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1.
Microorganisms ; 9(4)2021 Apr 16.
Artigo em Inglês | MEDLINE | ID: mdl-33923588

RESUMO

Brazil holds a series of favorable climatic conditions for agricultural production including the hours and intensity of sunlight, the availability of agricultural land and water resources, as well as diverse climates, soils and biomes. Amidst such diversity, Brazilian coffee producers have obtained various standards of qualities and aromas, between the arabica and robusta species, which each present a wide variety of lineages. However, temperatures in coffee producing municipalities in Brazil have increased by about 0.25 °C per decade and annual precipitation has decreased. Therefore, the agricultural sector may face serious challenges in the upcoming decades due to crop sensitivity to water shortages and thermal stress. Furthermore, higher temperatures may reduce the quality of the culture and increase pressure from pests and diseases, reducing worldwide agricultural production. The impacts of climate change directly affect the coffee microbiota. Within the climate change scenario, aflatoxins, which are more toxic than OTA, may become dominant, promoting greater food insecurity surrounding coffee production. Thus, closer attention on the part of authorities is fundamental to stimulate replacement of areas that are apt for coffee production, in line with changes in climate zoning, in order to avoid scarcity of coffee in the world market.

2.
Int J Biol Macromol ; 159: 1048-1061, 2020 Sep 15.
Artigo em Inglês | MEDLINE | ID: mdl-32407944

RESUMO

Nanocomposite films prepared from starch (ST) in the presence of cellulose nanocrystals (CNCs) was performed using grape pomace as raw material. CNCs were obtained by acid hydrolysis and added to filmogenic solutions (1, 2, 5, 10 and 15 g/100 g of ST). Cellulose, CNCs and Nanocomposites were characterized. Amorphous non-cellulosic materials were removed from the grape pomace presented values for CrI 64% and 71% and yield 12 and 70% in Cellulose and CNCs, respectively. Nanocomposites showed smaller permeability and the addition of 5 to 15% CNCs formed more opaque films and had improved tensile strength and Young's modulus. The addition of CNCs from 5 to 15% proved to be effective in improving mechanical properties and decreasing water vapor permeability, important characteristics in food packaging materials. This study provided an effective method to obtain CNCs from the agroindustrial waste and open the way to produce high-value starch based nanocomposites.


Assuntos
Celulose/análogos & derivados , Nanocompostos/química , Nanopartículas/química , Amido/análogos & derivados , Vitis/química , Filmes Comestíveis , Módulo de Elasticidade , Resistência à Tração
3.
Vigil. sanit. debate ; 3(1): [6], fev. 2015.
Artigo em Português | LILACS | ID: biblio-948743

RESUMO

O presente trabalho teve como objetivo avaliar o efeito da sanitização por ozonização aquosa e da a cloração na redução da carga microbiana de morangos submetidos ao processamento mínimo. Morangos foram selecionados, lavados em água corrente e submetidos aos tratamentos: T1) Imersão em água ozonizada a 0,2 mg L-1 por 5 min; T2) Imersão em água ozonizada a 0,5 mg L-1 por 5 min; T3) Imersão em água ozonizada a 1,0 mg L-1 por 5 min; T4) Cloração; T5) Controle; T6) Morangos in natura. Posteriormente, os frutos foram processados, drenados, embalados e armazenados em câmara de refrigeração a 5ºC ± 1ºC, por seis dias. As análises microbiológicas para Coliformes a 35ºC (NMP g-1) e Contagem de Fungos Filamentosos e Leveduras (UFC g-1) foram realizadas no dia do processamento. Enquanto que as análises microbiológicas de Enumeração de estafilococos coagulase positiva, Coliformes a 45ºC (NMP g-1), e detecção de Salmonella sp. foram realizadas no dia do processamento e após 6 dias de armazenamento. A carga microbiana de Coliformes totais foi constatada apenas em T6. Os tratamentos com a água ozonizada foram mais eficientes do que o cloro na remoção de fungos filamentosos e Leveduras. A contaminação por Salmonella sp., E. coli, e coliformes 45ºC não foram observada em nenhuma das avaliações.


The objective of this study was to evaluate the efficacy of the sanitization process using aqueous ozone and chlorination in reducing the microbial load on strawberries subjected to minimal processing. Strawberries were selected, washed in tap water, and sanitized using the following treatments: T1) Immersion in aqueous ozone at 0.2 mg/L for 5 min; T2) Immersion in aqueous ozone at 0.5 mg/L for 5 min; T3) Immersion in aqueous ozone at 1.0 mg/L for 5 min; T4) Chlorination; T5) Control; or T6) Strawberries without sanitization (natural). After sanitization, the fruits were processed, drained, packaged, and stored under refrigeration at 5ºC ± 1ºC for 6 days. Microbiological analyses for coliforms at 35ºC (MPN/g) and counts of filamentous fungi and yeasts (CFU/g) were performed on the day of processing. Microbiological enumeration of coagulase-positive staphylococci, coliforms at 45ºC (MPN/g), and detection of Salmonella spp. were performed on the day of processing and again after 6 days of storage. The microbial count of total coliforms was observed only in T6. Treatments with aqueous ozone were more effective than treatment with chlorine in removing filamentous fungi and yeasts. Contamination by Salmonella spp., Escherichia coli, and coliforms at 45ºC was not observed in the analyzed samples.


Assuntos
Humanos , Contagem de Colônia Microbiana , Ozonização , Alimentos Integrais , Salmonella , Fragaria , Coliformes
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