólidos solúveis acidez titulável e cor da epiderme. No segundo experimento, em 2019, no armazenamento em AC por um período de 15 dias, os pedúnculos apresentaram menor perda de massa quando comparado com o AR, maior firmeza de polpa e 100% de pedúnculos sadios. No armazenamento em AC durante 30 dias os pedúnculos mantiveram maior firmeza de polpa e baixa incidência de podridões. Levando em consideração as análises físico-químicas na colheita e após 30 dias de armazenamento a 3,0 ± 0,1 ºC e 93 ± 0,3% U.R, os resultados sugerem que a utilização de AC com pressões parciais elevadas de CO2 mantém a vida útil pós-colheita do clone de pedúnculo de cajueiro anão precoce CCP 76.Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - CAPESporUniversidade Federal de Santa MariaCentro de Ciências RuraisPrograma de Pós-Graduação em AgronomiaUFSMBrasilAgronomiaAttribution-NonCommercial-NoDerivatives 4.0 Internationalhttp://creativecommons.org/licenses/by-nc-nd/4.0/info:eu-repo/semantics/openAccessAnacardium occidentale L.Pós-colheitaQualidade da frutaBaixa temperaturaPost-harvestFruit qualityLow temperatureCNPQ::CIENCIAS AGRARIAS::AGRONOMIAArmazenamento de pedúnculo de cajueiro em atmosfera controlada com a aplicação de 1-MCPStorage of cashew apple in a controlled atmosphere with the application OF 1-MCPinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/masterThesisBrackmann, Aurihttp://lattes.cnpq.br/1305840929832646Both, VanderleiOster, Andréia Hansenhttp://lattes.cnpq.br/3703351371098020Costa, Thays Correa500100000009600600600600600138ff5d6-1221-4258-86cc-aca3d85828a3525a683a-b9a3-47bb-8a85-b5e91178463851cfba83-82b0-4294-a294-3f11869867e0147bfc27-69cc-4663-8c47-a3207d2b5ad7reponame:Manancial - Repositório Digital da UFSMinstname:Universidade Federal de Santa Maria (UFSM)instacron:UFSMLICENSElicense.txtlicense.txttext/plain; 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dc.title.por.fl_str_mv Armazenamento de pedúnculo de cajueiro em atmosfera controlada com a aplicação de 1-MCP
dc.title.alternative.eng.fl_str_mv Storage of cashew apple in a controlled atmosphere with the application OF 1-MCP
title Armazenamento de pedúnculo de cajueiro em atmosfera controlada com a aplicação de 1-MCP
spellingShingle Armazenamento de pedúnculo de cajueiro em atmosfera controlada com a aplicação de 1-MCP
Costa, Thays Correa
Anacardium occidentale L.
Pós-colheita
Qualidade da fruta
Baixa temperatura
Post-harvest
Fruit quality
Low temperature
CNPQ::CIENCIAS AGRARIAS::AGRONOMIA
title_short Armazenamento de pedúnculo de cajueiro em atmosfera controlada com a aplicação de 1-MCP
title_full Armazenamento de pedúnculo de cajueiro em atmosfera controlada com a aplicação de 1-MCP
title_fullStr Armazenamento de pedúnculo de cajueiro em atmosfera controlada com a aplicação de 1-MCP
title_full_unstemmed Armazenamento de pedúnculo de cajueiro em atmosfera controlada com a aplicação de 1-MCP
title_sort Armazenamento de pedúnculo de cajueiro em atmosfera controlada com a aplicação de 1-MCP
author Costa, Thays Correa
author_facet Costa, Thays Correa
author_role author
dc.contributor.advisor1.fl_str_mv Brackmann, Auri
dc.contributor.advisor1Lattes.fl_str_mv http://lattes.cnpq.br/1305840929832646
dc.contributor.referee1.fl_str_mv Both, Vanderlei
dc.contributor.referee2.fl_str_mv Oster, Andréia Hansen
dc.contributor.authorLattes.fl_str_mv http://lattes.cnpq.br/3703351371098020
dc.contributor.author.fl_str_mv Costa, Thays Correa
contributor_str_mv Brackmann, Auri
Both, Vanderlei
Oster, Andréia Hansen
dc.subject.por.fl_str_mv Anacardium occidentale L.
Pós-colheita
Qualidade da fruta
Baixa temperatura
topic Anacardium occidentale L.
Pós-colheita
Qualidade da fruta
Baixa temperatura
Post-harvest
Fruit quality
Low temperature
CNPQ::CIENCIAS AGRARIAS::AGRONOMIA
dc.subject.eng.fl_str_mv Post-harvest
Fruit quality
Low temperature
dc.subject.cnpq.fl_str_mv CNPQ::CIENCIAS AGRARIAS::AGRONOMIA
description The transport over long distances and marketing of fresh cashew peduncles has been hampered due to their short postharvest life at room temperature (approximately 48 hours). Due to this problem, storage techniques have been studied in order to delay senescence and improve post-harvest quality. Thus, this study aimed to evaluate the effect of storage in controlled atmosphere with low levels of O2 and high CO2 in the quality maintenance of cashew tree peduncles. The dissertation consists of two experiments. For the first experiment with fruits from Petrolina - PE, the effect of CA and application of 1-MCP was evaluated. The treatments applied were: [1] Control (RA 3 °C); [2] RA + 1-MCP; [3] 3.0 kPa O2 + 3.0 kPa CO2 [4] 3.0 kPa O2 + 3.0 kPa CO2 + 1-MCP; [5] 3.0 kPa O2 + 5.0 kPa CO2; [6] 3.0 kPa O2 + 5.0 kPa CO2 + 1-MCP; [7] 3.0 kPa O2 + 10.0 kPa CO2; [8] 3.0 kPa O2 + 10.0 kPa CO2 + 1-MCP. In the second experiment, with fruits from the municipality of Cascavel-CE, the following treatments were evaluated: [1] Control (RA 5 °C); [2] 3.0 kPa O2 + 8.0 kPa CO2; [3] 3.0 kPa O2 + 12.0 kPa CO2; [4] 3.0 kPa O2 + 16.0 kPa CO2; [5] 1.5 kPa O2 + 8.0 kPa CO2. In the first experiment (2018), the storage condition with 3.0 kPa O2 + 10.0 kPa CO2 irrespective of 1-MCP treatment, was more efficient in maintaining the quality of the fruits, by reducing the mass loss, reducing the decay incidence, kept greater firmness of pulp and percentage and more healthy fruit. Chilled storage (RA) isolated or combined with 1-MCP did not delay the incidence of rot in Clone CCP 76. The period in which the fruits were stored was not sufficient to cause changes in the soluble solid content, titratable acidity and juice color. In the second experiment, in 2019, in storage in CA for a period of 15 days, the fruits showed less loss of mass, greater pulp firmness and 100% of healthy fruit. When stored in CA for 30 days, the fruits maintained greater pulp firmness and low decay incidence. Taking into account the physical-chemical analyzes at harvest and after 30 days of storage at 3.0 ± 0.1 ºC and 93 ± 0.3% RH, the results suggest that the use of CA with high partial pressures of CO2 maintains the postharvest shelf life of the early dwarf cashew clone CCP 76.
publishDate 2020
dc.date.issued.fl_str_mv 2020-02-18
dc.date.accessioned.fl_str_mv 2021-12-21T16:58:48Z
dc.date.available.fl_str_mv 2021-12-21T16:58:48Z
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dc.publisher.none.fl_str_mv Universidade Federal de Santa Maria
Centro de Ciências Rurais
dc.publisher.program.fl_str_mv Programa de Pós-Graduação em Agronomia
dc.publisher.initials.fl_str_mv UFSM
dc.publisher.country.fl_str_mv Brasil
dc.publisher.department.fl_str_mv Agronomia
publisher.none.fl_str_mv Universidade Federal de Santa Maria
Centro de Ciências Rurais
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